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A Controlled Trial of Rivaroxaban After Transcatheter Aortic-Valve Replacement Comparison of Early Surgical or Transcatheter Aortic Valve Replacement Versus Conservative Management in Low-Flow, Low-Gradient Aortic Stenosis Using Inverse Probability of Treatment Weighting: Results From the TOPAS Prospective Observational Cohort Study Anticoagulation After Surgical or Transcatheter Bioprosthetic Aortic Valve Replacement Balloon Aortic Valvuloplasty as a Bridge to Aortic Valve Replacement: A Contemporary Nationwide Perspective A Review of the Role of Breast Arterial Calcification for Cardiovascular Risk Stratification in Women Association of Coronary Artery Calcium With Long-term, Cause-Specific Mortality Among Young Adults Pulmonary arterial hypertension in congenital heart disease: an epidemiologic perspective from a Dutch registry The contribution of tissue-grouped BMI-associated gene sets to cardiometabolic-disease risk: a Mendelian randomization study Transcatheter Versus Surgical Aortic Valve Replacement in Low-Risk Patients Ten-Year All-Cause Death According to Completeness of Revascularization in Patients With Three-Vessel Disease or Left Main Coronary Artery Disease: Insights From the SYNTAX Extended Survival Study

Original Research2014 Mar 1;83(4):545-52.

JOURNAL:Catheter Cardiovasc Interv. Article Link

Functional and morphological assessment of side branch after left main coronary artery bifurcation stenting with cross-over technique

Kang SJ, Ahn JM, Kim WJ et al. Keywords: fractional flow reserve; left main coronary artery stenosis; sidebranch

ABSTRACT


BACKGROUND - In left main coronary artery (LMCA) bifurcation lesions, hemodynamic and geometrical change in left circumflex artery (LCX) ostium after main branch (MB) stenting has not been known. This study evaluated how accurately intravascular ultrasound (IVUS) predicts the functional compromise of the sidebranch.


METHODS - A single-stent cross-over technique was used to treat LMCA bifurcation lesions in 43 patients with LCX ostial diameter stenosis (DS) of <50%. The fractional flow reserve (FFR) in the LCX was measured after MB stenting, MB and sidebranch pullback IVUS was performed prestenting and poststenting.


RESULTS - After MB stenting, angiographic DS >50% at the LCX ostium was observed in 18 (42%) patients, while only 3 (7%) showed FFR <0.80. A pre-procedural minimal lumen area (MLA) of <3.7 mm(2) within the LCX ostium was predictive of a poststenting FFR <0.80, with a sensitivity of 100%, specificity of 71%, a positive predictive value (PPV) of 16%, and a negative predictive value (NPV) of 100% (area under curve 0.80, P < 0.001). Moreover, pre-procedural plaque burden of >56% at the LCX ostium predicted FFR <0.80, with a sensitivity of 100%, specificity of 65%, a PPV of 14%, and a NPV of 100% (area under curve 0.80, P < 0.001). A poststenting LCX ostial DS >57% predicted FFR <0.80 with a sensitivity of 100%, specificity of 88%, a PPV of 38% and a NPV of 100% (area under curve 0.962, P < 0.001). However, the poststenting MLA within the LCX ostium showed no significant correlation with FFR (r = 0.197, P = 0.391).


CONCLUSIONS - In LMCA bifurcation lesions with mild LCX ostial disease, the use of single-stent technique rarely resulted in the functional LCX compromise. Because the functional LCX stenosis is poorly predicted by a small MLA, sidebranch treatment should be based on the poststenting FFR.

 

Copyright © 2013 Wiley Periodicals, Inc.