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Performance assessment of computed tomographic angiog-raphy fractional flow reserve using deep learning:SMART tri-al summary
Wei ZHANG
You-Bing YIN
Zhi-Qiang WANG
Ying-Xin ZHAO
Dong-Mei SHI
Yong-He GUO
Zhi-Ming ZHOU
Zhi-Jian WANG
Shi-Wei YANG
De-An JIA
Li-Xia YANG
Yu-Jie ZHOU
Abstract:Background Non-invasive computed tomography angiography (CTA)-based fractional flow reserve (CT-FFR) could become a gatekeeper to invasive coronary angiography. Deep learning (DL)-based CT-FFR has shown promise when compared to invasive FFR. To evaluate the performance of a DL-based CT-FFR technique, DeepVessel FFR (DVFFR). Methods This retrospective study was designed for iScheMia Assessment based on a Retrospective, single-center Trial of CT-FFR (SMART). Patients suspected of stable coronary artery disease (CAD) and undergoing both CTA and invasive FFR examinations were consecutively selected from the Beijing Anzhen Hospital between January 1, 2016 to December 30, 2018. FFR obtained during invasive coronary angiography was used as the reference standard. DVFFR was calculated blindly using a DL-based CT-FFR approach that utilized the complete tree structure of the coronary arteries. Results Three hundred and thirty nine patients (60.5±10.0 years and 209 men) and 414 vessels with direct invasive FFR were included in the analysis. At per-vessel level, sensitivity, specificity, accuracy, positive predictive value (PPV) and negative predictive value (NPV) of DVFFR were 94.7%, 88.6%, 90.8%, 82.7%, and 96.7%, respectively. The area under the receiver operating characteristics curve (AUC) was 0.95 for DVFFR and 0.56 for CTA-based assessment with a significant difference (P<0.0001). At patient level, sensitivity, specificity, accuracy, PPV and NPV of DVFFR were 93.8%, 88.0%, 90.3%, 83.0%, and 95.8%, respectively. The computation for DVFFR was fast with the average time of 22.5±1.9 s. Conclusions The results demonstrate that DVFFR was able to evaluate lesion hemodynamic significance accurately and effectively with improved diagnostic performance over CTA alone. Coronary artery disease (CAD) is a critical disease in which coronary artery luminal narrowing may result in myocardial ischemia. Early and effective assessment of myocardial ischemia is essential for optimal treatment planning so as to improve the quality of life and reduce medical costs.
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Publication Date:2025-09-30
Online Publishing Date:2025-11-14(First online date of this platform, not the publication date of the document)
Pages:9( 793-801 )
Journal of Geriatric Cardiology

Journal of Geriatric Cardiology

SCICSCD
ISSN:1671-5411
Year, Vol.(Issue):2025,22(9)