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PMID: 28918876 Published · ppublish English Journal Article

Evaluation of potential substrates for restenosis and thrombosis in overlapped versus edge-to-edge juxtaposed bioabsorbable scaffolds: Insights from a computed fluid dynamic study.

Cardiovascular revascularization medicine : including molecular interventions ·Vol. 19 ·No. 3 Pt A ·2018-00-00 ·页码 273-278

Rigatelli G, Zuin M, Dell'Avvocata F, Cardaioli P, Vassiliev D, Ferenc M, Nghia NT, Nguyen T, Foin N

Abstract

Multiple BRSs and specifically the Absorb scaffold (BVS) (Abbott Vascular, Santa Clara, CA USA) have been often used to treat long diffuse coronary artery lesions. We evaluate by a computational fluid dynamic(CFD) study the impact on the intravascular fluid rheology on multiple bioabsorbable scaffolds (BRS) by standard overlapping versus edge-to-edge technique. We simulated the treatment of a real long significant coronary lesion (>70% luminal narrowing) involving the left anterior descending artery (LAD) treated with a standard or edge-to-edge technique, respectively. Simulations were performed after BVS implantations in two different conditions: 1) Edge-to-edge technique, where the scaffolds are kissed but not overlapped resulting in a luminal encroachment of 0.015cm (150μm); 2) Standard overlapping, where the scaffolds are overlapped resulting in a luminal encroachment of 0.030cm (300μm). After positioning the BVS across the long lesion, the implantation procedure was performed in-silico following all the usual procedural steps. Analysis of the wall shear stress (WSS) suggested that at the vessel wall level the WSS were lower in the overlapping zones overlapping compared to the edge-to-edge zone (∆=0.061Pa, p=0.01). At the struts level the difference between the two WSS was more striking (∆=1.065e-004 p=0.01) favouring the edge-to-edge zone. Our study suggested that at both vessel wall and scaffold struts levels, there was lowering WSS when multiple BVS were implanted with the standard overlapping technique compared to the "edge-to-edge" technique. This lower WSS might represent a substrate for restenosis, early and late BVS thrombosis, potentially explaining at least in part the recent evidences of devices poor performance.

Keywords
BVS BVS restenosis BVS thrombosis CFD
MeSH 主题词
Absorbable Implants Blood Flow Velocity Computer Simulation Coronary Angiography Coronary Artery Disease/diagnostic imaging,physiopathology,surgery Coronary Circulation Coronary Restenosis/diagnostic imaging,etiology,physiopathology Coronary Stenosis/diagnostic imaging,physiopathology,surgery Coronary Thrombosis/diagnostic imaging,etiology,physiopathology Humans Models, Cardiovascular Percutaneous Coronary Intervention/adverse effects,instrumentation Prosthesis Design Rheology Risk Factors Stents Treatment Outcome
作者与单位
共 9 位作者,点击展开单位 / ORCID
Rigatelli Gianluca
Section of Cardiovascular Diagnosis and Endoluminal Interventions, Rovigo General Hospital, Rovigo, Italy. Electronic address: [email protected].
Zuin Marco
Department of Cardiology, Rovigo General Hospital, Rovigo, Italy; Section of Internal and Cardiopulmonary Medicine, Department of Medical Science, University of Ferrara, Ferrara, Italy.
Dell'Avvocata Fabio
Section of Cardiovascular Diagnosis and Endoluminal Interventions, Rovigo General Hospital, Rovigo, Italy.
Cardaioli Paolo
Section of Cardiovascular Diagnosis and Endoluminal Interventions, Rovigo General Hospital, Rovigo, Italy.
Vassiliev Dobrin
Department of Cardiology, Hospital, University School of Medicine, Sofia, Bulgaria.
Ferenc Miroslaw
Bad Kronizen Friburg University School of Medicine, Heart Zentrum, Bad Kronizen, Germany.
Nghia Nguyen Tuan
Cardiovascular Research, Methodist Hospital, Merrillville, IN, USA.
Nguyen Thach
Cardiovascular Research, Methodist Hospital, Merrillville, IN, USA; Tan Tao University, School of Medicine, Tan Duce City, Long An, Vietnam.
Foin Nicholas
Medtech Research Theme, National Heart Centre Singapore, Duke-NUS Medical School, Singapore.
Article Info
Journal
Cardiovascular revascularization medicine : including molecular interventions
Abbr.
Cardiovasc Revasc Med
ISSN
1878-0938
Corresponding email
Published
2018-00-00
电子出版
2017-00-17
页码
273-278
Language
English
Country/Region
United States
NLM ID
101238551
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