coronary
CoroScope™CT-Angio

CoroScope™CT-Angio

Coronary CTA(cCTA) image analysis system

CoroScope™ CT-Angio is a fully-automated analysis system for 3D reconstruction of coronary vessels powered by artificial intelligence technologies and state-of-the-art computational algorithms. CoroScope™ CT-Angio can automatically segment calcified, fabric and fatty plaques in an accurate way. Moreover quantitative coronary analysis feature is also implanted along with plaques analysis and myocardial analysis. Via this system, the whole analysis time for cCTA scan can be shortened to less than 3 minutes.
System Functions
  • 01
    Automatic selection of the most suitable CTA series from a study;
  • 02
    Automatic 3D coronary reconstruction and labelling of coronary vessels;
  • 03
    Automatic calcium scoring;
  • 04
    Auto-plaque analysis;
  • 05
    Auto-generation of standardized reporting for radiologist.
Technical Superiority
  • Efficacy
    The accuracy of quantitative coronary analysis derived from CoroScope™ CT-Angio compared to QCA derived from DSA is above 90%, which is at the top level among all peer products;
  • Efficiency
    The total runtime is only 3-5 minutes now, which can be continuously reduced as the upgrade of our algorithms and hardware;
  • Economy
    The software can finish all the calculations automatically in 99% of real-world cases without manual intervention, thereby save a lot of human labor in radiology department;
    For those corner cases (<1% cases), clinicians can manually correct or edit the result if it is not satisfying, since the usability is also improved compared to traditional workstation software.
CoroScope™CT-FFR

CoroScope™CT-FFR

Coronary artery physiological function evaluation system

CoroScope™ CT-FFR is a coronary artery physiological functions evaluation system based on coronary CTA imaging. CoroScope™ CT-FFR can automatically complete 3D reconstruction of coronary arteries and provides the patient-specific FFR values for the whole coronary tree. It is an accurate risk evaluation non-invasive tool before the patients’ revascularization’s decision and provides the optimal solutions for operators before percutaneous coronary intervention (PCI).
System Functions
  • 01
    Non-invasive fully-automated on-site CT-FFR calculation;
  • 02
    Virtual stent planning;
Technical Superiority
  • Efficacy
    93%, 92% and 95% in accuracy, specificity and sensitivity compared to invasive FFR;
  • Economy
    Diagnosis cost reduced to 1/4~1/3 of invasive FFR measurement;
  • Efficiency
    The whole CT-FFR examination can be finished in 10 minutes; Moreover, CoroScope™ CT-FFR can integrate CoroScope™ CT-Angio together so that radiologists and cardiologists can be organically connected on the same platform.
XAscope® Coro

XAscope® Coro

DSA-derived Coronary Artery Functional Assessment Software

XAscope® Coro is an evaluation system based on digital subtraction angiogram (DSA) for anatomical and functional analysis of coronary vessels. The system is capable of reconstructing 3D coronary tree in real time (<30 sec) and has the capability of 2D/3D quantitative coronary analysis (QCA) along with the physiological index measurement techniques, including FFR/CFR/IMR, with wire- free.
System Functions
  • 01
    2D/3D quantitative coronary analysis;
  • 02
    Real time 3D reconstruction of coronary artery trees;
  • 03
    On-site automatic physiological index (FFR) calculations;
  • 04
    Surgical planning including virtual stenting, path of catheter options, etc.
Technical Superiority
  • Efficacy
    91%, 91% and 91% in accuracy, specificity and sensitivity for DSA-derived FFR (xaFFR) compared to invasive FFR; 92%, 94% and 83% in accuracy, specificity and sensitivity for DSA-derived IMR (xaIMR) compared to invasive IMR;
  • Economy
    The examination carried out via XAscope® Coro is only based on DSA imaging with wire-free, which could reduce the total cost by 70%;
  • Efficiency
    The system is real time and almost human intervention-free, which saves 90% of the operation time to get the physiological index;