Hemodynamic Insights into Combined Fractional Flow Reserve and Instantaneous Wave-Free Ratio Assessment Through Quantitative [<sup>15</sup>O]H<sub>2</sub>O PET Myocardial Perfusion Imaging.
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- Also identified by DOI 10.2967/jnumed.123.265973.
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Abstract
In patients evaluated for obstructive coronary artery disease (CAD), guidelines recommend using either fractional flow reserve (FFR) or instantaneous wave-free ratio (iFR) to guide coronary revascularization decision-making. The hemodynamic significance of lesions with discordant FFR and iFR measurements is debated. This study compared [<sup>15</sup>O]H<sub>2</sub>O PET-derived absolute myocardial perfusion between vessels with concordant and discordant FFR and iFR measurements. <b>Methods:</b> We included 197 patients suspected of obstructive CAD who had undergone [<sup>15</sup>O]H<sub>2</sub>O PET perfusion imaging and combined FFR/iFR interrogation in 468 vessels. Resting myocardial blood flow (MBF), hyperemic MBF, and coronary flow reserve (CFR) were compared among 4 groups: FFR low/iFR low (<i>n</i> = 79), FFR high/iFR low (<i>n</i> = 22), FFR low/iFR high (<i>n</i> = 22), and FFR high/iFR high (<i>n</i> = 345). Predefined [<sup>15</sup>O]H<sub>2</sub>O PET thresholds for ischemia were 2.3 mL·min<sup>-1</sup>·g<sup>-1</sup> or less for hyperemic MBF and 2.5 or less for CFR. <b>Results:</b> Hyperemic MBF was lower in the concordant low (2.09 ± 0.67 mL·min<sup>-1</sup>·g<sup>-1</sup>), FFR high/iFR low (2.41 ± 0.80 mL·min<sup>-1</sup>·g<sup>-1</sup>), and FFR low/iFR high (2.40 ± 0.69 mL·min<sup>-1</sup>·g<sup>-1</sup>) groups compared with the concordant high group (2.91 ± 0.84 mL·min<sup>-1</sup>·g<sup>-1</sup>) (<i>P</i> < 0.001, <i>P</i> = 0.004, and <i>P</i> < 0.001, respectively). A lower CFR was observed in the concordant low (2.37 ± 0.76) and FFR high/iFR low (2.64 ± 0.84) groups compared with the concordant high group (3.35 ± 1.07, <i>P</i> < 0.01 for both). However, for vessels with either low FFR or low iFR, quantitative hyperemic MBF and CFR values exceeded the ischemic threshold in 38% and 49%, respectively. In addition, resting MBF exhibited a negative correlation with iFR (<i>P</i> < 0.001) and was associated with FFR low/iFR high discordance compared with concordant low FFR/low iFR measurements, independent of clinical and angiographic characteristics, as well as hyperemic MBF (odds ratio [OR], 0.41; 95% CI, 0.26-0.65; <i>P</i> < 0.001). <b>Conclusion:</b> We found reduced myocardial perfusion in vessels with concordant low and discordant FFR/iFR measurements. However, FFR/iFR combinations often inaccurately classified vessels as either ischemic or nonischemic when compared with hyperemic MBF and CFR. Furthermore, a lower resting MBF was associated with a higher iFR and the occurrence of FFR low/iFR high discordance. Our study showed that although combined FFR/iFR assessment can be useful to estimate the hemodynamic significance of coronary lesions, these pressure-derived indices provide a limited approximation of [<sup>15</sup>O]H<sub>2</sub>O PET-derived quantitative myocardial perfusion as the physiologic standard of CAD severity.
Medical subject headings
- Coronary Stenosis
- Fractional Flow Reserve, Myocardial
- Myocardial Perfusion Imaging
- Coronary Artery Disease