Features & Benefits
MAXimized Performance for Theranostics
- Theranostic applications with isotope energies up to 640 keV provided by 15.9 mm NaI crystal
- Detector sensitivity gain of 30% for 177Lu, 80% for both 131I and 225Ac when compared to 9.5 mm NaI crystal based detector
- Intrinsic resolution of 3.3 mm (FWHM) maintained by high-density sensor arrangement (123 PMTs per detector head)
Ultra-fast Quantitative Total-Body SPECT/CT
- Extreme sensitivity of 1620 kcps/(MBq/cm3) for 99mTc measured as Total System Response** delivered by the 15.9 mm crystal thickness
- Triple-NaI-Detector: patient surrounded completely in 360° with three large surface detectors (up to 5x larger than 12-detector CZT systems)
- The continuous detector movements provide seamless SPECT acquisition
- Long Axial-FOV of 40 cm enables 2 meters SPECT/CT imaging in only five bed positions and ultra-fast quantitative total-body scan with acquisition time less than 10 minutes
**NEMA NU1 2018 parameter calculated as Average Volume Sensitivity per Axial Centimeter × Axial FOV
From General Purpose to Organ Focus Imaging
- The TheraMAX* is a versatile SPECT/CT system offering five imaging modes using Transformable™ Gantry and simple collimator exchange procedures
- Total-Body mode unveils ultra-fast quantitative total-body SPECT/CT by all three detectors surrounding the patient
- Brain focus imaging is possible with the dedicated MPH-Brain collimator for superior image quality DAT SPECT and Brain Perfusion SPECT
- Cardiac focus imaging with the MPH-Cardiac collimator delivers extreme tomographic sensitivity enabling fast myocardial perfusion or amyloid scans and even dynamic SPECT acquisition
- Dual-detector modes provide real planar and SPECT imaging options
MAXimized Image Quality and Quantitative Accuracy
- Our signature parallel-hole collimators are available for low-, medium-, high- and ultra-high energies.
- Novel multi-pinhole technology provides focused imaging for brain and cardiac applications with PET-like image quality and unveils dynamic SPECT applications.
- Tera-Tomo™ 3D SPECT-Q is the ultimate quantitative image reconstruction solution, featuring Monte Carlo based physical modelling of particle-level gamma photon interactions running on high-performance GPUs.
Triple-Performance CT
- High power CT with up to 440 mA in diagnostic mode, 0.5 sec rotation speed, 0.625 mm resolution while offering on-the-fly dose modulation
- 16 slice diagnostic CT with 32-slice reconstruction offering three performance levels:
Standard Low Dose protocols for diagnostic CT applications
Ultra-Low Dose CT with sub-mSv effective dose for attenuation correction and localization
AI-Powered Synthetic CT (SyCT)** with zero effective CT dose for quantitative SPECT attenuation correction and anatomical localization in 99mTc bone imaging
- Iterative Image Reconstruction with Tera-Tomo™ 3D CT-IR and advanced corrections for Motion- and Metal Artefact Reduction
- Further improvement is possible with AI-based CT image quality enhancement solution.
***For research purpose only
SyCT***– the AI-Powered Synthetic CT
Experience the innovation of zero-dose CT imaging for quantitative SPECT analysis with our AI-Powered Synthetic CT (SyCT) solution:
- Free from the effective dose of traditional CT scans
- Accurate SPECT attenuation correction for absolute quantification
- Free from artifacts associated with conventional CT imaging
- No motion and registration mismatches between SPECT and CT
- Anatomical localization
- Enhanced workflow efficiency: no need for dual-modality imaging
- Applicable for 99mTc bone scans, including total-body imaging
First Global Installation of the AnyScan® TRIO SPECT/CT, TheraMAX
“The AnyScan® TRIO SPECT/CT, TheraMAX will boost our diagnostic and theranostic workflow and targeted radionuclide therapy, leading to better patient care and it also opens new possibilities in clinical research.” Said Professor Dr. Dirk Hellwig, the head of the Department of Nuclear Medicine at University Hospital Regensburg, Germany.
Applications
Publications
Images
Specification
NaI(Tl) 15.9 mm
75 cm
200 cm
545×401 mm
35 - 640 keV
in less than 10 min
120°, 180°, 90° or dedicated cardiac position (75°)
Brain, Cardiac, other organ specific
Low Energy High Resolution & High Sensitivity (LEHR-HS), Low Energy Ultra High Resolution & High Sensitivity (LEUHR-HS)
Medium Energy High Resolution & High Sensitivity (MEHR-HS), Medium High Energy General Purpose (M-HEGP)
High Ultra-High Energy General Purpose (H-UHEGP)
0.5 - 2 sec
70 cm
10 - 440 mA
7.5 MHU
16
Yes
Sub-millimeter: 0.625 mm
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