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Updated: Sep 17, 2025

Evaluation of Coronary Flow Reserve After Myocardial Ischemia Reperfusion in Rats
Published on: June 28, 2019
Altered cardiac-coronary coupling relates to abnormal fractional flow reserve without flow limitation after
Ahmet Tas1,2, Alp Ozcan3, Yaren Alan3
1Department of Cardiology, Amsterdam UMC, Heart Centre, Amsterdam Cardiovascular Sciences, Amsterdam, the Netherlands.
Insights
Residual low fractional flow reserve (FFR) after coronary intervention may stem from altered cardiac-coronary coupling, not just microvascular issues. Wave-intensity analysis revealed delayed diastolic filling impacting pressure despite normal flow reserves.
Area of Science:
- Cardiovascular physiology
- Interventional cardiology
- Biomedical engineering
Background:
- Fractional flow reserve (FFR) is crucial for assessing coronary stenosis severity.
- Abnormal FFR post-percutaneous coronary intervention (PCI) despite angiographic success is common.
- Traditional explanations involve coronary flow velocity reserve (CFVR) and hyperemic microvascular resistance (hMR).
Purpose of the Study:
- To investigate mechanisms of residual low FFR after PCI with normalized hyperemic stenosis resistance (hSR).
- To utilize wave-intensity analysis (WIA) to evaluate cardiac-coronary coupling dynamics.
- To identify novel factors influencing post-PCI FFR beyond traditional hemodynamic parameters.
Main Methods:
- Inclusion of 63 vessels from patients with stable intermediate coronary stenoses undergoing PCI.
- Assessment of conventional hemodynamic and WIA parameters pre- and post-PCI.
- Comparison of WIA-derived parameters between vessels with normal FFR-hSR and residual low FFR.
Main Results:
- 16% of vessels showed residual low FFR (≤0.8) despite normalized hSR (<0.8).
- No significant differences in hyperemic flow (velocity), CFVR, or hMR between groups.
- WIA identified significantly blunted and delayed microvascular suction in the low FFR group, impacting diastolic coronary filling.
Conclusions:
- Altered cardiac-coronary coupling, characterized by delayed diastolic filling, may explain residual low FFR post-PCI.
- This phenomenon occurs despite normal flow reserves and vasodilator capacity.
- Further research into cardiac-coronary coupling is warranted to understand its influence on post-PCI FFR.
Abstract:
A significant proportion of stenoses have an abnormal fractional flow reserve (FFR) after angiographically successful percutaneous coronary intervention (PCI), which is traditionally attributed to differences in coronary flow velocity reserve (CFVR) or hyperemic microvascular resistance (hMR). This study investigated the mechanisms underlying residual low FFR despite good angiographic results and normalized hyperemic stenosis resistance (hSR) using wave-intensity analysis (WIA), which evaluates phasic characteristics of cardiac-coronary coupling. Sixty-three vessels from patients who underwent PCI for stable intermediate stenoses were included. Peri-PCI characteristics of conventional and WIA parameters were assessed. Ten (16%) vessels exhibited residual low FFR (≤0.8) despite normalized hSR (<0.8), without significant differences in hyperemic flow (velocity) (hAPV), CFVR, or hMR compared with concordant normal FFR-hSR group (p > 0.05). WIA revealed a significantly slower (peak-time of backward expansion wave, tBEWpeak = 20% ± 6% vs. 29% ± 17% of expansion period, p = 0.005) and weaker (BEWpeak = 10.1 ± 8.9 vs. 15.8 ± 11.4 10.kW.m-2.s-2, p = 0.045) impact of microvascular suction responsible for diastolic coronary filling during hyperemia in the low FFR group, despite comparable pre-PCI characteristics. Residual low FFR after PCI may reflect altered cardiac-coronary coupling without limitation of flow or vasodilator capacity when the blunted impact of accelerating wave energy flux with delayed coronary filling fails to sustain distal pressure. The influence of cardiac-coronary coupling on post-PCI FFR warrants further investigation.
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