Nuclear Medicine & Imaging in Bangladesh: Vvon Technologies Limited
Vvon supplies and services nuclear medicine departments across Bangladesh, from the imaging system itself through everything the department needs around it. Imaging comes from MiE GmbH of Germany, whose SCINTRON range covers single and dual head gamma cameras, cardiac and thyroid work and processing workstations, and from Spectrum Dynamics Medical of the USA, whose digital CZT D-SPECT and VERITON platforms brought ring geometry detectors into routine use. Around them sit Leeds Test Objects phantoms for gamma camera, SPECT, PET, CT and radiology quality assurance, Nuclear Shields radiopharmacy shielding covering L-block workstations, syringe and vial shields, shielded storage, transport and waste handling. Vvon handles site planning, regulatory documentation, installation, acceptance testing, staff training and ongoing maintenance.
Partner brands: Nuclear Shields, Leeds Test Objects, MiE GmbH, Spectrum Dynamics Medical
Products & Equipment
Gamma Cameras & SPECT
Gamma cameras, SPECT and digital CZT SPECT/CT systems from MiE GmbH of Germany and Spectrum Dynamics Medical, installed and serviced by Vvon engineers across Bangladesh.
- ECAM NOVA Scintron: A dual head gamma camera for SPECT, whole body and planar imaging in busy departments. It uses FRED digital detectors with 59 photomultiplier tubes per head, real time body contouring and an integrated touchscreen for positioning. Detector heads work at 76, 90 and 180 degrees. (datasheet)
- SYNGULA SCINTRON: A compact large field of view gamma camera for planar work, built for static, dynamic and gated studies on sitting and lying patients. The detector carries 37 matched photomultiplier tubes and a 3/8 inch sodium iodide crystal, with a wide choice of collimators and DICOM connectivity. (datasheet)
- PICOLA SCINTRON: A compact small field of view gamma camera for thyroid, renal and other small organ studies where floor space is limited. The 10 inch detector carries 37 matched 2 inch photomultiplier tubes, and detector tilt and height are driven by a hand controller with an anatomical marker function. (datasheet)
- DIACAM SCINTRON: A gamma camera for all energy SPECT, whole body and planar imaging, supplied with the SCINTRON acquisition and processing system. The large rectangular detector carries 59 high efficiency photomultiplier tubes, and the patient handling system takes loads up to 159 kg. (datasheet)
- VERITON-CT 400 Series: A ring shaped gantry digital SPECT/CT scanner with 12 swivelling CZT detector columns that move to within millimetres of the body contour. It scans head to toes in hybrid mode and reconstructs with attenuation, scatter and partial volume correction on the TruView console. (datasheet)
- VERITON: The SPECT only member of the VERITON family, using the same 360 degree ring of 12 digital CZT detector columns and adaptive body contouring as the hybrid version. Reconstruction options include OSEM with resolution recovery, attenuation correction and scatter correction. (datasheet)
- D-SPECT CARDIO: A dedicated cardiac SPECT camera with an open gantry and CZT detector columns that swivel while the gantry stays still. Patients can be scanned upright, supine or at any angle between, and list mode data supports quantification such as coronary flow reserve. (datasheet)
- D-SPECT VISTA: An entry level member of the D-SPECT family, aimed at departments moving from an analogue sodium iodide cardiac scanner to solid state CZT myocardial perfusion imaging. It offers the same flexible scan positioning and can be upgraded later to D-SPECT CARDIO. (datasheet)
- Gamma Distortion: A rigid PMMA phantom for quality control of geometric distortion and spatial resolution on gamma cameras. A regular array of small holes is filled with activity so the physicist can check point to point distances against true distances and measure the point spread function across the field of view. (datasheet)
- Gamma Flood: A rigid PMMA fillable flood phantom for quality control of detector homogeneity on gamma cameras, and for generating the uniformity correction maps the camera applies. The filling and venting plugs sit on the flat face rather than the edge, so the phantom is filled lying down and the faces do not bulge. (datasheet)
- Gamma Resolution: A four quadrant lead bar phantom in a rigid PMMA housing, used for routine quality control of gamma camera spatial resolution. Each quadrant carries a different bar width and spacing, and engraved pigment filled centre lines allow the phantom to be positioned the same way every time. (datasheet)
- SPECT IQ: A fillable image quality phantom for acceptance and routine testing of SPECT systems. It allows a medical physicist to measure centre of rotation error, uniformity, spatial resolution, volume sensitivity and lesion detectability from a single set of acquisitions. (datasheet)
- VERTO: A dynamic line phantom for gamma camera quality control that replaces heavy fillable flood phantoms and bar masks. A microprocessor controlled line source sweeps back and forth across the detector, starting, stopping and dwelling to the selected program, chosen on the integrated touchscreen. (datasheet)
PET & PET/CT Systems
PET and PET/CT imaging systems for oncology, cardiology and neurology departments.
- ANCORIS: A dedicated positron emission tomography scanner for cardiac work, supplied with the SCINTRON acquisition and processing system. MiE state that it acquires myocardial perfusion imaging and myocardial flow reserve at the same time, and that it is commercially available now. (datasheet)
- ECAT SCINTRON UPGRADE: An upgrade that pairs an installed ECAT positron emission tomography scanner with current SCINTRON acquisition, processing, quantification and viewing hardware and software. It adds 3D acquisition with CASCADE scatter correction and list mode acquisition for coronary flow reserve. (datasheet)
Nuclear Medicine Workstations
Acquisition and processing workstations for nuclear medicine departments.
- SCINTRON Upgrade: A hardware and software upgrade that replaces the ageing acquisition and processing computer on an installed ECAM, Symbia E or Symbia S gamma camera. It brings parallel acquisition and processing, iterative 3D reconstruction and a current operating system to the existing gantry. (datasheet)
- SCINTRON Processing Multivendor: A standalone SCINTRON processing workstation that takes studies from gamma cameras of other makes over DICOM. It gives departments the organ specific SCINTRON processing programs, quantification and viewing tools without replacing the camera they already own. (datasheet)
- SCINTRON 7 PET/CT: A processing computer for installed Biograph PET/CT scanners. It handles listmode acquisition, rebinning and reconstruction, applies prompt gamma, scatter and cascade corrections, and runs linked protocols with online reconstruction so images can be reviewed before the patient leaves. (datasheet)
- TruSPECT Workstation: The acquisition and processing workstation for the D-SPECT series. TruCorr attenuation correction runs here: the user picks a patient folder and a data set, and the workstation generates the corrected images for review in a cardiac analysis package such as 4DM or Cedars. (datasheet)
- TruView Console: The integrated console for the VERITON series. Acquisition, quantitative reconstruction and review sit in one place, covering hybrid SPECT and CT protocol management, database handling and advanced visualisation, with optional dosimetry, SIRT planning and brain SPECT tools. (datasheet)
- SCINTRON Server: A central server that puts the SCINTRON clinical software for nuclear medicine, SPECT and PET onto the department network, so several users can work in parallel. Protocols are handled centrally to keep results and displays consistent, and the system scales as the number of users grows. (datasheet)
Imaging & QA Software
SCINTRON clinical processing modules and quality assurance analysis software for nuclear medicine and radiology.
- Bone - 3 Phase Scintigraphy: A SCINTRON planar processing program that compares a suspected area with a normal one across the flow, blood pool and skeletal phases of a three phase bone study. Regions of interest are placed for each image, and numerical and graphical results are shown with sacroiliac joint quantification. (datasheet)
- Bone - SPECT: A SCINTRON SPECT processing program for skeletal studies. It uses DROSEM iterative reconstruction for half time imaging or dose reduction, offers a range of slice displays including maximum intensity projection, and includes a 3D toolbox for post processing. (datasheet)
- Bone - Whole Body Scan: A SCINTRON planar processing program for whole body bone scans. Up to four projections can be viewed, including a dual intensity display, with cutting and masking tools and a zoom function for up to three chosen cut outs. Deconvolution denoising is available as an option. (datasheet)
- Bone - Wholebody SPECT: A SCINTRON processing program that stitches SPECT acquisitions from several bed positions, normalises them and presents them as one study. Up to five bed positions can be used, each remains readable on its own, and DROSEM 3D OSEM reconstruction keeps acquisition times short. (datasheet)
- Lung - Quantification: A SCINTRON planar processing program that compares right and left lung perfusion or ventilation. From ventral and dorsal studies it places a chosen number of regions of interest symmetrically on each lung and calculates relative density. Free hand regions can also be selected. (datasheet)
- Lung - SPECT: A SCINTRON SPECT processing program for lung studies. It places ventilation and perfusion data sets side by side for direct comparison and calculates the ventilation to perfusion mismatch, so the two acquisitions can be read together rather than one after the other. (datasheet)
- Brain SPECT: A SCINTRON SPECT processing package for neurological studies. It covers DaTSCAN evaluation of presynaptic dopamine transporter binding, IBZM processing of postsynaptic D2 receptor status, and brain perfusion work with left and right hemisphere ratios from segmented regions of interest. (datasheet)
- Myocard SPECT: A SCINTRON cardiac SPECT package that builds the bullseye polar map of activity in the left ventricle from stress or rest studies. Gated and non gated data can be processed, ejection fraction, wall motion and wall thickening are calculated, and results compare against a normal database. (datasheet)
- Thyroid - Radioiodine Test: A SCINTRON planar program that calculates a recommended therapy activity from the uptake of an I-131 test capsule measured on a gamma camera. Three methods are implemented, based on effective half life, on a single late measurement, or on a 24 hour measurement with default half lives. (datasheet)
- Thyroid - Scintigraphy and Uptake Calculation: A SCINTRON planar program for thyroid scintigraphy and uptake. Syringe activity can be measured on the camera or a dose calibrator and organised by number, anatomical markers are set after acquisition, and individual therapy doses and suppression tests can be calculated. (datasheet)
- Kidney - TER, GFR and ERPF calculation: A SCINTRON renography package covering MAG3, DTPA and OIH studies. Start time is recognised automatically so one person can inject and acquire, the measurement protocol with syringe, serum sample and calibration data is supported, and age and gender dependent normal values are applied. (datasheet)
- Hepatobiliary Scintigraphy and Gastric Emptying: The HeparX program visualises and archives hepatocellular function and calculates the gallbladder ejection fraction from pre and post sincalide data using regions of interest over the gallbladder and adjacent liver. Dynamic gastric emptying studies and curve parameters are also processed. (datasheet)
- Kidney - DMSA Scintigraphy: A SCINTRON planar program that shows tracer distribution in the kidneys and calculates the left to right relation. It outlines the existence, position, size and shape of each kidney and determines differential renal function with background and depth correction. (datasheet)
- ECT Program: The core SPECT reconstruction program in SCINTRON. It handles gated and non gated studies, offers filtered backprojection alongside HOSP, OSEM and DROSEM iterative methods, corrects motion during reconstruction, and provides rotation, 3D zoom, sinogram and cine tools. (datasheet)
- 3D Acquisition with CASCADE Scatter Correction: The 3D PET acquisition mode in the SCINTRON PET software, used with CASCADE scatter correction. MiE state that it allows cardiac PET doses between 9 mCi for N-13 and 30 mCi for Rb-82 without sacrificing image quality, which lowers exposure for patient and technologist. (datasheet)
- Cardiac Matching Application: A SCINTRON PET processing tool that corrects registration between transmission and emission studies after acquisition. It removes the misalignment caused by patient movement, which would otherwise produce false reconstruction and reading of cardiac studies. (datasheet)
- CFR via List-Mode Acquisition: A list mode acquisition protocol that SCINTRON brings to the ECAT family of PET scanners. It lets the user create several data sets from a single acquisition, for example the data needed for coronary flow reserve, without having to repeat the study. (datasheet)
- Quantification Integration: An interface in the SCINTRON PET software for the common cardiac quantification packages, including Invia 4DM and Cedars Sinai QPET. Reconstructed studies pass straight into the reading software the department already uses, rather than being exported by hand. (datasheet)
- FUSION Software: Multi modality image fusion for SPECT, PET and CT studies from hybrid or standalone systems. The registration methods work automatically and handle rigid and non linear patient movement, and Hounsfield unit windowing with selectable colour scales controls the display. (datasheet)
- TruCorr Attenuation Correction: Deep learning attenuation correction for myocardial perfusion imaging on the D-SPECT. A convolutional neural network works from the patient's own SPECT emission data in a single acquisition, so no CT or Gd-153 transmission scan is needed to produce a corrected data set. (datasheet)
- Veritas.AI Noise Reduction: Deep learning noise reduction for the VERITON-CT digital SPECT/CT. It reduces image noise without giving up spatial resolution or quantitative accuracy, which supports faster acquisitions and lower administered activity. Spectrum Dynamics state that it holds FDA 510(k) clearance. (datasheet)
- TruClear.AI Noise Reduction: Deep learning noise reduction for myocardial perfusion imaging on the D-SPECT. It reduces statistical noise in low count acquisitions and returns clear perfusion and gated reconstructions, so image quality holds up when scan time or administered activity is cut back. (datasheet)
- TruFlow Dynamic Imaging: Dynamic SPECT software for the D-SPECT, including myocardial blood flow assessment. It uses list mode acquisition with flexible reconstruction to support traditional and fast dynamic protocols, and passes results to established quantitative analysis tools. (datasheet)
- Cardiac First-Pass: A SCINTRON planar program for first pass studies of the heart, acquired while a bolus of high activity is still inside one ventricle. Working from high speed dynamic frames it avoids the background and overlap problems of multi gated studies, and computes ejection fraction, heart rate and cycle length. (datasheet)
- Deconvolution: A SCINTRON processing option that improves the signal to noise ratio of planar studies using standardised parameters, so contours are displayed more sharply. MiE make it available for the Bone, WholeBody and Multidisplay programs, and the result can be read against the raw data side by side. (datasheet)
- DYNAX - Renal Scintigraphy: A SCINTRON program for quantitative analysis of dynamic studies. For renal work it determines side ratios, calculates counts and region sizes, and shows renal function as curves. The same program handles salivary gland studies, giving uptake before irritation and the excretion fraction. (datasheet)
- Analysis of Suppression: A SCINTRON program that compares a thyroid uptake study acquired before suppression with one acquired after it. The same regions are applied to both studies, and the ratio between the two is calculated automatically as a percentage alongside the uptake and area figures for each acquisition. (datasheet)
- AutoPIA: Automatic Phantom Image Analysis software that recognises and analyses test images of Leeds Test Objects phantoms. It calculates reproducible quality indices, stores the results and plots control charts with baseline and threshold values so quality trends and abnormal conditions are visible. (datasheet)
Veterinary Nuclear Imaging
Veterinary Nuclear Imaging from MiE GmbH, supplied and supported in Bangladesh by Vvon Technologies.
- Veterinary Scintigraphy: Nuclear scintigraphy for small animal practice, built on the PICOLA SCINTRON and SYNGULA SCINTRON gamma cameras with a dedicated veterinary software package. Studies covered include thyroid scintigraphy, kidney clearance, bone scintigraphy and portosystemic shunt work. (datasheet)
- Equine Scanner H.R. 2.0: A gantry mounted gamma camera for scintigraphy on a standing horse. The detector support column is mounted about a centimetre above the floor so the head moves quickly along any axis, and ParalyzerPLUS rigid registration corrects for movement in real time during acquisition. (datasheet)
- ParalyzerPLUS Real-Time Motion Correction: Motion correction software for the MiE Equine Scanner H.R. MiE state that they developed the world's first real time motion correction to reduce motion artefacts when imaging a standing horse, with rigid registration software that allows shorter image acquisition times and improved diagnostic quality. Because ParalyzerPLUS removes the need to repeat acquisitions, the scanning process is significantly faster, no post processing is required for motion correction, patient throughput increases and staff radiation exposure per examination is minimised. (datasheet)
- Image Fusion (Fusion 2D) for Equine Scanner: MiE's image fusion for the Equine Scanner brings scintigraphy and x-ray images together to widen the diagnostic possibilities. The program evaluates the different structures, resolution, acquisition geometries and regions, then adjusts rotation, translation (shift) and scaling. The process operates multi modal and automatic, so the fused result carries the morphologic information of the x-ray together with the functional information of the scintigraphy in one image. (datasheet)
Nuclear Medicine QA Phantoms
Quality assurance and calibration phantoms for gamma camera, SPECT and SPECT/CT acceptance testing and routine QA, from Leeds Test Objects and MiE, supplied and supported in Bangladesh by Vvon Technologies Limited.
- MicroPET PSF: A tissue equivalent point spread function phantom for pre-clinical PET systems. It comprises pairs of cylinders in six tissue equivalent materials, one solid and one with a central hole to take a capillary filled with radionuclide. (datasheet)
- NU4 PET IQ: A small field of view PET image quality phantom designed for pre-clinical scanners. It allows testing of image quality, attenuation correction and scatter correction using fillable rods, fillable cylinders and a uniform section, to the NEMA NU4 standard. (datasheet)
- PET CT MRI Cubes: A set of seven clear PMMA cubes each holding a small fillable spherical void, used as point source markers for checking alignment between PET, CT and MR. They can be filled with a radionuclide, CT contrast agent or MR contrast agent and sealed with the nylon screw supplied. (datasheet)
- PET IQ: An anthropomorphic PMMA body phantom for PET and PET/CT image quality testing. Six hollow fillable spheres screw into a plate on one face and can be filled with water for cold lesion imaging or with 18F FDG for hot lesion imaging. (datasheet)
- NEMA IEC Body Phantom Set, Model PET/IEC-BODY/P: This set is made up of a body phantom, a lung insert and an insert carrying six spheres of various sizes. Its design follows the recommendations of the International Electrotechnical Commission (IEC) as modified by the National Electrical Manufacturers Association (NEMA), and MiE recommend it for evaluating reconstructed image quality in whole body PET imaging. Listed applications include simulation of whole body imaging with PET and camera based coincidence techniques, determination of coincidence count rate characteristics in brain and cardiac imaging, evaluation of the relationship between true coincidence count rate and radioactivity, determination of address errors caused by address pile up, evaluation of the count loss correction scheme and research. MiE also supply customised phantoms on request. (datasheet)
- Four Quadrant Bar Phantom (Rectangular, Square and Circular): MiE publish the four quadrant bar phantom in three formats. The Rectangular Bar Phantom measures 22 1/4 in x 17 in with bar sizes of 2 mm, 2.5 mm, 3 mm and 3.5 mm. The Square Bar Phantom is 16 7/8 in square with bar sizes of 1/8 in, 5/32 in, 1/4 in and 3/16 in. The Circular Bar Phantom is 16 in round with bar sizes of 2 mm, 2.5 mm, 3 mm and 3.5 mm. (datasheet)
- Cobalt-57 Flood Sources (C-Thru): MiE describe these as the highest quality sources for performing quality control on gamma camera systems. Every C-Thru flood source uses proprietary cobalt chemistry in the manufacturing process and is delivered with a homogeneous field of view distribution showing a coefficient of less than 1 % variation. Recommended working life of a Co-57 flood source is 2 years, and disposal of sources is arranged on request. (datasheet)
- Jaszczak Phantom (Deluxe): A Jaszczak phantom for quality control, used to carry out system evaluation on all types of SPECT and PET systems covering uniformity, linearity and resolution, as well as acceptance testing and routine quality assurance and control. The Deluxe version has a cylinder wall thickness of 3.2 mm, a cylinder inside diameter of 21.6 cm and a cylinder inside height of 18.6 cm. Rods are supplied in six diameters at a height of 8.8 cm, and six solid spheres are set with their centres 12.7 cm above the base plate. (datasheet)
- Flood Sources and gamma check sources: Flood sources and gamma check sources published by MiE for most gamma camera systems. They are offered in different activities and sizes. MiE list them in the accessories range alongside the Cobalt-57 flood sources. (datasheet)
Radiology & Radiotherapy QA Phantoms
Leeds Test Objects phantoms and test objects for radiography, fluoroscopy, mammography, CT, dental, MRI and ultrasound quality assurance programmes.
- Fillable flood phantom: A refillable flood phantom for quality assurance of gamma camera homogeneity. An integrated circulation pump mixes the filling completely, the design gives a bubble free field of view, and the composite construction stops the measuring surfaces deforming. It is filled with distilled water. (datasheet)
- CT TE: A tissue equivalent CT phantom made up of a water equivalent nested head and body section, each drilled with eight holes for interchangeable tissue equivalent inserts. It is suitable for both kV and MV energies, so it can be used for diagnostic CT and for radiotherapy planning checks. (datasheet)
- CTAEC-25: A CT automatic exposure control phantom built from eleven reconfigurable PMMA ellipses of 25 mm thickness. The stack simulates a changing patient cross section along the scan so the constancy of the AEC can be checked, and each step accepts dosimetry or image quality inserts. (datasheet)
- CTAEC-50: A CT automatic exposure control phantom using six reconfigurable PMMA ellipses of 50 mm thickness. It is used for constancy testing of CT AEC systems where a coarser step size than the CTAEC-25 is sufficient. (datasheet)
- CTIQ: A CT image quality phantom built as a PMMA cylinder with recesses for test inserts, sized to nest inside the TO CTDI body phantom. It covers geometric distortion, CT number, MTF, resolution, slice profile and table movement accuracy in one setup. (datasheet)
- MicroCT set: A set of test objects for assessing image quality on pre-clinical microCT systems. It covers bone density, low contrast, reconstruction artefacts, uniformity and noise, point spread function and dose index in a common cylindrical format. (datasheet)
- Mouse Phantom: A tissue mimicking mouse shaped phantom for demonstrating and assessing image quality on pre-clinical microCT scanners. It contains tissue mimicking skeleton, lung and soft tissue, with a choice of soft tissue CT number. (datasheet)
- Quattro: A programmable three axis respiratory motion phantom for 4DCT and PET quality assurance. It pairs a motion arm with a semi-anthropomorphic tissue equivalent chest phantom, driving vertical surrogate motion, horizontal insert motion and continuous twist of the insert at the same time. (datasheet)
- RT ALIGN: A radiotherapy alignment plate carrying fiducial marks for the common square field sizes and embedded ball bearings at the edges, centre and offset positions. It is used on the EPID surface or on the couch for isocentre alignment, field size checks and EPID scaling. (datasheet)
- RT ALIGN ROTATE: The rotating version of the RT ALIGN plate, which can be indexed through a full turn in fixed increments with or without its rotation jig. It carries the same fiducial marks and embedded ball bearings for isocentre alignment, field size and EPID scaling checks. (datasheet)
- RT CUBE: A cubic isocentre phantom with laser alignment marks, two sets of offset marks and a central high density sphere. It is used to check positioning and repositioning accuracy and the coincidence of kV imaging, MV treatment and positioning system isocentres. (datasheet)
- RT EPID-2: A planar MV imaging quality assurance phantom for electronic portal imaging devices. It is placed directly on the EPID surface and covers the MV imaging tests recommended in AAPM TG-142, including geometric accuracy, resolution, low contrast detectability, uniformity and noise. (datasheet)
- TO CTDI: A CT dose index phantom comprising two PMMA cylinders representing the head and the body. Each cylinder is drilled to accept a pencil ion chamber at the centre and at four peripheral positions, so the user can measure CTDI100, CTDIw, CTDIvol and CTDI free in air. (datasheet)
- TO CTDI plus: A three cylinder CT dose index phantom that adds a paediatric head section to the standard head and body sizes. The cylinders nest inside one another and are drilled for a pencil chamber at the centre and at four peripheral positions. (datasheet)
- MagIQ 142: A compact MRI image quality phantom with a main chamber and four test tubes, giving five separately filled signal compartments. It measures geometric distortion, spatial resolution, contrast resolution, fat suppression, SNR, ghosting, uniformity and slice profile. (datasheet)
- MagIQ and MagIQ Duo: An MRI image quality phantom available with a single chamber (MagIQ) or two identical chambers (MagIQ Duo) that can be filled with different solutions to test high and low field in one object. It covers distortion, resolution, contrast, fat suppression, SNR, ghosting, uniformity and slice profile. (datasheet)
- MAGIQ Breast: A pair of MRI phantoms, one for each breast well, each with two separately filled chambers. They allow quantitative measurement of water signal SNR and of fat fraction using Dixon fat separation, or a T1 to T1 fat sat ratio to assess fat suppression. (datasheet)
- MagIQ Diffusion: An MRI phantom for calibrating contrast values in diffusion weighted imaging and apparent diffusion coefficient protocols. It allows the user to measure seven different values in a single acquisition. (datasheet)
- MagIQ EUROSPIN Set TO1 - TO5: A set of five EUROSPIN pattern MRI phantoms covering the main image quality parameters, supplied with filling solutions and a protective case. TO1 to TO5 address signal to noise, distortion and slice profile, slice position, spatial resolution and MTF, and T1 and T2 precision. (datasheet)
- MagIQ Oncology: An MRI phantom for image quality assessment in cancer diagnosis, treatment planning and therapy, aimed particularly at breast and prostate imaging. A cylindrical phantom nests into a body section and carries detachable sections for T1, T2, DCE and gadolinium doped water. (datasheet)
- MagIQ Sphere: A spherical flood fill MRI phantom sized to fit head coils, with a support that stops it rolling on the couch. The spherical shape allows uniformity and SNR to be tested in several planes without repositioning and is less prone to Gibbs artefact than a cylinder. (datasheet)
- MRI Phantom Filling Solutions: Filling solutions for the MagIQ and MagIQ Duo MRI phantoms, supplied in jerricans. Separate 1.5T and 3.0T formulations are available so the phantom relaxation times suit the field strength being tested. (datasheet)
- T1 T2 EUROSPIN Gels: A set of eighteen gel filled tubes with calibrated T1 and T2 values, sized to drop into the MagIQ EUROSPIN TO5 and into the contrast sections of the MagIQ Solo and MagIQ Duo phantoms. They are used to check relaxation time measurement accuracy. (datasheet)
- 21mm Aluminium Attenuator: A patient equivalent aluminium attenuator plate for image quality checks on general radiography systems, built to the IEC beam quality standards. The integral mounting plate lets it drop straight into common accessory rails without adding material to the beam. (datasheet)
- 25mm Aluminium Attenuator: A patient equivalent aluminium attenuator plate for image quality checks on general radiography systems. A permanently attached thin mounting plate means no extra material sits in the beam when the plate is fitted to the accessory rails. (datasheet)
- CBCT-150: A PMMA cuboid phantom for constancy testing of cone beam CT and 3D fluoroscopy systems to DIN 6868-150. Rows of small air holes of decreasing diameter give a direct measure of spatial resolution, and a tripod allows universal positioning. (datasheet)
- CRDDR Set: A set of test objects for annual and commissioning checks on computed radiography and direct digital radiography systems. It covers erasure cycle efficiency, image retention, sensitivity index consistency, uniformity, scaling errors, artefacts, limiting resolution and threshold contrast detail detectability. (datasheet)
- DR-2: A set of test objects for routine image quality checks on digital radiography systems. It brings together a threshold contrast object, a geometry object, a mesh object and an MTF edge with free software. (datasheet)
- DSA 8/54: A constancy test phantom for digital subtraction angiography systems. A moveable PMMA insert carrying aluminium strips simulates blood vessels and is driven during the exposure by an attached pneumatic hand pump. (datasheet)
- DSF Set: A set of four test objects supplementary to the SFS set, checking the parameters most relevant to digital subtraction fluoroscopy imaging. After mask images are taken, the image content is changed by manipulating the plates. (datasheet)
- Fluoro 4 / Fluoro 4-L: An image quality phantom for digital and conventional fluoroscopy, used at acceptance and then routinely. It carries limiting spatial resolution, low contrast details, a seventeen step copper dynamic range wedge, a kV test area and an unstructured centre marked region. (datasheet)
- FluoroMesh: A routine fluoroscopy resolution phantom scored by counting the number of mesh patterns resolved in the image. Keeping a record of the count over time reveals any trend towards deterioration in imaging performance. (datasheet)
- Fluoroscopy Step Wedge: An eleven step aluminium wedge for use with fluoroscopy systems, used to check contrast and dynamic range response. The first step is taller than the rest, giving a clear reference point in the image. (datasheet)
- Motus Motion Platform: A compact programmable motion arm that introduces controlled motion into quality assurance testing, addressing the limits of static tests on dynamic imaging systems. Leeds Test Objects phantoms clamp to the platform, and tilting the legs adds simultaneous Y axis motion. (datasheet)
- PIX 13: A digital radiography image quality phantom used at acceptance to set a baseline and then routinely to track any drift. It combines limiting spatial resolution, low contrast details, a copper step wedge for dynamic range and radiopaque alignment markers on one plate. (datasheet)
- PMMA/Cu Attenuator: A bonded PMMA and copper attenuator that provides patient equivalent attenuation for use with the PIX 13 and Fluoro-4 image quality phantoms. It is supplied in the square size that matches the phantom being tested, so the whole test object sits behind the same attenuation. (datasheet)
- SFS Set: A set of test objects for annual and commissioning checks on screening fluoroscopy systems. It combines threshold contrast, contrast, greyscale, edge, geometry and mesh test objects with copper filters and a resolution test object. (datasheet)
- SFS-2: An updated screening fluoroscopy test object set for routine image quality checks. It pairs the TO10 and TO12 threshold contrast objects with contrast loss, geometry, mesh and resolution objects so trends in performance can be tracked over time. (datasheet)
- TO 10: A contrast detail test object for fluoroscopic x-ray systems, giving a quick quantitative assessment of image quality. Results are plotted on a threshold detection index curve so performance can be compared over time or between systems. (datasheet)
- TO 12: A contrast detail test object for digital spot imaging systems, giving a quick quantitative assessment of image quality. Results are plotted on a threshold detection index curve so performance can be tracked between test sessions. (datasheet)
- TO 16: A contrast detail test object for computed and digital radiography, giving a quick quantitative assessment of image quality. It offers twelve contrasts per detail size and results plot onto a threshold detection index curve. (datasheet)
- TO 20: A contrast detail test object for digital subtraction fluoroscopy, giving a quick quantitative assessment of image quality. It offers twelve contrasts per detail size and results plot onto a threshold detection index curve. (datasheet)
- TO AEC: A stack of PMMA plates used to check the consistency, repeatability and reproducibility of an x-ray automatic exposure control system. The plates are combined to build up different patient equivalent thicknesses and are supplied in a protective carry bag. (datasheet)
- TO DR: A dynamic range test object for systems that operate by sensing mean signal levels, measuring detail visibility across a wide range of input x-ray intensities. Separate designs cover subtraction and non-subtraction systems. (datasheet)
- TO DSA: A modular phantom set for quality control of digital subtraction angiography image quality. Separate vessel, resolution, bone, slot and step wedge blocks let the user assess dynamic range, iodine contrast resolution, uniformity, linearity and mis-registration artefacts. (datasheet)
- TO MTF: An MTF edge device comprising a tungsten plate mounted on an angulation wheel, so the edge angle can be set repeatably. It is used to measure the modulation transfer function of digital x-ray detectors and is supplied with free analysis software. (datasheet)
- TO XR21: A PMMA phantom that lets the user check interventional fluoroscopy image quality to the NEMA XR21 standard. The plates stack in 25 mm steps up to 300 mm so a range of patient sizes can be simulated in one test session. (datasheet)
- TOR 18FG: A routine fluoroscopy and fluorography test object designed for weekly or monthly use. After a grey scale check the user counts the details detected and the bar patterns resolved, giving a simple repeatable score that reveals any drift in imaging performance. (datasheet)
- TOR ABC: A beam alignment test object for routine weekly or monthly checks on radiography and fluoroscopy systems. It shows whether the light field matches the radiation field, locates the central beam and confirms the central beam angle deviation from perpendicular is within limits. (datasheet)
- TOR CDR: A routine radiography test object for conventional and non-subtractive digital radiography and fluorography. Image quality is scored by counting the details detected and the bar patterns resolved after an initial grey scale check, so trends in performance show up quickly. (datasheet)
- VISIRAY Rulers: Radiopaque and phosphorescent rulers used to check the congruence between the light field, the radiation field and the x-ray image field. The phosphor coating lights up under x-rays and shows no significant afterglow, so a darkened room and a camera are needed. (datasheet)
- Coarto Force Gauge: A digital force gauge that measures the breast compression force applied by a mammography system. It has a dynamic display and a peak hold display, so the maximum force reached during a compression cycle can be read afterwards, and it is supplied with a compressible rubber block. (datasheet)
- CoreView: A kit of test objects for ongoing image quality checks on dedicated core biopsy imaging systems, sized to fit the COREVISION system. It covers threshold contrast, spatial resolution, geometric distortion, uniformity and AEC. (datasheet)
- DMAM2: A full digital mammography phantom set built to the fourth edition European guidelines. It combines a threshold contrast detail plate, filaments, a graded set of PMMA plates, mesh and grid targets, a steel straight edge, a resolution pattern and the filters needed for homogeneity and ghosting tests. (datasheet)
- DMAM2 Gold: The gold contrast detail plate from the DMAM2 set, available on its own for routine threshold contrast scoring on digital mammography systems. It carries 78 details in six sizes across a wide contrast range. (datasheet)
- PIXMAM: A digital mammography image quality phantom made from a stack of finely toleranced PMMA plates, one of which carries an encapsulated aluminium foil. It is used for AEC checks, detector homogeneity, signal to noise ratio and contrast to noise ratio. (datasheet)
- PIXMAM 3D: A routine image quality phantom for digital breast tomosynthesis. It adds a plate holding twenty five embedded spheres for the Z resolution test to the standard PIXMAM stack, so geometric distortion and image resolution can also be checked. (datasheet)
- Tissue Equivalent Materials: A range of tissue equivalent materials supplied in many sizes and shapes, including moulded or machined cavities to house dosimeters. The materials are suitable for both kV and MV energies, so they can be used for diagnostic and radiotherapy dosimetry work. (datasheet)
- TOMO IQ: A complete phantom set for testing tomosynthesis mammography systems, designed to the EUREF breast tomosynthesis protocol. It combines the graded PMMA stack and Z resolution plate with a TORMAM phantom, NPS aluminium filter, MTF steel edge and x-ray rulers. (datasheet)
- TOR MAM: A mammography test object that gives a more natural looking image than a purely geometric phantom, supplementary to TOR MAS or TOR MAX. One half carries filaments, micro-particles and low contrast details, the other simulates breast tissue with micro-calcifications. (datasheet)
- TOR MAS: A routine mammography test object supplied with a 7 cm attenuator stack. It covers sensitometry, resolution limit, low and high contrast detail detectability and simulated micro-calcifications, so a simple score can be recorded at each test session. (datasheet)
- TOR MAX: A routine mammography test object supplied with a 7 cm attenuator stack, offering two resolution limit patterns rather than one. It covers sensitometry, low and high contrast detail detectability and simulated micro-calcifications. (datasheet)
- CBCT-161: A PMMA cylinder phantom for constancy testing of dental cone beam CT systems to DIN 6868-161. It carries soft tissue equivalent, bone equivalent and air sections, and the CBCT-161-A accessory extends it to acceptance testing. (datasheet)
- CBCT-161-Mini: A smaller version of the CBCT-161 phantom for constancy testing of small field of view dental cone beam CT systems, designed in accordance with DIN 6868-161. It comes with a tripod and levelling platform for repeatable positioning. (datasheet)
- DENTEST: A routine dental radiography test object designed for quick monthly checks of imaging performance. Image quality is scored by counting the resolvable steps, contrast details and resolution meshes after an initial uniformity check. (datasheet)
- SedentexCT DI: A dose index phantom for dental cone beam CT, built from a stack of PMMA plates forming a cylinder that represents the adult head. It accommodates several detector types so the department can use the dosimetry equipment it already owns. (datasheet)
- SedentexCT IQ: A dental cone beam CT image quality phantom comprising a PMMA cylinder with recesses for test inserts. The body provides uniform PMMA for noise and an air hole array for geometric distortion, while the inserts add spatial resolution, contrast and density measurements. (datasheet)
- SedentexCTIQ Paediatric: An accessory to the SedentexCT IQ phantom that lets the standard test inserts be placed in a body sized for paediatric cone beam CT imaging. Image quality is then assessed at a phantom size that represents a child rather than an adult head. It complies with the Chinese YYT 0795-2022 standard. (datasheet)
- TO PAN: A dental phantom that quantifies the complex focal trough of a panoramic x-ray unit, allowing a full assessment of the parameters that affect image quality. It works with both film and digital systems and comes with a tripod for universal positioning. (datasheet)
- TO UniDENT: An intra-oral radiographic test object based on a step wedge whose steps are individually calculated to simulate the extremes of the intra-oral imaging task. That makes it more sensitive than a conventional step wedge and gives a clinically relevant indication of the whole imaging chain. (datasheet)
- TOR DEN digital: A dental phantom for checking image quality on digital intra-oral, panoramic and cephalometric x-ray systems. Tests are run at acceptance to set a baseline and then routinely to track any deterioration in the imaging chain. (datasheet)
- TOR DEN plus: A dental phantom for modern high resolution digital intra-oral x-ray systems, covering a higher line pair range than the standard TOR DEN. Tests are run at acceptance to set a baseline and then routinely. It is supplied in a tough case with a bespoke foam insert. (datasheet)
- SONIQ ONE: A tissue mimicking phantom for ultrasound image quality control, carrying grey scale targets, lateral and longitudinal resolution groups and fine pin targets at several depths. It is compact enough to carry between rooms for routine testing. (datasheet)
- SonIQ Uniformity: A uniform ultrasound phantom used to test linear, curvilinear and intra-cavity probes for common defects such as damaged transducer elements or cables. Such defects show up as non-uniformities in the image of a uniform phantom. (datasheet)
- Filters: Added filtration plates for x-ray quality assurance work, supplied in a range of materials, thicknesses and dimensions. Copper, aluminium and lead are available, and the department specifies the size it needs. (datasheet)
- Protective Cases: The protective cases with foam inserts in which Leeds Test Objects test objects are supplied, available to order separately. They are useful as replacements or where a phantom needs to be transported between sites. (datasheet)
- Resolution Test Patterns: A range of x-ray line pair resolution test patterns used to measure limiting spatial resolution and, with a focal spot jig, focal spot size. Leeds Test Objects publishes a user manual covering the pattern types. (datasheet)
- Slit Camera: A slit camera comprising a high density metal filter into which a fine slit has been machined, used for focal spot measurement. The slit width is made to suit the application and the slit length is fixed. (datasheet)
- Star Patterns: X-ray star test patterns used with a focal spot jig to measure the effective focal spot size of an x-ray tube. The blur of the star spokes in the magnified image gives the focal spot dimension. They form part of the Leeds Test Objects range of x-ray test patterns. (datasheet)
- TO FSJ General: A focal spot jig for general radiography x-ray systems, used with an appropriate test pattern to measure the focal spot size. It includes a quick central alignment check and is supplied in a protective carry case. (datasheet)
- TO H2O: A fillable PMMA water phantom with separate plugs for filling and emptying, available in four depths on a common 300 by 300 mm footprint. It gives a water equivalent attenuator for dose and image quality tests where a defined patient thickness is required. (datasheet)
- TO HVL: A filter stand used with aluminium filters and a multimeter to measure the half value layer of an x-ray system. The height adjusts across four settings to suit different modalities and there is a detector recess in the base. (datasheet)
- TO HVL Filters: Aluminium filter sets used with the TO HVL filter stand to measure the half value layer of an x-ray system. Three sets are offered for general radiography, standard mammography and high purity mammography work. (datasheet)
- Vertical Bucky Jig (HANGER): A hanger type vertical bucky jig that holds the TOR ABC beam alignment phantom against an upright bucky, so the alignment check can be made on a vertical stand as well as on the table. It can be bought with the TOR ABC or on its own. (datasheet)
- Vertical Bucky Jig (SUCTION): A suction type vertical bucky jig that holds the TOR ABC beam alignment phantom against an upright bucky, so the alignment check can be made on a vertical stand as well as on the table. It can be bought with the TOR ABC or on its own. (datasheet)
- X-ray Rulers: Radiopaque x-ray rulers used to check radiation field size and image geometry on imaging systems. They are laid across the detector so the field edges can be read off directly in the image, and they are available in various sizes and colours up to two metres in length. (datasheet)
Hot Lab Shielding & L-Blocks
Nuclear Shields L-block workstations and hot lab shielding for radiopharmacy dispensing.
- Corner Tabletop Shield - 3 mm: A benchtop lead shield that stands between the operator and the activity on the bench, sized to sit on an existing worktop without any building work. Shielding is 3 mm of lead, outside dimensions 350 x 450 x 350 mm (w x d x h). (datasheet)
- Cyclotron Workstation - 50 mm: A heavily shielded workstation for cyclotron produced radionuclides, giving a large shielded working area for target handling and processing. Shielding is 50 mm of lead, inside dimensions 880 x 531 mm (working area). (datasheet)
- Dose Drawing Station: A dose drawing station that holds the vial shield and the syringe in a fixed shielded position while the dose is drawn, so the hands stay out of the direct beam. It is used in the radiopharmacy at the point where doses are drawn from a bulk vial into individual syringes. (datasheet)
- Mobile PET Workstation - 50 mm: A mobile PET workstation with a movable lead screen and a shielded work surface, for preparing and dispensing high energy PET radiopharmaceuticals. Shielding is 55 mm movable screen & 20 mm work surface of lead, inside dimensions 1110 x 705 mm (working area). (datasheet)
- QC L-Block Station - 50 mm: A floor standing L-block station for quality control and dose preparation work in the hot lab, with a lead shielded working area and a lead glass viewing window. Shielding is 50 mm of lead, inside dimensions 880 x 530 x 255 mm (working area). (datasheet)
- QC L-Block Station (SPECT): A floor standing L-block station for quality control and dose preparation work in the hot lab, with a lead shielded working area and a lead glass viewing window. Shielding is 5 mm of lead, inside dimensions 953 x 603 x 255 mm (working area). (datasheet)
- QC L-Block Station with waste compartment - 50 mm: A floor standing L-block station for quality control and dose preparation work in the hot lab, with a lead shielded working area and a lead glass viewing window. Shielding is 50 mm of lead, inside dimensions 880 x 530 x 255 mm (working area). (datasheet)
- Shielded synthesis workstation: A shielded synthesis workstation for radiochemistry, with heavy lead shielding on the sides and front and a shielded workbench. Shielding is 50 mm in sides & front / 10 mm in back & workbench of lead, inside dimensions 1485 x 485 x 620 mm (working area). (datasheet)
- Tabletop L-Block Shield - 20 mm: A benchtop L-block shield for handling gamma emitting radiopharmaceuticals, with a lead glass window that keeps the working area in view while the body of the shield stands between the operator and the dose. Shielding is 20 mm of lead, outside dimensions 422 x 505 x 580 mm (w x d x h). (datasheet)
- Tabletop L-Block Shield - 30 mm: A benchtop L-block shield for handling gamma emitting radiopharmaceuticals, with a lead glass window that keeps the working area in view while the body of the shield stands between the operator and the dose. Shielding is 30 mm of lead, outside dimensions 426 x 516 x 604 mm (w x d x h). (datasheet)
- Tabletop L-block Shield - 5 mm: A benchtop L-block shield for handling gamma emitting radiopharmaceuticals, with a lead glass window that keeps the working area in view while the body of the shield stands between the operator and the dose. Shielding is 5 mm lead & 5 mm aluminum of aluminum, lead, outside dimensions 416 x 486 x 549 mm (w x d x h). (datasheet)
- Tabletop L-Block Shield - 50 mm: A benchtop L-block shield for handling gamma emitting radiopharmaceuticals, with a lead glass window that keeps the working area in view while the body of the shield stands between the operator and the dose. Shielding is 50 mm of lead, outside dimensions 425 x 550 x 590 mm (w x d x h). (datasheet)
- Tabletop L-Block Shield -12.5 mm: A benchtop L-block shield for handling gamma emitting radiopharmaceuticals, with a lead glass window that keeps the working area in view while the body of the shield stands between the operator and the dose. Shielding is 12.5 mm of lead, outside dimensions 422 x 484 x 559 mm (w x d x h). (datasheet)
- Tabletop Shield - 12 mm: A benchtop lead shield that stands between the operator and the activity on the bench, sized to sit on an existing worktop without any building work. Shielding is 12 mm of lead, outside dimensions 320 x 250 x 520 mm (w x d x h). (datasheet)
- Tabletop Shielded Workstation - 5 mm: A benchtop lead shield that stands between the operator and the activity on the bench, sized to sit on an existing worktop without any building work. Shielding is 5 mm of lead, inside dimensions 565 x 362 x 293 mm. (datasheet)
- Tabletop Shielded Workstation - 8 mm lead 10 mm aluminum: A benchtop lead shield that stands between the operator and the activity on the bench, sized to sit on an existing worktop without any building work. Shielding is 8 mm lead & 5 mm aluminum of aluminum, lead, inside dimensions 565 x 362 x 293 mm. (datasheet)
- Lead Castle - Sliding Door (LC310-412-100SD): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- Lead Castle - Sliding Door (LC310-412-100SD-2C): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. Shielding is 100 mm of lead, inside dimensions 302 x 403 mm (diameter x height). (datasheet)
- Lead Castle - Sliding Door (LC315-416-100SD): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- Lead Castle - Sliding Doors: A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- Lead Castle - Sliding Top Door: A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. Shielding is 150 mm of lead, inside dimensions 293 x 394 mm (diameter x height). (datasheet)
- Lead Castle - top door (LC150-350-100T): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. Shielding is 100 mm of lead, inside dimensions 150 x 400 mm (diameter x height). (datasheet)
- Lead Castle - top door (LC197-600-30T): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. Shielding is 30 mm of lead, inside dimensions 196 x 600 mm (diameter x height). (datasheet)
- Lead Castle - top door (LC150-250-100T): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- Lead Castle - top door (LC280-400-100T): A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- Lead Castle - Top/Front door: A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. Shielding is 100 mm of lead, inside dimensions 280 x 400 mm (diameter x height). (datasheet)
- Square Lead Castle - Sliding Door: A lead castle that encloses a source or a detector on all sides, with an access door so the contents can be reached without dismantling the shielding. It is used around gamma sources, germanium detectors and low background counting equipment, where the shielding has to be close fitting on every side. (datasheet)
- HFC Shielding - 12,5 mm (LP-E0031751): Built in stainless steel, this unit shields hand and foot monitors used in radiation controlled environments. The integrated 12,5 mm lead shielding reduces the influence of ambient radiation on the measurement, so radioactive contamination on hands and feet is detected more reliably. Nuclear Shields describe the construction as robust and practical to use, suited to locations where accurate contamination monitoring and radiation safety are essential. (datasheet)
- Lead Castle Ultra Low Background no. 1 (LCU430-200T-D2): An ultra low background lead castle catalogued by Nuclear Shields as LCU430-200T-D2. Its inside dimensions are a diameter of 430 mm by 200 mm high. The shield is built from 9 cm LBL and 1 cm ULBL, and a copper liner and frame are included. (datasheet)
- Lead Castle - top door (LC152-566-50T): A top door lead castle from Nuclear Shields, catalogued as LC152-566-50T. Inside dimensions are 152 x 566 mm. The unit is made according to drawing #E0003542. (datasheet)
- Lead Castle - Sliding Door (LC150-200-100SD): A sliding door lead castle from Nuclear Shields, catalogued as LC150-200-100SD. Inside dimensions are 150 x 200 mm, quoted including a 2 mm copper inner liner. (datasheet)
- Lead Castle: A lead castle from MiE, supplied including a lead glass window. Different sizes and shieldings are available on request, with 50 mm and 18 mm given as examples. MiE publish it within the accessories range for their own nuclear medicine systems. (datasheet)
- Mobile Radiation Shield with Lead Glass: A mobile radiation protection screen from MiE fitted with a lead glass viewing panel. Overall dimensions are 77 cm x 161 cm x 75 cm (30.3 in x 63.3 in x 29.5 in) width by height by depth, and the lead glass panel measures 68 cm x 68 cm (26.8 in x 26.8 in). Lead equivalent is 1,5 mm Pb. Other dimensions are available on request. (datasheet)
Syringe & Vial Shielding
Tungsten and lead syringe and vial shields for safe handling of radiopharmaceuticals.
- 1 ml Big-Screw Syringe Shield - 11.5 x 76 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 76 mm (diameter x height). (datasheet)
- 1 ml Big-Screw Syringe Shield - 8.8 x 72 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 8.8 x 72 mm (diameter x height). (datasheet)
- 1 ml Big-Screw Syringe Shield - 8.8 x 76 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 8.8 x 76 mm (diameter x height). (datasheet)
- 1 ml Clip-Lock Syringe Shield - 11.5 x 76 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 76 mm (diameter x height). (datasheet)
- 1 ml Clip-Lock Syringe Shield - 8.8 x 72 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 8.8 x 72 mm (diameter x height). (datasheet)
- 1 ml Clip-Lock Syringe Shield - 8.8 x 76 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 8.8 x 76 mm (diameter x height). (datasheet)
- 1 ml Lead Glass Syringe Shield - 11.5 x 76 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 11.5 x 76 mm (diameter x height). (datasheet)
- 1 ml Lead Glass Syringe Shield - 8.8 x 72 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 8.8 x 72 mm (diameter x height). (datasheet)
- 1 ml Lead Glass Syringe Shield - 8.8 x 76 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 8.8 x 76 mm (diameter x height). (datasheet)
- 1 ml PET Syringe Shield - 11.5 x 76 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 11.5 x 76 mm (diameter x height). (datasheet)
- 1 ml PET Syringe Shield - 8.8 x 72 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 8.8 x 72 mm (diameter x height). (datasheet)
- 1 ml PET Syringe Shield - 8.8 x 76 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 8.8 x 76 mm (diameter x height). (datasheet)
- 10 ml Big-Screw Syringe Shield - 18.2 x 75 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10 ml Big-Screw Syringe Shield - 18.2 x 85 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 10 ml Clip-Lock Syringe Shield - 18.2 x 75 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10 ml Clip-Lock Syringe Shield - 18.2 x 85 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 10 ml Lead Glass Syringe Shield - 18.2 x 75 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10 ml Lead Glass Syringe Shield- 18.2 x 85 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 10 ml PET Syringe Shield - 18.2 x 75: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10 ml PET Syringe Shield - 18.2 x 85: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 10ml BETA Big-Screw Syringe Shield - 18.2 x 75 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10ml BETA Big-Screw Syringe Shield - 18.2 x 85 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 10ml DUAL Syringe Shield - 18.2 x 75 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 18.2 x 75 mm (diameter x height). (datasheet)
- 10ml DUAL Syringe Shield - 18.2 x 85 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 18.2 x 85 mm (diameter x height). (datasheet)
- 1ml BETA Big-Screw Syringe Shield - 11.5 x 76 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 11.5 x 76 mm (diameter x height). (datasheet)
- 1ml BETA Big-Screw Syringe Shield - 8.8 x 72 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 8.8 x 72 mm (diameter x height). (datasheet)
- 1ml BETA Big-Screw Syringe Shield - 8.8 x 76 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 8.8 x 76 mm (diameter x height). (datasheet)
- 2 ml Big-Screw Syringe Shield - 11.5 x 53 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 53 mm (diameter x height). (datasheet)
- 2 ml Big-Screw Syringe Shield - 11.5 x 60 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 60 mm (diameter x height). (datasheet)
- 2 ml Clip-Lock Syringe Shield - 11.5 x 53 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 53 mm (diameter x height). (datasheet)
- 2 ml Clip-Lock Syringe Shield - 11.5 x 60 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 60 mm (diameter x height). (datasheet)
- 2 ml Lead Glass Syringe Shield - 11.5 x 53 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 11.5 x 53 mm (diameter x height). (datasheet)
- 2 ml Lead Glass Syringe Shield - 11.5 x 60 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 11.5 x 60 mm (diameter x height). (datasheet)
- 2 ml PET Syringe Shield - 11.5 x 53 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 11.5 x 53 mm (diameter x height). (datasheet)
- 2 ml PET Syringe Shield - 11.5 x 60 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 11.5 x 60 mm (diameter x height). (datasheet)
- 20ml Big-Screw Syringe Shield - 22.4 x 96 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 22.4 x 96 mm (diameter x height). (datasheet)
- 20ml DUAL Syringe Shield - 22.4 x 89 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 22.4 x 89 mm (diameter x height). (datasheet)
- 20ml DUAL Syringe Shield - 22.4 x 96 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 22.4 x 96 mm (diameter x height). (datasheet)
- 2ml BETA Big-Screw Syringe Shield - 11.5 x 53 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 11.5 x 53 mm (diameter x height). (datasheet)
- 2ml BETA Big-Screw Syringe Shield - 11.5 x 60 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 11.5 x 60 mm (diameter x height). (datasheet)
- 3 ml Big-Screw Syringe Shield - 11.5 x 65 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 65 mm (diameter x height). (datasheet)
- 3 ml Big-Screw Syringe Shield - 11.5 x 69 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 69 mm (diameter x height). (datasheet)
- 3 ml Clip-Lock Syringe Shield - 11,5 x 65 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 65 mm (diameter x height). (datasheet)
- 3 ml Clip-Lock Syringe Shield - 11.5 x 69 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 11.5 x 69 mm (diameter x height). (datasheet)
- 3 ml Lead Glass Syringe Shield - 11.5 x 65 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 11.5 x 65 mm (diameter x height). (datasheet)
- 3 ml Lead Glass Syringe Shield - 11.5 x 69 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 11.5 x 69 mm (diameter x height). (datasheet)
- 3 ml PET Syringe Shield - 11.5 x 65 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 11.5 x 65 mm (diameter x height). (datasheet)
- 3 ml PET Syringe Shield - 11.5 x 69: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 11.5 x 69 mm (diameter x height). (datasheet)
- 3ml BETA Big-Screw Syringe Shield - 11.5 x 65 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 11.5 x 65 mm (diameter x height). (datasheet)
- 3ml BETA Big-Screw Syringe Shield - 11.5 x 69 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 11.5 x 69 mm (diameter x height). (datasheet)
- 5 ml Big-Screw Syringe Shield - 15.4 x 61 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5 ml Big-Screw Syringe Shield - 15.4 x 65 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5 ml Big-Screw Syringe Shield - 15.4 x 68 mm: A tungsten syringe shield with a threaded big screw closure, used to reduce the dose to the hands while a radiopharmaceutical is drawn up and injected. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 5 ml Clip-Lock Syringe Shield - 15.4 x 61 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5 ml Clip-Lock Syringe Shield - 15.4 x 65 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5 ml Clip-Lock Syringe Shield - 15.4 x 68 mm: A tungsten syringe shield with a quick clip lock closure, so the syringe can be loaded and released in one movement during dose preparation and injection. Shielding is 2 mm of tungsten, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 5 ml Lead Glass Syringe Shield - 15.4 x 61 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5 ml Lead Glass Syringe Shield - 15.4 x 65 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5 ml Lead Glass Syringe Shield - 15.4 x 68 mm: A tungsten syringe shield with a lead glass window, so the radiographer can read the graduations on the barrel while the dose is drawn and injected. Shielding is 2 mm tungsten, 7 mm lead glass of lead glass, tungsten, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 5 ml PET Syringe Shield - 15.4 x 61 mm: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding thickness is 8 mm, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5 ml PET Syringe Shield - 15.4 x 65: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5 ml PET Syringe Shield - 15.4 x 68: A heavy walled tungsten syringe shield for PET radiopharmaceuticals, where the 511 keV annihilation photons need considerably more attenuation than a technetium dose. Shielding is 8 mm of tungsten, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 5ml BETA Big-Screw Syringe Shield - 15.4 x 61 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5ml BETA Big-Screw Syringe Shield - 15.4 x 65 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5ml BETA Big-Screw Syringe Shield - 15.4 x 68 mm: An acrylic syringe shield for beta emitting radiopharmaceuticals, where a low atomic number material limits the bremsstrahlung produced by stopping the beta particles. Shielding is 10 mm of acrylic, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 5ml DUAL Syringe Shield - 15.4 x 61 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 15.4 x 61 mm (diameter x height). (datasheet)
- 5ml DUAL Syringe Shield - 15.4 x 65 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 15.4 x 65 mm (diameter x height). (datasheet)
- 5ml DUAL Syringe Shield - 15.4 x 68 mm: A two layer syringe shield with an acrylic inner and a tungsten outer, giving protection against beta particles and against the gamma and bremsstrahlung radiation they generate. Shielding is 4 mm tungsten, 5 mm acrylic of acrylic, tungsten, inside dimensions 15.4 x 68 mm (diameter x height). (datasheet)
- 3 mm magnetic tungsten vial shield: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 3 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten magnetic vial shield - blue: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten magnetic vial shield - Green: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten magnetic vial shield - Red: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten magnetic vial shield - Silver/Gray: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten magnetic vial shield - Yellow/Gold: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten sliding vial shield - Blue: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten sliding vial shield - Green: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten sliding vial shield - Silver/Gray: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten sliding vial shield- Red: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 4 mm tungsten sliding vial shield- Yellow/Gold: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 4 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten magnetic vial shield - Blue: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten magnetic vial shield- Green: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten magnetic vial shield- Red: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten magnetic vial shield- Silver/Gray: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten magnetic vial shield- Yellow/Gold: A tungsten vial shield with a magnetic closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten sliding vial shield- Blue: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten sliding vial shield- Green: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten sliding vial shield- Red: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten sliding vial shield- Silver/Gray: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- 6 mm tungsten sliding vial shield- Yellow/Gold: A tungsten vial shield with a sliding closure, used to hold an elution or kit vial during dispensing. The colour coding lets a hot lab separate one radionuclide from another at a glance. Shielding is 6 mm of tungsten, inside dimensions 27 x 61 mm (diameter x height). (datasheet)
- Lead glass vial shield - Blue: A vial shield combining a tungsten body with a lead glass window, so the contents and the liquid level stay visible while the vial is handled. Shielding is 4 mm of lead, tungsten, inside dimensions 33 x 58 mm (diameter x height). (datasheet)
- Lead glass vial shield - Green: A vial shield combining a tungsten body with a lead glass window, so the contents and the liquid level stay visible while the vial is handled. Shielding is 4 mm of lead, tungsten, inside dimensions 33 x 58 mm (diameter x height). (datasheet)
- Lead glass vial shield - Red: A vial shield combining a tungsten body with a lead glass window, so the contents and the liquid level stay visible while the vial is handled. Shielding is 4 mm of lead, tungsten, inside dimensions 33 x 58 mm (diameter x height). (datasheet)
- Lead glass vial shield - Silver/Gray: A vial shield combining a tungsten body with a lead glass window, so the contents and the liquid level stay visible while the vial is handled. Shielding is 4 mm of lead, tungsten, inside dimensions 33 x 58 mm (diameter x height). (datasheet)
- Lead glass vial shield - Yellow/Gold: A vial shield combining a tungsten body with a lead glass window, so the contents and the liquid level stay visible while the vial is handled. Shielding is 4 mm of lead, tungsten, inside dimensions 33 x 58 mm (diameter x height). (datasheet)
- Lead Shielded Container - 35 mm: A lead shielded container for storing and moving radioactive sources and vials, with a stainless steel exterior that can be cleaned down and a painted lead interior. Shielding is 35 mm of lead, inside dimensions 80 x 175 mm (diameter x height). (datasheet)
- Lead Shielded Containers - 60 mm: A lead shielded container for storing and moving radioactive sources and vials, with a stainless steel exterior that can be cleaned down and a painted lead interior. Shielding is 60 mm of lead, inside dimensions 70 x 120 mm (diameter x height). (datasheet)
- Lead Vial Pig - 25 mm: A lead vial pig for storing and carrying a single radiopharmaceutical vial, finished in white epoxy paint so the lead is sealed and the pig can be wiped down. Shielding is 25 mm of lead, inside dimensions 44 x 70 mm. (datasheet)
- Mobile Lead Container - 50 mm: A lead shielded container for storing and moving radioactive sources and vials, with a stainless steel exterior that can be cleaned down and a painted lead interior. Shielding is 50 mm of lead, inside dimensions 60 x 127 mm (diameter x height). (datasheet)
- Tungsten container - 20 mm: A tungsten container for storing and transporting a radioactive vial or source. Tungsten gives the same attenuation as lead in a smaller and lighter body. Shielding is 20 mm of tungsten, inside dimensions 33 x 63 mm (diameter x height). (datasheet)
- Tungsten Container - 30 mm: A tungsten container for storing and transporting a radioactive vial or source. Tungsten gives the same attenuation as lead in a smaller and lighter body. Shielding is 30 mm of tungsten, inside dimensions 33 x 63 mm (diameter x height). (datasheet)
- Tungsten container - 36 mm: A tungsten container for storing and transporting a radioactive vial or source. Tungsten gives the same attenuation as lead in a smaller and lighter body. Shielding is 36 mm of tungsten, inside dimensions 28 x 61 mm (diameter x height). (datasheet)
- Tungsten Container - 6 mm: A tungsten container for storing and transporting a radioactive vial or source. Tungsten gives the same attenuation as lead in a smaller and lighter body. Shielding is 6 mm of tungsten, inside dimensions 35 x 80 mm (diameter x height). (datasheet)
- Tungsten Container - 20 mm (VS242): Radioactive sources are stored in this tungsten container behind 20 mm of tungsten shielding. Its top lid carries a tapered hole that accommodates dose drawing while minimising radiation exposure, and the hole can be shielded with a tungsten plug. That plug is optionally supplied threaded, although Nuclear Shields recommend leaving it unthreaded where threading is not needed so the hole diameter stays as small as possible. 20 mm is the standard shielding thickness and can be customised; where less than 6 mm is required they point instead to their tungsten vial shields. (datasheet)
- Syringe Shields and Shielded Syringe Carrier: MiE publish two items on this accessories page. The Shielded Syringe Carrier has a carrying handle and is intended for transporting loaded disposable syringes. The Syringe Shields are tungsten with a shielding factor of 150, listed in 1 ml, 2 ml, 5 ml and 10 ml conical sizes. (datasheet)
Shielded Storage & Transport
Shielded containers, pots and transport systems for radioactive material.
- Alternative Lead-lined Cabinet - 12,5mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 12.5 mm of lead, inside dimensions 456 x 440 x 155 mm (per shelve)456 x 440 x 691 mm (total). (datasheet)
- Alternative Lead-lined Cabinet - 6mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 6 mm of lead, inside dimensions 456 x 440 x 155 mm (per shelve)456 x 440 x 691 mm (total). (datasheet)
- Lead Shielded 200-Liter Drum Overpack: A lead shielded overpack that takes a standard 200 litre waste drum, adding shielding around the drum for storage and transport. Shielding is 50 mm of lead, inside dimensions 670 x 892 mm (diameter x height). (datasheet)
- Lead Shielded Compact Source Storage Safe - 10 mm: A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 10 mm, 20 mm in door of lead, inside dimensions 300 x 300 x 300 mm. (datasheet)
- Lead Shielded Compact Source Storage Safe - 17 mm: A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 17 mm of lead, inside dimensions 334 x 334 x 200 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Compact Source Storage Safe - 32 mm (SC1432): A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 32 mm of lead, inside dimensions 204 x 204 x 204 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Compact Source Storage Safe - 32 mm (SC14040): A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 32 mm of lead, inside dimensions 400 x 400 x 400 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Compact Source Storage Safe - 40 mm (SC1440): A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 40 mm of lead, inside dimensions 284 x 284 x 360 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Compact Source Storage Safe - 40 mm (SC1440-2): A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 40 mm of lead, inside dimensions 285 x 285 x 285 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Compact Source Storage Safe - 62 mm: A compact lead shielded safe for storing sealed sources and radioactive samples, with the shielding built into the body and the door. Shielding is 62 mm of lead, inside dimensions 150 x 150 x 150 mm. It is used where sealed sources must be locked away as well as shielded. (datasheet)
- Lead Shielded Transport Container with Wheels: A wheeled lead shielded transport container for moving radioactive material between the radiopharmacy, the imaging rooms and the waste store. Shielding is 50 mm of lead, inside dimensions 350 x 500 mm (diameter x height). (datasheet)
- Lead-lined Laboratory Cabinet - 12,5 mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 12.5 mm of lead, inside dimensions 341 x 396 x 152 mm (per drawer). (datasheet)
- Lead-lined Laboratory Cabinet - 25 mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 25 mm of lead, inside dimensions 341 x 396 x 152 mm (per drawer). (datasheet)
- Lead-lined Laboratory Cabinet - 6 mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 6 mm of lead, inside dimensions 341 x 396 x 152 mm (per drawer). (datasheet)
- Mobile Platform: A wheeled platform that turns a shielded waste bin or container into a mobile unit, so it can be moved between rooms without lifting. The castors and the frame carry the weight of a filled lead shielded bin. (datasheet)
- Pass Through Box incl. lead glass: A shielded pass through box set into the wall between the radiopharmacy and the clean area, so material can be passed across without opening a door into the hot lab. Shielding is 5 mm of lead, inside dimensions 400 x 400 x 400 mm. (datasheet)
- Radiation Shielded Storage Cabinet - 12,5 mm: A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 12.5 mm of lead, inside dimensions 355 x 443 x 282 mm (per drawer). (datasheet)
- Radiation Shielded Storage Cabinet - 25 mm (SC1222): A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 25 mm of lead, inside dimensions 355 x 443 x 282 mm (per drawer). (datasheet)
- Radiation Shielded Storage Cabinet - 25 mm (SC1232): A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 25 mm of lead, inside dimensions 355 x 443 x 156 mm (per drawer). (datasheet)
- Radiation Shielded Storage Cabinet - 6 mm (SC1226): A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 6 mm of lead, inside dimensions 355 x 443 x 282 mm (per drawer). (datasheet)
- Radiation Shielded Storage Cabinet - 6 mm (SC1236): A lead lined laboratory cabinet for storing radioactive material under the bench, with shielded drawers or shelves and a shielded body. Shielding is 6 mm of lead, inside dimensions 355 x 443 x 156 mm (per drawer). (datasheet)
- Radioactive Sample Storage Cabinet - 12,5 mm: A lead lined cabinet with narrow drawers for storing radioactive samples, sized to sit under a standard laboratory bench. Shielding is 12.5 mm of lead, inside dimensions 122 x 443 x 156 mm. The lead is built into the body and the drawer fronts, so the shielding stays in place as the drawers are opened and closed. (datasheet)
- Radioactive Sample Storage Cabinet - 25 mm: A lead lined cabinet with narrow drawers for storing radioactive samples, sized to sit under a standard laboratory bench. Shielding is 25 mm of lead, inside dimensions 122 x 443 x 156 mm. The lead is built into the body and the drawer fronts, so the shielding stays in place as the drawers are opened and closed. (datasheet)
- Radioactive Sample Storage Cabinet - 6 mm: A lead lined cabinet with narrow drawers for storing radioactive samples, sized to sit under a standard laboratory bench. Shielding is 6 mm of lead, inside dimensions 122 x 443 x 156 mm. The lead is built into the body and the drawer fronts, so the shielding stays in place as the drawers are opened and closed. (datasheet)
- Shielded 200L Drum Transport Container: A lead shielded overpack that takes a standard 200 litre waste drum, adding shielding around the drum for storage and transport. The drum stays inside the shielding while it is filled, stored and moved. (datasheet)
- Shielded Cask: A shielded cask for transporting high activity sources and waste, built to hold the shielding in a rigid outer body. It is intended for movements between a production facility, a store and a disposal route rather than for daily departmental use. (datasheet)
- Shielded Pass Through Box: A shielded pass through box set into the wall between the radiopharmacy and the clean area, so material can be passed across without opening a door into the hot lab. Shielding is 10 mm side shielding & 30 mm door shielding of lead, inside dimensions 596 x 671 x 612 mm (bottom compartment)596 x 671 x 750 mm (top compar. (datasheet)
- Shielded Syringe Carrier - 3 mm: A lead lined carrier for moving a prepared syringe from the radiopharmacy to the injection room, keeping the dose shielded while it is in transit. Shielding is 3 mm of lead, inside dimensions 225 x 60 x 45 mm. (datasheet)
- Shielded Syringe Carrier - 6 mm: A lead lined carrier for moving a prepared syringe from the radiopharmacy to the injection room, keeping the dose shielded while it is in transit. Shielding is 6 mm of lead, inside dimensions 225 x 60 x 45 mm. (datasheet)
- Shielded Syringe Carrier - PET: A lead lined carrier for moving a prepared syringe from the radiopharmacy to the injection room, keeping the dose shielded while it is in transit. Shielding is 10 mm in bottom, top, front & back | 18 mm in the sides of lead, inside dimensions 225 x 60 x 45 mm. (datasheet)
- Shielded Syringe Holder - 12.5 mm: A shielded holder that stands a loaded syringe upright on the bench between preparation and administration, keeping the dose behind lead rather than in the open. Shielding is 12.5 mm of lead, inside dimensions 60 x 137 mm (diameter x height). (datasheet)
- Type A Package - 20mm W: A Type A transport package built around a tungsten container, for shipping radiopharmaceuticals and sealed sources under the transport regulations. Shielding is 20 mm of tungsten, inside dimensions Ø33 x 58mm. (datasheet)
- Type A Package - 30mm W: A Type A transport package built around a tungsten container, for shipping radiopharmaceuticals and sealed sources under the transport regulations. Shielding is 30 mm of tungsten, inside dimensions Ø33x 58mm. (datasheet)
- Type A Package - 40mm W: A Type A transport package built around a tungsten container, for shipping radiopharmaceuticals and sealed sources under the transport regulations. Shielding is 40 mm of tungsten, inside dimensions Ø28 x 56mm. (datasheet)
- Alternative Lead-lined Cabinet - 25 mm (SC1212-A): The SC1212-A is a heavy duty shielded cabinet for the safe and secure storage of radioactive materials, with 25 mm of lead giving reliable protection in medical facilities, research laboratories, nuclear applications, PET centres and isotope labs. Three adjustable shelves come as standard, each measuring 456 x 440 x 155 mm internally. Durable steel construction is built for long term daily use, while the front panel is finished in high pressure laminate (HPL) available in various RAL colours to suit the working environment. (datasheet)
- Radiation Shielded Storage Cabinet - 12.5 mm (SC1231): The SC1231 is a heavy duty three drawer cabinet for the safe and compliant containment of radioactive materials in high use environments such as nuclear medicine, radiopharmacies and isotope laboratories. 12.5 mm of lead shielding on all sides gives enhanced protection against medium energy gamma radiation. Each of the three shielded drawers measures 355 x 443 x 156 mm internally and takes vials, sources and radiopharmaceutical components, with a compact footprint that integrates into existing workspaces. The body is stainless steel and the front is a customisable high pressure laminate (HPL) panel in various RAL colours. (datasheet)
Radioactive Waste Management
Shielded waste bins, decay storage and disposal equipment for nuclear medicine departments.
- Large Mobile Radioactive Waste Container - 5 mm: A large wheeled lead shielded container for bulk radioactive waste, built with a stainless steel exterior and interior so it can be decontaminated. Shielding is 5 mm of lead, inside dimensions 780 x 780 x 971 mm. (datasheet)
- Mobile Pet Shielded Waste Bin - 35 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 35 mm of lead, inside dimensions 300 x 300 x 300 mm. (datasheet)
- Mobile Radioactive Waste Enclosure - 6 mm: A lead shielded enclosure for segregating radioactive waste while it decays, with a stainless steel exterior and interior for decontamination. Shielding is 6 mm of lead, inside dimensions 420 x 335 x 340 mm (per compartment). (datasheet)
- Mobile Shielded Waste Bin - 12 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 12 mm of lead, inside dimensions 430 x 430 x 580 mm. (datasheet)
- Mobile Shielded Waste Bin - 239L - 6 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 6 mm of lead, inside dimensions 555 x 555 x 776 mm. (datasheet)
- Mobile Shielded Waste Bin - 25 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 25 mm of lead, inside dimensions 396 x 396 x 569 mm. (datasheet)
- Mobile Shielded Waste Bin - 45L - 20 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 20 mm of lead, inside dimensions 255 x 255 x 716 mm. (datasheet)
- Mobile Waste Cabinet - 10 mm: A lead shielded enclosure for segregating radioactive waste while it decays, with a stainless steel exterior and interior for decontamination. Shielding is 10 mm of lead, inside dimensions 400 x 500 x 640 mm. (datasheet)
- Nuclear Waste Container: A large wheeled lead shielded container for bulk radioactive waste, built with a stainless steel exterior and interior so it can be decontaminated. It is placed at the point where the waste is generated so that contaminated items go straight behind shielding. (datasheet)
- Plastic Sharps Bin: A replaceable plastic insert for the shielded sharps bins, so contaminated sharps can be removed and the outer lead shielded bin reused. It drops into the shielded outer bin and is changed out when full. (datasheet)
- Shielded Decay Cave: A shielded decay store where radioactive waste is held until the activity has fallen enough for ordinary disposal, built from lead with a large usable internal volume. Shielding is 25 mm of lead, inside dimensions 800 x 748 x 650 mm. (datasheet)
- Shielded Decay Container with Sliding Opening: A shielded decay store where radioactive waste is held until the activity has fallen enough for ordinary disposal, built from lead with a large usable internal volume. Shielding is 50 mm of lead. It is used in departments handling short lived radionuclides, where storage for decay replaces active waste disposal. (datasheet)
- Shielded Sharps Bin - 12.5mm: A lead shielded sharps bin for contaminated needles and syringes, with a stainless steel exterior that can be decontaminated and a painted lead interior. Shielding is 12.5 mm of lead, inside dimensions 221 x 186 x 270mm. (datasheet)
- Shielded Sharps Bin - 3 mm: A lead shielded sharps bin for contaminated needles and syringes, with a stainless steel exterior that can be decontaminated and a painted lead interior. Shielding is 3 mm of lead, inside dimensions 221 x 186 x 268mm. (datasheet)
- Shielded Sharps Bin - 6 mm: A lead shielded sharps bin for contaminated needles and syringes, with a stainless steel exterior that can be decontaminated and a painted lead interior. Shielding is 6 mm of lead, inside dimensions 215 x 180 x 265mm. (datasheet)
- Shielded Waste Bin - 27L - 3 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 3 mm of lead, inside dimensions 280 x 280 x 375 mm. (datasheet)
- Shielded Waste Bin - 27L - 6 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 6 mm of lead, inside dimensions 274 x 274 x 372 mm. (datasheet)
- Shielded Waste Bin - 45L - 3 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 3 mm of lead, inside dimensions 280 x 280 x 525 mm. (datasheet)
- Shielded Waste Bin - 45L - 6 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 6 mm of lead, inside dimensions 274 x 274 x 523 mm. (datasheet)
- Shielded Waste Bin - 80L - 3 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 3 mm of lead, inside dimensions 461 x 461 x 580mm. (datasheet)
- Shielded Waste Bin - 80L - 6mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 6 mm of lead, inside dimensions 461 x 461 x 580mm. (datasheet)
- Shielded Waste Bin 18L - 3 mm: A lead shielded waste bin for radioactive waste in the hot lab and imaging rooms, with a pedal opening lid, wheels and a stainless steel exterior and interior. Shielding is 3 mm of lead, inside dimensions 250 x 150 x 525 mm. (datasheet)
- Target Waste Castle - 100 mm: A heavily shielded castle for high activity target waste, with a painted lead body and a stainless steel insert on the inside. Shielding is 100 mm of lead, inside dimensions 250 x 150 x 525 mm. It is placed at the point where the waste is generated so that contaminated items go straight behind shielding. (datasheet)
- Shielded Sharps Bin - 12,5 mm (SWB250): A shielded sharps bin published by Nuclear Shields with 12,5 mm of lead. Inside dimensions are 185 x 185 x 250 mm (w x d x h). It sits in the same sharps bin range as the 3 mm and 6 mm models. (datasheet)
- Radiation Waste Container: A shielded waste container from MiE holding approximately 18 litres behind 1,5 mm Pb, with higher shielding available on request. Inner dimensions are 22,5 cm x 39,0 cm x 22,5 cm (8.9 in x 15.4 in x 8.9 in) width by height by depth. Open height is 61,8 cm (24.3 in) and the container weighs 17,5 kg (38.6 lbs). (datasheet)
Dose Calibrator Shielding
Shielding for dose calibrators and activity measurement equipment.
- Biodex Dose Calibrator Shielding Rings - 20 mm: An additional lead shielding ring that fits the Biodex dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 20 mm of lead, inside dimensions 160 x 400 mm (diameter x height). (datasheet)
- Biodex Dose Calibrator Shielding Rings - 50 mm: An additional lead shielding ring that fits the Biodex dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 50 mm of lead, inside dimensions 160 x 400 mm (diameter x height). (datasheet)
- Capintec Dose Calibrator Shielding Rings - 20 mm: An additional lead shielding ring that fits the Capintec dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 20 mm of lead, inside dimensions 185 x 465 mm (diameter x height). (datasheet)
- Capintec Dose Calibrator Shielding Rings - 50 mm: An additional lead shielding ring that fits the Capintec dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 50 mm of lead, inside dimensions 185 x 465 mm (diameter x height). (datasheet)
- Comecer Dose Calibrator Shielding Rings - 20 mm: An additional lead shielding ring that fits the Comecer dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 20 mm of lead, inside dimensions 170 x 442 mm (diameter x height). (datasheet)
- Comecer Dose Calibrator Shielding Rings - 50 mm: An additional lead shielding ring that fits the Comecer dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 50 mm of lead, inside dimensions 170 x 442 mm (diameter x height). (datasheet)
- ISOMED 2010 Dose Calibrator Shielding Rings - 50 mm: An additional lead shielding ring that fits the ISOMED 2010 dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 50 mm of lead, inside dimensions 130 x 336 mm (diameter x height). (datasheet)
- ISOMED 2010 Dose Calibrator Shielding Rings - 20 mm: An additional lead shielding ring that fits the ISOMED 2010 dose calibrator well, reducing the background reading and the dose to staff standing at the calibrator. Shielding is 20 mm of lead, inside dimensions 130 x 336 mm (diameter x height). (datasheet)
Collimators & Imaging Grids
Collimators and anti-scatter grids for gamma camera and radiographic imaging.
- 2D Anti-Scatter Grids: Two dimensional anti-scatter grids, which reject scatter in both axes rather than only across the septa of a linear grid. The septa ratio and the strip density are matched to the geometry of the scanner it is fitted to. (datasheet)
- Anti-Scatter Grids for CT Scanners: Anti-scatter grids for CT scanners, built from lead or tungsten septa that absorb scattered photons before they reach the detector. Shielding material is lead, tungsten. The septa ratio and the strip density are matched to the geometry of the scanner it is fitted to. (datasheet)
- Anti-Scatter Grids for Security Baggage Scanners: Anti-scatter grids for security baggage scanners, absorbing scattered radiation so the transmitted image keeps its contrast. The septa ratio and the strip density are matched to the geometry of the scanner it is fitted to. (datasheet)
- Converging / Diverging Collimators: Converging and diverging collimators for gamma cameras, matching the field of view to the size of the organ being imaged. It is made to suit the camera head it is fitted to, and the septa thickness is matched to the photon energy of the radionuclide in use. (datasheet)
- Fanbeam Collimators: Fanbeam collimators for gamma cameras, magnifying the object in one axis to make better use of the detector area in brain and cardiac SPECT. It is made to suit the camera head it is fitted to, and the septa thickness is matched to the photon energy of the radionuclide in use. (datasheet)
- Parallel Hole Collimators: Parallel hole collimators for gamma cameras, machined or cast so that only photons travelling perpendicular to the crystal reach the detector. It is made to suit the camera head it is fitted to, and the septa thickness is matched to the photon energy of the radionuclide in use. (datasheet)
- Pinhole Collimators: Pinhole collimators for gamma cameras, used for high resolution imaging of small organs such as the thyroid. It is made to suit the camera head it is fitted to, and the septa thickness is matched to the photon energy of the radionuclide in use. (datasheet)
- Slanthole Collimators: Slanthole collimators for gamma cameras, angling the acceptance direction so the detector can be brought close to the patient where the geometry is awkward. It is made to suit the camera head it is fitted to, and the septa thickness is matched to the photon energy of the radionuclide in use. (datasheet)
Structural Radiation Shielding
Lead and lead-free structural shielding: mobile barriers, screens, curtains, lead sheet, lead-lined board and glass for imaging and radiopharmacy rooms.
- Mobile PET Protection Barrier - 10 mm: A mobile lead barrier on castors for PET departments, giving the technologist a shielded position beside the patient during uptake and injection. Shielding is 10 mm of lead, inside dimensions 418 x 1454 mm (shielding area). (datasheet)
- Mobile PET Protection Barrier - 20 mm: A mobile lead barrier on castors for PET departments, giving the technologist a shielded position beside the patient during uptake and injection. Shielding is 20 mm of lead, inside dimensions 418 x 1474 mm (shielding area). (datasheet)
- Mobile PET Protection Barrier - 30 mm: A mobile lead barrier on castors for PET departments, giving the technologist a shielded position beside the patient during uptake and injection. Shielding is 30 mm of lead, inside dimensions 418 x 1500 mm (shielding area). (datasheet)
- Mobile X-Ray Barrier - 10mm lead: A mobile lead barrier on castors for x-ray rooms, giving staff a shielded standing position without any building work. Shielding is 10 mm of lead, outside dimensions 743 x 904 x 2004 mm (w x d x h). It is moved into position for the procedure and pushed clear afterwards, so the room stays usable for other work. (datasheet)
- Mobile X-Ray Barrier - 2mm lead: A mobile lead barrier on castors for x-ray rooms, giving staff a shielded standing position without any building work. Shielding is 2 mm of lead, outside dimensions 743 x 904 x 2004 mm (w x d x h). It is moved into position for the procedure and pushed clear afterwards, so the room stays usable for other work. (datasheet)
- Adhesive Lead Parts: Adhesive backed lead parts cut to a customer drawing, for shielding awkward openings, equipment housings and penetrations. Shielding material is lead, thickness to order. It is supplied as a made to order item rather than a stock size, so the shielding follows the shape of the opening. (datasheet)
- Adhesive Lead Sheet - 0,5 mm: Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. Shielding is 0.5 mm of lead, outside dimensions 1000 x 3000 mm (w x d x h). (datasheet)
- Adhesive Lead Sheet - 1 mm: Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. Shielding is 1 mm of lead, outside dimensions 1000 x 3000 mm (w x d x h). (datasheet)
- Adhesive Lead Sheet - 2 mm (RSW112L): Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. Shielding is 2 mm of lead, outside dimensions 1000 x 3000 mm (w x d x h). (datasheet)
- Adhesive Lead Sheet - 2 mm (RSW112M): Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. It is used to bring an existing room or enclosure up to the required lead thickness where a full rebuild is not practical. (datasheet)
- Adhesive Lead Strip - 0.5mm: Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. It is used to bring an existing room or enclosure up to the required lead thickness where a full rebuild is not practical. (datasheet)
- Adhesive Lead Strip - 1mm: Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. It is used to bring an existing room or enclosure up to the required lead thickness where a full rebuild is not practical. (datasheet)
- Adhesive Lead Strip - 2mm: Self adhesive lead sheet used to line walls, cabinets and equipment housings, applied directly to the substrate without a separate fixing system. It is used to bring an existing room or enclosure up to the required lead thickness where a full rebuild is not practical. (datasheet)
- Borated Polyethylene Neutron Shielding: Borated polyethylene neutron shielding, which slows fast neutrons in the hydrogen rich polymer and then captures them in the boron. It is used around neutron sources, accelerators and reactor equipment, and is supplied in sheet and block form. (datasheet)
- Custom Lead Shielded Walls: Custom lead shielded walls made to the room drawing and the required lead thickness, for imaging, radiotherapy and nuclear medicine facilities. It is made to order from the room drawing and the shielding calculation supplied by the physicist. (datasheet)
- Lead Brick Base Corner: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 50 x 50 x 15 mm (w x d x h). (datasheet)
- Lead Brick Base End: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 15 mm (w x d x h). (datasheet)
- Lead Brick Base Start: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 50 x 50 x 15 mm (w x d x h). (datasheet)
- Lead Brick Cave - 450 x 550 mm: A lead brick cave that forms an enclosed shielded working volume for source handling or low background counting, finished in white epoxy paint. Shielding is 50 mm of lead, inside dimensions 450 x 550 x 238 mm. (datasheet)
- Lead Brick Cave - 450 x 650 mm: A lead brick cave that forms an enclosed shielded working volume for source handling or low background counting, finished in white epoxy paint. Shielding is 50 mm of lead, inside dimensions 450 x 650 x 238 mm. (datasheet)
- Lead Brick Cave - 550 x 550 mm: A lead brick cave that forms an enclosed shielded working volume for source handling or low background counting, finished in white epoxy paint. Shielding is 50 mm of lead, inside dimensions 550 x 550 x 238 mm. (datasheet)
- Lead Brick Cave - 550 x 650 mm: A lead brick cave that forms an enclosed shielded working volume for source handling or low background counting, finished in white epoxy paint. Shielding is 50 mm of lead, inside dimensions 550 x 650 x 238 mm. (datasheet)
- Lead Brick Middle Corner: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 100 (w x d x h). (datasheet)
- Lead Brick Middle End: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 100 mm (w x d x h). (datasheet)
- Lead Brick Middle Start: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 50 x 50 x 100 mm (w x d x h). (datasheet)
- Lead Brick Standard Base: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 15 mm (w x d x h). (datasheet)
- Lead Brick Standard Middle: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 100 mm (w x d x h). (datasheet)
- Lead Brick Top Corner: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 15 mm (w x d x h). (datasheet)
- Lead Brick Top End: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 83 mm (w x d x h). (datasheet)
- Lead Brick Top Standard: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 100 x 50 x 83 mm (w x d x h). (datasheet)
- Lead Brick Top Start: An interlocking lead brick used to build shielded walls, castles and caves. The interlocking profile removes the straight joints that let radiation stream through a stacked wall. Shielding is 50 mm of lead, outside dimensions 50 x 50 x 83 mm (w x d x h). (datasheet)
- Lead Free X-Ray Curtains: A lead free x-ray protective curtain for table and gantry mounting, using a non lead attenuating material to reduce weight and simplify disposal. It hangs from the table or the gantry between the patient and the staff position, where most of the scatter is generated. (datasheet)
- Lead Lined Drywall - 1mm Large: Lead lined drywall panel for building shielded partitions in imaging and nuclear medicine departments, fitted in the same way as ordinary plasterboard. The lead layer is bonded to the board face, so a shielded partition is built with the same trades and the same fixings as an ordinary one. (datasheet)
- Lead Lined Drywall - 2mm Medium: Lead lined drywall panel for building shielded partitions in imaging and nuclear medicine departments, fitted in the same way as ordinary plasterboard. The lead layer is bonded to the board face, so a shielded partition is built with the same trades and the same fixings as an ordinary one. (datasheet)
- Lead Lined Drywall -2mm Large: Lead lined drywall panel for building shielded partitions in imaging and nuclear medicine departments, fitted in the same way as ordinary plasterboard. The lead layer is bonded to the board face, so a shielded partition is built with the same trades and the same fixings as an ordinary one. (datasheet)
- Lead Shielded Doors: Lead shielded doors for imaging, radiotherapy and nuclear medicine rooms, made to the opening size and the shielding specification of the room. It is made to order from the room drawing and the shielding calculation supplied by the physicist. (datasheet)
- Lead Shielded Panels with Pipe Passthrough: Lead shielded panels with pipe pass through, so services can cross a shielded wall without leaving an unshielded penetration. It is made to order from the room drawing and the shielding calculation supplied by the physicist. (datasheet)
- Lead Shielded Wall with Door Opening: A lead shielded wall section with a door opening, made to the room drawing so the shielding continues around the doorway. It is made to order from the room drawing and the shielding calculation supplied by the physicist. (datasheet)
- Lead X-Ray Curtains: A lead x-ray protective curtain for table and gantry mounting, cutting the scattered radiation reaching staff who stand at the table side. It hangs from the table or the gantry between the patient and the staff position, where most of the scatter is generated. (datasheet)
- X-Ray Lead Glass | 1000x800x15mm | 3mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1000x800x15mm with a 3mmPb lead equivalent. Shielding is 3 mm of lead, outside dimensions 1000 x 800 x 15 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 1000x800x20mm | 4mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1000x800x20mm with a 4mmPb lead equivalent. Shielding is 4 mm of lead, outside dimensions 1000 x 800 x 20 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 1200x900x15mm | 3mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1200x900x15mm with a 3mmPb lead equivalent. Shielding is 3 mm of lead, outside dimensions 1200 x 900 x 15 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 1200x900x20mm | 4mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1200x900x20mm with a 4mmPb lead equivalent. Shielding is 4 mm of lead, outside dimensions 1200 x 900 x 20 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 1500x900x15mm | 3mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1500x900x15mm with a 3mmPb lead equivalent. Shielding is 3 mm of lead, outside dimensions 1500 x 900 x 15 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 1500x900x20mm | 4mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 1500x900x20mm with a 4mmPb lead equivalent. Shielding is 4 mm of lead, outside dimensions 1500 x 900 x 20 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 2000x1000x15mm | 3mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 2000x1000x15mm with a 3mmPb lead equivalent. Shielding is 3 mm of lead, outside dimensions 2000 x 1000 x 15 mm (w x d x h). (datasheet)
- X-Ray Lead Glass | 2000x1000x20mm | 4mmPb: A radiation protection lead glass pane for control windows and shielded viewing panels, supplied as 2000x1000x20mm with a 4mmPb lead equivalent. Shielding is 4 mm of lead, outside dimensions 2000 x 1000 x 20 mm (w x d x h). (datasheet)
- Yellow Lead Blanket with handles: A flexible lead blanket with carrying handles, laid over pipework, valves and components to reduce dose rates during maintenance work. Shielding is 6 mm of lead, inside dimensions 800 x 400 mm. It can be draped over an irregular surface that a rigid shield will not fit. (datasheet)
- Adhesive Lead Strip 3mm (RSW123): A self adhesive lead strip published by Nuclear Shields at 3 mm lead thickness. Each strip measures 50 mm x 8 m. It is the thickest of the adhesive lead strips in the range, which also runs at 0.5 mm, 1 mm and 2 mm. (datasheet)
- Adhesive Lead Sheet - 1 mm (RSW111M): Self adhesive lead sheet measuring 600 x 2,600 mm in 1 mm thick lead. The self adhesive backing keeps installation simple and effective, so the sheet can be applied to standard panels, walls or specific surfaces. Nuclear Shields supply it for medical rooms, laboratories and other settings where radiation protection is crucial, and they also run a plotter that cuts the adhesive lead sheets into specific shapes. (datasheet)
- Adhesive Lead Sheet - 0.5 mm (RSW115M): Self adhesive lead sheet measuring 600 x 2,600 mm in 0.5 mm thick lead. The self adhesive backing keeps installation simple and effective, so the sheet can be applied to standard panels, walls or specific surfaces. Nuclear Shields supply it for medical rooms, laboratories and other settings where radiation protection is crucial, and they also run a plotter that cuts the adhesive lead sheets into specific shapes. (datasheet)
Other Nuclear Medicine Equipment
Other Nuclear Medicine Equipment from MiE GmbH, supplied and supported in Bangladesh by Vvon Technologies.
- Thyroid Positioner: A patient positioner from MiE for planar thyroid scintigrams on a gamma camera. It holds the patient's neck in place for the acquisition and is supplied with a syringe holder. MiE publish it as an accessory for their own nuclear medicine camera systems. (datasheet)
- Brain SPECT Positioner: A head positioner from MiE for brain SPECT examinations, used to keep the patient's head still through the acquisition. It is supplied with a support mat that MiE describe as minimal attenuation. MiE publish it as a component for their own gamma camera systems. (datasheet)
- Cardiac SPECT Positioner: A head and arm rest from MiE for myocardial SPECT studies. It supports the patient's head and raised arms through the acquisition, which MiE state prevents patient exhaustion during the examination. MiE publish it as a component for their own gamma camera systems. (datasheet)
- Dose Calibrators (CRC-55t R, CRC-55t PET, CRC-77t HR, CRC Smart Chamber HL, CRC Smart Chamber RPh): MiE publish this dose calibrator range on their accessories index and state that they are a service partner of CAPINTEC / MIRION. The CRC-55t and CRC-77t units carry an 8 inch LCD touch screen with an intuitive user interface, over 80 preset nuclides with more that can be added, eight individual hotkeys for the most frequently used nuclides, live display update during sample measurement and automated quality control. The CRC Smart Chamber models are operated through a web browser, communicate over Ethernet with the power supply over USB, and are available with or without a laptop. Every model has a lead shielded measurement chamber whose geometry is optimised for reliable reproducible results. (datasheet)
- Portable Contamination Monitor LB 124 SCINT Series (LB 124 SCINT, LB 124 SCINT-D): Built on scintillation technology, the LB 124 SCINT Series measures alpha and beta gamma radiation simultaneously and separately. MiE describe these compact and precise instruments as versatile and flexible for practical radiation protection, with an ergonomic design and low weight that keeps them easy to handle. Results are read from a large high resolution display with backlighting that stays legible even under unfavourable conditions. The LB 124 SCINT-D variant adds mobile determination of the equivalent dose rate H*(10) alongside contamination measurement. (datasheet)
- Laboratory Table with stainless steel tabletop: A laboratory bench from MiE finished with a stainless steel working surface so it can be decontaminated easily. The standard table measures 200 cm x 90 cm x 60 cm (78.7 in x 35.4 in x 23.6 in) width by height by depth. Capacity is 800 kg (1760 lbs), and other dimensions are available on request. (datasheet)
- Cardiac Trigger Monitor with patient cable and lead wires: An ECG trigger for synchronised application in nuclear and molecular imaging such as gated SPECT and MUGA studies. MiE describe the operation as intuitive with a reliable cardiac trigger, and the pulse width is user selectable at 1 ms, 50 ms, 100 ms or 150 ms. The front panel is a 6.5 in (16.5 cm) active matrix TFT colour touch screen at 640 x 480 resolution. A four lead patient cable with a 6 PIN AAMI standard connector and a set of four lead wires are published alongside the monitor. (datasheet)
- Support mat for miscellaneous imaging tables: A foam support mat from MiE for use on a range of imaging tables. It is biocompatible, water proof and easy to clean. The finish is silver grey with a tissue textured surface and the mat is 14 mm thick when flat. (datasheet)
Frequently Asked Questions
- How do I set up a nuclear medicine department in Bangladesh from scratch?
- Setting up a nuclear medicine department involves several steps: site planning and radiation shielding design, BAEC licensing, gamma camera or SPECT/CT procurement, hot lab and radiopharmacy setup, staff training, and quality assurance programme. Vvon Technologies provides a complete turnkey solution, from initial feasibility study and equipment selection through to installation, commissioning, BAEC regulatory support, and ongoing after-sales service. Contact us at +880 1711-738207 or info@vvon.com.bd to start with a free site assessment.
- My hospital wants to start cardiac SPECT imaging. What equipment do I need?
- For cardiac SPECT, you need a dedicated gamma camera or digital CZT SPECT system. Vvon supplies two proven options: the MIE Scintron ECAM dual-head gamma camera (suitable for general cardiology and oncology SPECT), and the Spectrum Dynamics D-SPECT Cardio, an open-gantry CZT system that completes a myocardial perfusion scan in 2 minutes stress / 4 minutes rest with no CT required for attenuation correction. We handle installation, commissioning, and cardiologist training. Contact us for a recommendation based on your patient volume.
- We need a nuclear medicine system that can do both oncology and cardiology. What do you recommend?
- The Spectrum Dynamics VERITON-CT 400/600 Series is the ideal choice: the world's first ring-shaped digital SPECT/CT with 18-minute total-body hybrid 3D scanning. Its 12 digital CZT detectors provide 360° total-body 3D imaging and it handles both oncology staging and cardiac perfusion imaging. For hospitals with a lower budget starting a nuclear medicine programme, the MIE Scintron ECAM dual-head gamma camera covers all standard SPECT, whole-body, and planar studies. Vvon Technologies will assess your patient mix and recommend the right system.
- How do I perform quality assurance (QA) on my gamma camera? What phantoms do I need?
- A complete gamma camera QA programme requires: (1) Uniformity testing with the Leeds Test Objects Gamma Flood Phantom or the VERTO Dynamic Line Phantom (no heavy flood source needed); (2) Spatial resolution with the Gamma Resolution Phantom (4-quadrant Pb bar phantom); (3) Geometric distortion with the Gamma Distortion Phantom; and (4) SPECT performance with the SPECT IQ phantom for Centre of Rotation, uniformity, and lesion detectability. Vvon Technologies supplies all Leeds Test Objects QA phantoms in Bangladesh with full technical support.
- Our gamma camera QA requires a flood phantom, but it is too heavy and difficult to handle. Is there an alternative?
- Yes. The Leeds Test Objects VERTO Dynamic Line Phantom is specifically designed to replace heavy and bulky flood phantoms. Its microprocessor-controlled line source sweeps across the phantom to perform uniformity, centring, and spatial resolution tests, all without handling large volumes of radioactive liquid. Vvon Technologies supplies the VERTO in Bangladesh with installation and training support.
- We are starting PET imaging. What QA phantom do we need for PET scanner performance testing?
- For PET QA, the Leeds Test Objects PET IQ Phantom is the standard choice. It is a realistic anthropomorphic PMMA phantom simulating the human trunk, with six fillable spheres (10 mm to 37 mm diameter) for hot and cold lesion detectability testing. For multi-modality registration (PET/CT/MRI), the PET CT MRI Cubes provide fillable point-source markers for all three modalities. Vvon Technologies supplies both in Bangladesh.
- MIE Scintron vs Spectrum Dynamics VERITON: which gamma camera is right for my hospital?
- The MIE Scintron ECAM is ideal for hospitals starting a nuclear medicine programme. It covers all standard SPECT, whole-body, and planar studies at a lower entry cost. The Spectrum Dynamics VERITON is suited for high-volume oncology and cardiology centres that need faster scan times (18-minute total-body), lower radiation doses, and quantitative SPECT capability for radionuclide therapy dosimetry. Vvon Technologies will conduct a site assessment and recommend the right system based on your patient volume, space, and budget.
- Where is cancer treatment and nuclear medicine imaging available in Bangladesh?
- The main nuclear medicine and cancer imaging centres in Bangladesh include NICRH, BSMMU, Evercare Hospital Dhaka, and North East Cancer Hospital Sylhet. Modern cancer imaging uses SPECT/CT, PET/CT, and digital gamma cameras. Vvon Technologies supplies nuclear medicine equipment to hospitals and cancer institutes across Bangladesh: gamma cameras, SPECT/CT systems, QA phantoms, and positioning lasers.
- Which SPECT/CT systems are available in Bangladesh? (SPECT CT স্ক্যানার বাংলাদেশে কোনগুলো পাওয়া যায়?)
- Vvon Technologies supplies two leading SPECT/CT systems in Bangladesh: (1) MIE Scintron ECAM, a traditional dual-head gamma camera ideal for cardiology and oncology; (2) Spectrum Dynamics VERITON, the world's first ring-shaped digital CZT SPECT/CT, completing a total-body scan in 18 minutes. Both systems are eligible for BAERA and Ministry of Health approval. Details: info@vvon.com.bd. (Vvon Technologies বাংলাদেশে MIE Scintron ECAM ও Spectrum Dynamics VERITON SPECT/CT সরবরাহ করে।)
- বাংলাদেশে নিউক্লিয়ার মেডিসিন বিভাগ স্থাপনে কী কী সরঞ্জাম প্রয়োজন? (Nuclear medicine department setup Bangladesh)
- বাংলাদেশে একটি পূর্ণাঙ্গ নিউক্লিয়ার মেডিসিন বিভাগের জন্য প্রয়োজন: গামা ক্যামেরা বা SPECT/CT সিস্টেম, হট ল্যাব ও রেডিওফার্মেসি সেটআপ, রেডিয়েশন শিল্ডিং, QA ফ্যান্টম (Leeds Test Objects), পেশেন্ট পজিশনিং লেজার, এবং BAERA অনুমোদন। Vvon Technologies সম্পূর্ণ টার্নকি সমাধান প্রদান করে — সম্ভাব্যতা যাচাই থেকে ইনস্টলেশন, কমিশনিং এবং স্টাফ ট্রেনিং পর্যন্ত। যোগাযোগ: +880 1711-738207 বা info@vvon.com.bd।
- What is the MiE PICOLA Scintron single-head gamma camera and where is it installed in Bangladesh? (MiE সিঙ্গেল হেড গামা ক্যামেরা)
- The MiE (Medical Imaging Electronics, Germany) PICOLA Scintron is a compact single-head gamma camera ideal for hospitals and institutes starting or expanding a nuclear medicine service. It performs static, dynamic, whole-body, and SPECT studies with a modern reconstruction workstation, at a lower entry cost and smaller footprint than dual-head systems. Vvon Technologies supplied and commissioned an MiE single-head gamma camera at INMAS (Institute of Nuclear Medicine & Allied Sciences) in Bangladesh, including installation, acceptance testing, and staff training. For a demo or quotation: +880 1711-738207 or info@vvon.com.bd. (Vvon Technologies INMAS-এ MiE PICOLA Scintron সিঙ্গেল হেড গামা ক্যামেরা সরবরাহ ও কমিশন করেছে — ইনস্টলেশন, এক্সেপট্যান্স টেস্ট ও প্রশিক্ষণ সহ।)
- Single-head vs dual-head gamma camera: which should my hospital choose? (সিঙ্গেল হেড নাকি ডুয়েল হেড গামা ক্যামেরা?)
- A single-head gamma camera (such as the MiE PICOLA Scintron) is the cost-effective choice for hospitals starting nuclear medicine or with moderate patient volume. It covers planar, whole-body, and SPECT studies with a smaller footprint and lower cost. A dual-head camera (such as the MIE Scintron ECAM) roughly halves whole-body and SPECT acquisition time, making it better for high-throughput oncology and cardiology departments. Vvon Technologies assesses your patient volume, space, and budget to recommend the right configuration. (সিঙ্গেল হেড কম খরচে শুরুর জন্য আদর্শ, আর ডুয়েল হেড উচ্চ রোগী-সংখ্যক বিভাগের জন্য দ্রুততর।)
- গামা ক্যামেরা দাম ও মডেল বাংলাদেশে (Gamma camera price Bangladesh)
- Vvon Technologies জার্মানির MiE GmbH-এর SCINTRON রেঞ্জ সরবরাহ করে: PICOLA সিঙ্গেল-হেড, ECAM ও ECAM NOVA ডুয়েল-হেড, SYNGULA এবং DIACAM গামা ক্যামেরা, সঙ্গে Scintron 7P ওয়ার্কস্টেশন ও ১৯টি ক্লিনিক্যাল প্রসেসিং মডিউল। কোটেশন: +880 1711-738207।
- রেডিওফার্মেসি শিল্ডিং ও হট ল্যাব সরঞ্জাম বাংলাদেশে
- Vvon Technologies নেদারল্যান্ডসের Nuclear Shields-এর সম্পূর্ণ রেডিয়েশন শিল্ডিং সরবরাহ করে: L-ব্লক ওয়ার্কস্টেশন, সিরিঞ্জ ও ভায়াল শিল্ড, ডোজ ক্যালিব্রেটর শিল্ডিং, শিল্ডেড স্টোরেজ ও ট্রান্সপোর্ট, রেডিওঅ্যাকটিভ ওয়েস্ট বিন, মোবাইল ব্যারিয়ার ও লেড গ্লাস। ২৫০+ আইটেম।
- PET ও PET/CT ইমেজিং সিস্টেম বাংলাদেশে
- Vvon Technologies MiE GmbH-এর PET সমাধান সরবরাহ করে, সঙ্গে Scintron PET প্রসেসিং মডিউল ও FUSION সফটওয়্যার। PET পারফরম্যান্স টেস্টিংয়ের জন্য Leeds Test Objects-এর PET IQ ফ্যান্টম ও PET/CT/MRI কিউব রয়েছে।
- থাইরয়েড আপটেক ও কার্ডিয়াক SPECT বাংলাদেশে
- Vvon Technologies MiE-এর PICOLA ও SYNGULA ক্যামেরা এবং থাইরয়েড পজিশনার সরবরাহ করে, সঙ্গে থাইরয়েড আপটেক সফটওয়্যার মডিউল। কার্ডিয়াক কাজের জন্য Spectrum Dynamics D-SPECT Cardio ও MiE-এর কার্ডিয়াক SPECT পজিশনার ও ফার্স্ট-পাস মডিউল।
- নিউক্লিয়ার মেডিসিন সরঞ্জামের সার্ভিস ও মেইনটেন্যান্স বাংলাদেশে
- Vvon Technologies নিজস্ব ইঞ্জিনিয়ারিং টিম দিয়ে ইনস্টলেশন, অ্যাকসেপট্যান্স টেস্টিং, প্রিভেন্টিভ মেইনটেন্যান্স, ক্যালিব্রেশন ও স্পেয়ার পার্টস সরবরাহ করে। AMC চুক্তি ও অপারেটর ট্রেনিং সহ। সার্ভিসের জন্য: +880 1711-738207।
- সরকারি হাসপাতালের টেন্ডারে নিউক্লিয়ার মেডিসিন সরঞ্জাম (e-GP)
- Vvon Technologies e-GP টেন্ডারের জন্য ম্যানুফ্যাকচারার অথরাইজেশন, কমপ্লায়েন্ট টেকনিক্যাল স্পেসিফিকেশন, ক্যাটালগ ও সার্টিফিকেশন ডকুমেন্ট সরবরাহ করে। মেডিকেল কলেজ হাসপাতাল ও ক্যান্সার ইনস্টিটিউটের জন্য: +880 1711-738207।
Why Choose Vvon for Nuclear Medicine & Imaging?
- Application Engineering: We work directly with customers to understand their technical requirements and ensure each manufacturer's product fits the brief, supporting pre- and post-sale engineering for the best gains in quality and productivity.
- Managed Service: We provide managed services and take full responsibility for maintenance and lifecycle support, anticipating needs to improve operations and reduce expenses for our customers.
- Design: Our professional design team works to customer specs, delivering cost-effective and optimum solutions that consider durability and reliability for long-term value.
- Project Development & Management: Our in-house team plans, organizes, leads and controls projects with proper stakeholder analysis, while always examining financial and environmental viability.
Our Clients in This Vertical
- Bangladesh Atomic Energy Commission (BAEC)
- Bangladesh University of Engineering & Technology (BUET)
- Ever Care Hospital
- Khulna University of Engineering & Technology (KUET)
- Rajshahi University of Engineering & Technology (RUET)
- Bangladesh National Medical College
- Northeast Cancer Hospital, Sylhet
- National Institute of Biotechnology
- Akij Agro Feed Mill
- Lama Pourashava, Bandarban
Get a Quote
Contact Vvon Technologies at +880 1711-738207 or info@vvon.com.bd for pricing, demos and consultation. Address: House-7 (Level-4), Road-1/A (Opposite to American Center), Block-J, Baridhara, Dhaka-1212, Bangladesh