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.
Abstract