Related Experiment Video
Updated: May 28, 2026

Ultrasound Based Assessment of Coronary Artery Flow and Coronary Flow Reserve Using the Pressure Overload Model in Mice
Published on: April 13, 2015
Patient-specific continuous non-invasive blood pressure waveform in computed tomography derived fractional flow
Kryspin Mirota1, Joanna Wicher-Żółtaniecka1, Mateusz Rzycki2
1Hemolens Diagnostics Sp. z o.o., Wroclaw, Poland.
Background And Objective:
Fractional flow reserve (FFR) derived from coronary computed tomography angiography (FFR-CT) offers a non-invasive alternative to invasive FFR measurement, the clinical gold standard for assessing the functional significance of coronary stenosis. This study presents and validates the Cardiolens FFR-CT Pro®method that integrates coronary computed tomography angiography (CCTA) images, medical interview data, and continuous non-invasive blood pressure (CNBP) waveform signals to provide patient-specific boundary conditions for computational fluid dynamics (CFD) simulations. The aim of this study is to investigate how pressure morphology affects FFR-CT calculations by comparing the use of patient-specific pressure waveforms versus using systolic and diastolic blood pressure values only, obtained from population based formulas.
Methods:
In this study, 132 patients (167 vessels) were included prospectively across 11 centers between 2020 and 2022 and analyzed retrospectively. Cardiolens FFR-CT Pro®using patient-specific pressure waveform boundary conditions, and an FFR-CT population based model. Diagnostic performance metrics (accuracy, specificity, sensitivity) were calculated and compared between methods.
Results:
The Cardiolens FFR-CT Pro®demonstrated higher accuracy (88.6%), specificity (87.4%) and sensitivity (92.5%) than population based pressure input FFR-CT accuracy (87.3%), specificity (87.3%) and sensitivity (87.5%).
Conclusions:
Incorporating patient-specific pressure waveform morphology into boundary conditions improves diagnostic performance compared with population-based formulas alone. These findings underscore the clinical utility of non-invasive FFR-CT, particularly when patient-specific physiological data are available, and highlight the potential for broader adoption of this technique in routine practice.
