The impact of tissue Doppler index E/e' ratio on instantaneous wave-free ratio
Hiroyuki Arashi1, Junichi Yamaguchi1, Tonre Ri1
1Department of Cardiology, The Heart Institute of Japan, Tokyo Women's Medical University, Tokyo, Japan.
Insights
The instantaneous wave-free ratio (iFR) is affected by left ventricular filling pressures, unlike fractional flow reserve (FFR). Elevated E/e' indicates higher filling pressures and is linked to lower iFR, suggesting iFR may be influenced by diastolic dysfunction.
Area of Science:
- Cardiology
- Invasive Cardiology
- Cardiac Physiology
Background:
- The instantaneous wave-free ratio (iFR) assesses coronary stenosis severity without vasodilators.
- E/e' is a marker for left ventricular (LV) filling pressure and diastolic dysfunction.
- Elevated E/e' correlates with increased coronary resting flow and reduced coronary flow reserve (CFR).
Purpose of the Study:
- To investigate the relationship between iFR and E/e' compared to fractional flow reserve (FFR).
- To determine if LV filling pressure, indicated by E/e', influences iFR measurements.
Main Methods:
- Retrospective analysis of 103 patients with simultaneous iFR, FFR, and E/e' measurements.
- Comparison of iFR and FFR values between patients with elevated and normal E/e' levels.
- Multivariate analysis to identify independent determinants of iFR.
Main Results:
- Patients with elevated E/e' had significantly lower mean iFR values compared to those with normal E/e'.
- iFR showed a negative correlation with E/e', while FFR did not correlate with E/e'.
- E/e' and % diameter stenosis were independent predictors of iFR.
Conclusions:
- The E/e' ratio significantly impacts iFR measurements.
- FFR primarily reflects epicardial stenosis, whereas iFR may be affected by LV filling pressures and diastolic dysfunction.
- Further research is needed to elucidate the mechanisms influencing iFR in patients with elevated E/e'.
Background:
The instantaneous wave-free ratio (iFR) is a vasodilator-free, invasive pressure wire index of the functional severity of coronary stenosis and is calculated under resting conditions. In a recent study, iFR was found to be more closely linked to coronary flow reserve (CFR) than fractional flow reserve (FFR). E/e' is a surrogate marker of left ventricular (LV) filling pressure and LV diastolic dysfunction. Coronary resting flow was found to be increased in patients with elevated E/e', and higher coronary resting flow was associated with lower CFR. Higher baseline coronary flow induces a greater loss of translesional pressure and may affect iFR. However, no reports have examined the impact of E/e' on iFR. The purpose of this study was to assess the relationship between iFR and E/e' compared with FFR.
Methods And Results:
We retrospectively examined 103 consecutive patients (142 with stenosis) whose iFR, FFR, and E/e' were measured simultaneously. The mean age, LV mass index, and systolic blood pressure of patients with elevated E/e' were higher than those of patients with normal E/e'. Although no significant differences were observed in mean FFR values and % diameter stenosis, the mean iFR value in patients with elevated E/e' was significantly lower than that in patients with normal E/e'. The iFR was negatively correlated with E/e', while there was no correlation between FFR and E/e'. Multivariate analysis showed that E/e' and % diameter stenosis were independent determinants of iFR.
Conclusion:
E/e' ratio affects iFR values. Our results suggest that FFR mainly reflects the functional severity of the epicardial stenosis whereas iFR could potentially be influenced by not only epicardial stenosis but also other factors related to LV filling pressure or LV diastolic dysfunction. Further research is needed to understand the underlying mechanisms that influence the evaluation of iFR in patients with elevated E/e'.
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