Transcatheter aortic valve implantation significantly reduced high wall shear stress exposure (59% to 40.8%, p<0.001) and oscillatory shear index (0.32 to 0.21, p<0.001) in in silico models.
Does TAVI alter coronary physiology indices and wall shear stress in patients with coexisting aortic stenosis and coronary artery disease?
Coronary physiology indices remain stable and reliable for revascularization guidance post-TAVI, while TAVI significantly improves plaque shear stress dynamics.
Tasa de eventos absoluta: 40.8% vs 59%
valor p: p=<0.001
Aortic stenosis (AS) frequently coexists with coronary artery disease (CAD), complicating revascularization decisions. The use of coronary physiology indices, such as the fractional flow reserve (FFR), instantaneous wave-free ratio (iFR), and coronary flow reserve (CFR), in AS patients remains debated, particularly after transcatheter aortic valve implantation (TAVI). In this study, we employ computational fluid dynamics (CFD) to evaluate coronary hemodynamics and assess changes in the wall shear stress (WSS) before and after TAVI. Our analysis demonstrates strong agreement between CFD-derived and invasive FFR measurements, confirming CFD's reliability as a non-invasive tool for coronary physiology assessment. Furthermore, our results show no significant changes in FFR (p=0.92), iFR (p=0.67), or CFR (p=0.34) post-TAVI, suggesting that these indices remain stable following aortic valve intervention. However, a significant reduction in high WSS exposure (59% to 40.8%, p<0.001) and the oscillatory shear index (OSI: 0.32 to 0.21, p<0.001) was observed, indicating improved hemodynamic stability. These findings suggest that coronary physiology indices remain reliable for revascularization guidance post-TAVI and highlight a potential beneficial effect of aortic stenosis treatment on plaque shear stress dynamics. Our study underscores the clinical utility of CFD modeling in CAD management, paving the way for further research into its prognostic implications.
Bellouche et al. (Wed,) conducted a other in Aortic stenosis and coronary artery disease. Transcatheter aortic valve implantation (TAVI) vs. Pre-TAVI was evaluated on High wall shear stress (WSS) exposure (p=<0.001). Transcatheter aortic valve implantation significantly reduced high wall shear stress exposure (59% to 40.8%, p<0.001) and oscillatory shear index (0.32 to 0.21, p<0.001) in in silico models.