Sex differences in CT-FFR of myocardial bridging with or without atherosclerosis: an AI-based quantitative study

Jingmin Li1, Fangying Jia2, Haowen Zhang3

  • 1Health Team, Service Support Group, Mobile Detachment of Ningxia Armed Police Corps, Ningxia, China.

Insights

Sex impacts myocardial bridging (MB) hemodynamics, with females showing greater FFRCT abnormalities in isolated MB. MB length independently increases FFRCT abnormality risk, particularly in females, informing risk stratification.

Area of Science:

  • Cardiovascular Imaging and Physiology
  • Artificial Intelligence in Medicine
  • Coronary Artery Anomalies

Background:

  • Myocardial bridging (MB) is a common coronary anomaly, but its hemodynamic impact may differ between sexes.
  • Current assessments often overlook sex-specific differences and the influence of concomitant atherosclerosis.
  • Non-invasive computed tomography-derived fractional flow reserve (FFRCT) can assess MB's functional significance.

Purpose of the Study:

  • To investigate sex-specific differences in FFRCT among patients with left anterior descending artery myocardial bridging (LAD-MB).
  • To evaluate the influence of atherosclerosis on sex-based FFRCT variations in MB patients.
  • To identify factors, including MB length, associated with FFRCT abnormalities using an AI platform.

Main Methods:

  • Retrospective analysis of 300 LAD-MB patients (MB group: 155, MB with atherosclerosis [MBLA] group: 145) and 104 controls.
  • Quantitative morphological analysis of MB and AI-based calculation of FFRCT values (whole-vessel and segmental).
  • Sex-stratified statistical analyses including logistic regression to assess associations with FFRCT abnormalities.

Main Results:

  • Females with isolated MB showed significantly lower distal FFRCT and higher trans-bridge pressure drop compared to males.
  • No significant sex-based FFRCT differences were found in the MBLA group.
  • MB length was an independent risk factor for FFRCT abnormalities, with a greater impact in females than males.

Conclusions:

  • Sex significantly influences FFRCT in LAD-MB patients, with isolated MB causing more pronounced hemodynamic alterations in females.
  • Sex differences in FFRCT diminish when atherosclerosis is present.
  • MB length is a critical factor for risk stratification, especially in females, highlighting the need for sex-specific assessment.
Abstract

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