Supria 128
Supria 128 — Whole-Body Submillimeter CT Imaging
The Supria 128 is a CT system developed for high-speed, high-resolution imaging across the whole body while incorporating technologies for dose reduction, patient comfort, and efficient clinical workflow. Its 128-slice configuration combines submillimeter imaging with advanced reconstruction and image-processing technologies to support a wide range of clinical requirements.
Key Features
0.625 mm × 64-channel detector — provides a 40 mm-wide high-resolution detector for fast submillimeter imaging across the whole body.
Intelli IP iterative processing — supports dose reduction and image noise and artifact reduction for routine examinations.
Seven noise-reduction levels — allows image processing to be adjusted according to each facility's operating requirements.
Low tube voltage scanning — can increase CT values and improve low-contrast resolution when iodine contrast agents are used, while Intelli IP helps manage the associated increase in noise.
High-speed, high-throughput imaging — combines fast rotation, submillimeter scanning, a powerful X-ray generator, and advanced reconstruction algorithms.
In-room operation — scanning can be started or stopped directly from the gantry while the operator remains close to the patient.
HiMAR — reduces metal artifacts using metal-data-based artifact estimation and correction.
Motion artifact correction — compensates for body movement after scanning in applicable examinations.
Full FOV data acquisition — allows image reconstruction without rescanning in specified situations when the anatomy remains within the maximum effective field of view.
ECG Prospective scanning — synchronizes image acquisition with ECG information and can support calcium scoring analysis with the required 3D workstation.
750 mm bore — accommodates imaging in various patient positions.
Quick Entry — provides straightforward operation with conveniently positioned controls and an easy-to-read display.
Lower-Dose, High-Quality Imaging
The Intelli IP iterative processing system has been optimized for use in routine examinations through an updated image-processing unit and improved processing speed. Noise reduction can be selected across seven levels, allowing facilities to choose settings according to their imaging protocols and operating requirements.
The Supria 128 also supports low tube voltage scanning. Lower tube voltage can increase CT values and improve low-contrast resolution when iodine contrast media are used. The additional image noise associated with low tube voltage can be reduced using Intelli IP, supporting lower-dose imaging while maintaining image quality.
Whole-Body Submillimeter Imaging
A 0.625 mm × 64-channel detector provides a 40 mm-wide high-resolution detector configuration, allowing submillimeter imaging across different anatomical regions in a short scanning time.
The minimum slice width of 0.625 mm supports detailed image reconstruction while the detector design balances spatial resolution with X-ray utilization efficiency.
High-Speed and Flexible Scanning
The Supria 128 combines high-speed rotation, submillimeter imaging, a high-output X-ray generator, and image reconstruction algorithms to support high-resolution, high-throughput examinations.
Its CORE 3D image reconstruction method supports high-pitch scanning across the specified slice thickness and field-of-view configurations, subject to the particular system specifications.
Patient-Focused Operation
In-room operation allows scanning to be started or stopped from the gantry while the operator remains close to the patient. This can simplify communication between the scanning and control areas while allowing the patient's condition to be monitored more closely during the examination.
The 750 mm gantry bore also provides a spacious opening that supports imaging patients in different positions.
Advanced Image Processing and Clinical Functions
HiMAR (High Quality Metal Artifact Reduction) estimates and corrects artifacts using metal-related data, helping reduce the impact of metal on reconstructed images.
The system's motion artifact correction can compensate for patient movement after scanning. With full FOV data acquisition, images may also be reconstructed without rescanning when anatomy extends outside the effective field of view but remains within the maximum effective field of view, including applicable cases involving patients with kyphosis.
ECG Prospective scanning synchronizes image acquisition with electrocardiographic information. The resulting images can be used for calcium scoring analysis when paired with a 3D workstation equipped with the required calcium scoring function.
Simple and Accessible Operation
The Quick Entry interface places the scan button on the intercom box directly above the keyboard. Its controls are arranged simply, with large text and an easy-to-understand display, supporting efficient operation during routine examinations.


