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Impact of Serial Coronary Stenoses on Various Coronary Physiologic Indices
Jung-Min Ahn1,2, Takaharu Nakayoshi1, Takehiro Hashikata1
1Division of Cardiovascular Medicine and the Stanford Cardiovascular Institute, Stanford University School of Medicine (J.-M.A., T.N., T.H., K.K., H.A., J.L., W.F.F.).
Insights
Nonhyperemic pressure ratios like iFR and Pd/Pa are affected by hemodynamic interdependence in serial coronary stenoses. This effect is similar to FFR when stenoses are severe.
Area of Science:
- Cardiovascular physiology
- Interventional cardiology
- Diagnostic techniques in cardiology
Background:
- Assessing individual coronary lesions in serial stenoses is complex.
- Nonhyperemic pressure ratios (iFR, Pd/Pa) may offer advantages over FFR due to stable resting flow.
- Hemodynamic interdependence (cross-talk) during hyperemia can affect FFR accuracy.
Purpose of the Study:
- To evaluate the degree of hemodynamic interdependence for iFR, resting Pd/Pa, and FFR.
- To investigate these indices in a porcine model with serial coronary stenosis.
Main Methods:
- Serial coronary stenoses were created in 6 swine using balloon catheters.
- Hemodynamic interdependence was quantified by measuring absolute changes in iFR, Pd/Pa, and FFR.
- Measurements were taken as the severity of one stenosis varied while another remained fixed.
Main Results:
- Hemodynamic interdependence was observed for iFR (0.039±0.048), Pd/Pa (0.021±0.026), and FFR (0.034±0.034) (P<0.001).
- Interdependence was lower for less severe stenoses (0.70-0.90).
- Interdependence increased significantly for severe stenoses (<0.60), with values of 0.060±0.050 for iFR, 0.037±0.030 for Pd/Pa, and 0.051±0.037 for FFR (P<0.001).
Conclusions:
- Nonhyperemic pressure ratios are influenced by hemodynamic interdependence when assessing serial coronary stenoses.
- The impact of hemodynamic interdependence on nonhyperemic ratios is comparable to FFR in cases of severe serial stenoses.
Background:
Determining the functional significance of each individual coronary lesion in patients with serial coronary stenoses is challenging. It has been proposed that nonhyperemic pressure ratios, such as the instantaneous wave free ratio (iFR) and the ratio of resting distal to proximal coronary pressure (Pd/Pa) are more accurate than fractional flow reserve (FFR) because autoregulation should maintain stable resting coronary flow and avoid hemodynamic interdependence (cross-talk) that occurs during hyperemia. This study aimed to measure the degree of hemodynamic interdependence of iFR, resting Pd/Pa, and FFR in a porcine model of serial coronary stenosis.
Methods:
In 6 anesthetized female swine, 381 serial coronary stenoses were created in the left anterior descending artery using 2 balloon catheters. The degree of hemodynamic interdependence was calculated by measuring the absolute changes in iFR, resting Pd/Pa, and FFR across the fixed stenosis as the severity of the other stenosis varied.
Results:
The hemodynamic interdependence of iFR, resting Pd/Pa, and FFR was 0.039±0.048, 0.021±0.026, and 0.034±0.034, respectively (all P<0.001). When the functional significance of serial stenoses was less severe (0.70-0.90 for each index), the hemodynamic interdependence was 0.009±0.020, 0.007±0.013, and 0.017±0.022 for iFR, resting Pd/Pa, and FFR, respectively (all P<0.001). However, in more severe serial coronary stenoses (<0.60 for each index), hemodynamic interdependence was 0.060±0.050, 0.037±0.030, and 0.051±0.037 for iFR, resting Pd/Pa, and FFR, respectively (all P<0.001).
Conclusions:
When assessing serial coronary stenoses, nonhyperemic pressure ratios are affected by hemodynamic interdependence. When the functional significance of serial coronary stenoses is severe, the effect is similar to that which is seen with FFR.
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