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Evaluation of Coronary Flow Reserve After Myocardial Ischemia Reperfusion in Rats
Published on: June 28, 2019
The relationship between coronary artery distensibility and fractional flow reserve
Andy S C Yong1,2,3, Ashkan Javadzadegan1,2, William F Fearon4
1Faculty of Medicine and Health Sciences, Macquarie University, Sydney, New South Wales, Australia.
Insights
Coronary arterial distensibility independently impacts fractional flow reserve (FFR) measurements. This finding helps explain discrepancies between anatomical stenosis assessments and functional FFR values in patients.
Area of Science:
- Cardiovascular Physiology
- Medical Imaging Analysis
- Computational Fluid Dynamics
Background:
- Discrepancies exist between coronary angiography and fractional flow reserve (FFR) in assessing stenosis severity.
- Factors like lesion characteristics and myocardial territory are known contributors to this discordance.
Purpose of the Study:
- To investigate if coronary arterial distensibility is an independent factor influencing the discordance between anatomical stenosis assessment and FFR.
- To quantify the impact of arterial distensibility on FFR values.
Main Methods:
- Developed "in silico" models of human coronary arteries to simulate FFR under varying distensibility conditions using computational fluid dynamics.
- Analyzed 3D angiography from 104 patients to determine lesion site (DistensibilityMLA) and reference vessel (DistensibilityRef) distensibility during cardiac cycle.
- Correlated distensibility measurements with FFR values and performed statistical analysis (ANCOVA) to identify independent predictors of FFR.
Main Results:
- Computational fluid dynamics-derived FFR increased with arterial distensibility in "in silico" models.
- FFR showed significant correlations with both DistensibilityMLA (r = 0.36) and DistensibilityRef (r = 0.44).
- DistensibilityMLA and percentage diameter stenosis were identified as independent predictors of FFR.
Conclusions:
- Coronary arterial distensibility is a novel, independent determinant of FFR.
- Arterial distensibility is a significant factor contributing to the discordance between anatomical and functional assessments of coronary stenosis severity.
Abstract:
Discordance between angiography-based anatomical assessment of coronary stenosis severity and fractional flow reserve (FFR) has been attributed to several factors including lesion length and irregularity, and the myocardial territory supplied by the target vessel. We sought to examine if coronary arterial distensibility is an independent contributor to this discordance. There were two parts to this study. The first consisted of "in silico" models of 26 human coronary arteries. Computational fluid dynamics-derived FFR was calculated for fully rigid, partially distensible and fully distensible models of the 26 arteries. The second part of the study consisted of 104 patients who underwent coronary angiography and FFR measurement. Distensibility at the lesion site (DistensibilityMLA) and for the reference vessel (DistensibilityRef) was determined by analysing three-dimensional angiography images during end-systole and end-diastole. Computational fluid dynamics-derived FFR was 0.67±0.19, 0.70±0.18 and 0.75±0.17 (P<0.001) in the fully rigid, partially distensible and fully distensible models respectively. FFR correlated with both DistensibilityMLA (r = 0.36, P<0.001) and DistensibilityRef (r = 0.44, P<0.001). Two-way ANCOVA analysis revealed that DistensibilityMLA (F (1, 100) = 4.17, p = 0.031) and percentage diameter stenosis (F (1, 100) = 60.30, p < 0.01) were both independent predictors of FFR. Coronary arterial distensibility is a novel, independent determinant of FFR, and an important factor contributing to the discordance between anatomical and functional assessment of stenosis severity.
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