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India

Supria 128 - Overview

"Supria128" Intends to Prove Next Standard CT

The content on this page is intended to healthcare professionals and equivalents.

“Supria128” Intends to Prove Lower Dose, High Quality Image
Iterative processing for routine examinations

Iterative Processing, which is useful for dose reduction, requires a large amount of calculation, making it difficult to apply to routine examinations. In "Supria128", the image processing unit has been renewed and the processing speed has been improved in order to use iterative Processing (Intelli IP) for routine examinations.

Optimal settings for each facility

Noise reduction strength can be selected from 7 levels. We provide high-quality images by reducing image noise and artifacts with an appropriate exposure dose according to the facility's operation policy.

Low tube voltage scanning

In general, low tube voltage scanning can be expected to increase CT values and improve low-contrast resolution with iodine contrast agents. The noise increased by low tube voltage imaging can be reduced by Intelli IP, also reducing the burden on the patient.

Scanning with submillimeter (0.625mm)

Equipped with a 0.625mm x 64ch = 40mm high resolution wide detector, submillimeter imaging is possible in a short scanning time at any region on the whole body.

Minimum slice width 0.625mm

The X-ray detector is separated by a partition. The X-ray utilization efficiency decreases by the thickness of this partition. There is a trade-off between X-ray utilization efficiency and spatial resolution, and a detector with a minimum slice width of 0.625mm is equipped.

"Supria128" Intends to Prove Comfortable Patient Care
High pitch scanning not limited to FOV

Our 3D image reconstruction algorithm CORE method allows scanning* with whole specification range of the slices thickness and FOV.

  • * Depends on the specifications of the device
"Supria128" Intends to Prove High Functionality
Helpful function to reduce the burden on the patient

Equipped with a motion artifact correction, body movement can be compensated even after scanning. Even if the patient is out of the effective field of view, such as a patient with a kyphosis, images can be reconstructed without re-scanning in case it is within the maximum effective field of view.

Motion artifact correction
Full FOV data acquisition
ECG Prospective scanning in synchronization with electrocardiogram

ECG Prospective scanning is a function that scans and achieves image in synchronization with electrocardiographic information. Images achieved by ECG Prospective scanning can be used for calcium scoring analysis*1.

  • *1 A 3D workstation equipped with a calcium scoring analysis is required.