Association of Multimodal Intracoronary Imaging-Derived Plaque Morphology with the Pathophysiological Disease
Eisuke Usui1, Yoshihisa Kanaji1, Masahiro Hada1
1Department of Cardiovascular Medicine, Tsuchiura Kyodo General Hospital.
Insights
Quantitative flow ratio (QFR) identifies luminal narrowing and vulnerable plaques. The QFR-derived pullback pressure gradient (PPG) reflects coronary artery disease diffuseness, including layered plaques and calcium burden.
Area of Science:
- Cardiovascular Imaging
- Interventional Cardiology
- Biomedical Engineering
Background:
- The quantitative flow ratio (QFR) and QFR-derived pullback pressure gradient (PPG) are advanced metrics for assessing coronary atherosclerosis.
- Understanding the plaque morphologies associated with different QFR-PPG patterns is crucial for guiding treatment strategies.
Purpose of the Study:
- To investigate the specific plaque morphologies linked to distinct pathophysiological patterns identified by QFR and QFR-PPG.
- To determine the independent predictors of QFR and QFR-PPG based on intracoronary imaging findings.
Main Methods:
- Analysis of a database of patients undergoing elective stenting with pre-procedural optical coherence tomography and near-infrared spectroscopy intravascular ultrasound.
- Offline QFR and QFR-PPG analyses were performed, and lesions were stratified into tertiles based on severity and diffuseness.
Main Results:
- Severe QFR tertiles were associated with smaller minimum lumen area (MLA) and higher frequencies of thin-cap fibroatheroma (TCFA) and layered plaque.
- QFR-PPG tertiles showed similar MLA and TCFA frequencies, but diffuse patterns had more layered plaques and larger calcium angles.
- MLA and TCFA independently predicted QFR, while layered plaque and calcium angle predicted QFR-PPG.
Conclusions:
- QFR effectively reflects luminal narrowing and vulnerable plaque features.
- QFR-PPG characterizes disease diffuseness, correlating with layered plaques and calcium burden, independent of lipid-rich features.
Aims:
The quantitative flow ratio (QFR)-derived pullback pressure gradient (PPG) characterizes the pathophysiological patterns of coronary atherosclerosis. This study investigated the plaque morphologies associated with these disease patterns.
Methods:
This study used the institutional QFR-PPG database registered in the University Hospital Medical Information Network Clinical Trials Registry (UMIN000056097). Patients who underwent elective stenting with pre-procedural optical coherence tomography and near-infrared spectroscopy intravascular ultrasound were included. Offline QFR and QFR-PPG analyses were performed, and the lesions were stratified into tertiles.
Results:
A total of 168 de novo lesions were analyzed in this study. The QFR tertiles were defined as severe (<0.61), moderate (0.61-0.71), and mild (>0.71); the QFR-PPG tertiles were defined as diffuse (<0.66), intermediate (0.66-0.79), and focal (>0.79). The Severe QFR tertiles exhibited a smaller minimum lumen area (MLA) and higher frequencies of thin-cap fibroatheroma (TCFA) and layered plaque. In contrast, across the QFR-PPG tertiles, MLA and TCFA frequencies were similar, whereas the diffuse group exhibited more layered plaques and larger calcium angles. The maximum lipid-core burden index did not vary across the QFR-PPG tertiles. A multivariable analysis identified MLA and TCFA as independent predictors of QFR, while layered plaque and calcium angle independently predicted QFR-PPG. However, the lipidic features were not independent predictors of QFR.
Conclusion:
Multimodal intracoronary imaging demonstrated that QFR reflects luminal narrowing and the features of vulnerable plaques. Conversely, QFR-PPG reflects disease diffuseness, characterized by layered plaques and calcium burden rather than lipid-rich features.
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