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Rotational atherectomy in the subadventitial space to allow safe and successful chronic total occlusion recanalization: Pushing the limit further Prevalence, Presentation and Treatment of 'Balloon Undilatable' Chronic Total Occlusions: Insights from a Multicenter US Registry Rotational atherectomy and new-generation drug-eluting stent implantation Short-term and long-term clinical outcomes of rotational atherectomy in resistant chronic total occlusion Long-term outcomes of rotational atherectomy of underexpanded stents. A single center experience A Meta-Analysis of Contemporary Lesion Modification Strategies During Percutaneous Coronary Intervention in 244,795 Patients From 22 Studies Rotational Atherectomy Followed by Drug-Coated Balloon Dilation for Left Main In-Stent Restenosis in the Setting of Acute Coronary Syndrome Complicated with Right Coronary Chronic Total Occlusion Transverse partial stent ablation with rotational atherectomy for suboptimal culotte technique in left main stem bifurcation Radial Versus Femoral Access for Rotational Atherectomy: A UK Observational Study of 8622 Patients Optical frequency-domain imaging findings to predict good stent expansion after rotational atherectomy for severely calcified coronary lesions
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Original Research2020 Jun 3;S0167-5273(20)31098-6.

JOURNAL:Int J Cardiol. Article Link

Long-term Variations of FFR and iFR After Transcatheter Aortic Valve Implantation

R Scarsini, M Lunardi, F Ribichini et al. Keywords: FFR; iFR; severe AS; post TAVI

ABSTRACT

Long-term variations of fractional flow reserve (FFR) and instantaneous wave-free-ratio (iFR) after transcatheter aortic valve implantation (TAVI) have not been previously assessed. A total of 23 coronary lesions in 14 patients with aortic stenosis (AS) underwent physiology assessment at baseline, immediately after TAVI and at 14(7-29) months of follow-up. The angiographic severity of the lesions did not progress at follow-up (54[45-64] vs 54[49-63], p = .53). Overall, FFR (0.87[0.85-0.92] vs 0.88[0.82-0.92], p = .45) and iFR (0.88[0.85-0.96] vs 0.91[0.86-0.97], p = .30) did not change significantly compared with the baseline. FFR decreased in 3(13%) lesions with abnormal baseline value, whereas it remained stable in lesions with FFR > 0.80. Conversely, iFR did not show a systematic trend at long-term after TAVI. However, iFR demonstrated a higher reclassification rate at follow-up compared with FFR (p = .02). In conclusions, in this exploratory study, only minor variations of coronary physiology indices were observed at long-term after TAVI. Nevertheless, caution should be exercised in the interpretation of borderline FFR and iFR values in severe AS.