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分叉病变经皮冠状动脉介入治疗患者的局部血流动力学。

Local fluid dynamics in patients with bifurcated coronary lesions undergoing percutaneous coronary interventions.

机构信息

Institute of Cardiology, Fondazione Policlinico Universitario A. Gemelli IRCCS, Catholic University of the Sacred Heart, Rome, Italy, L.go A. Gemelli, 8, 00168 Rome, Italy.

Cardiovascular Biology and Biomechanics Laboratory, Cardiovascular Division, University of Nebraska Medical Center, Omaha, NE, USA., Omaha, United States.

出版信息

Cardiol J. 2021;28(2):321-329. doi: 10.5603/CJ.a2020.0024. Epub 2020 Feb 13.

Abstract

Although the coronary arteries are uniformly exposed to systemic cardiovascular risk factors, atherosclerosis development has a non-random distribution, which follows the local mechanical stresses including flow-related hemodynamic forces. Among these, wall shear stress plays an essential role and it represents the major flow-related factor affecting the distribution of atherosclerosis in coronary bifurcations. Furthermore, an emerging body of evidence suggests that hemodynamic factors such as low and oscillating wall shear stress may facilitate the development of in-stent restenosis and stent thrombosis after successful drug-eluting stent implantation. Drug-eluting stent implantation represents the gold standard for bifurcation interventions. In this specific setting of interventions on bifurcated lesions, the impact of fluid dynamics is expected to play a major role and constitutes substantial opportunity for future technical improvement. In the present review, available data is summarized regarding the role of local fluid dynamics in the clinical outcome of patients with bifurcated lesions.

摘要

尽管冠状动脉普遍暴露于全身性心血管危险因素,但动脉粥样硬化的发展具有非随机的分布,这遵循局部机械应力,包括与流动相关的血流动力学。在这些因素中,壁切应力起着至关重要的作用,它是影响冠状动脉分叉处动脉粥样硬化分布的主要血流相关因素。此外,越来越多的证据表明,低壁切应力和振荡壁切应力等血流动力学因素可能促进药物洗脱支架植入成功后支架内再狭窄和支架内血栓形成的发展。药物洗脱支架植入是分叉病变介入治疗的金标准。在分叉病变介入治疗的这种特殊情况下,预计流体动力学的影响将起到主要作用,并为未来的技术改进提供重要机会。在本综述中,总结了局部流体动力学在分叉病变患者临床结局中的作用的相关数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb2e/8078952/46900c88727b/cardj-28-2-321f1.jpg

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