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理想化血液透析血管通路中的血流:计算研究综述

Blood Flow in Idealized Vascular Access for Hemodialysis: A Review of Computational Studies.

作者信息

Ene-Iordache Bogdan, Remuzzi Andrea

机构信息

Laboratory of Biomedical Technologies, Clinical Research Center for Rare Diseases Aldo e Cele Daccò, IRCCS - Istituto di Ricerche Farmacologiche "Mario Negri", Via G.B. Camozzi 3, 24020, Ranica, BG, Italy.

Department of Management, Information and Production and Engineering, University of Bergamo, Dalmine, BG, Italy.

出版信息

Cardiovasc Eng Technol. 2017 Sep;8(3):295-312. doi: 10.1007/s13239-017-0318-x. Epub 2017 Jun 29.

Abstract

Although our understanding of the failure mechanism of vascular access for hemodialysis has increased substantially, this knowledge has not translated into successful therapies. Despite advances in technology, it is recognized that vascular access is difficult to maintain, due to complications such as intimal hyperplasia. Computational studies have been used to estimate hemodynamic changes induced by vascular access creation. Due to the heterogeneity of patient-specific geometries, and difficulties with obtaining reliable models of access vessels, idealized models were often employed. In this review we analyze the knowledge gained with the use of computational such simplified models. A review of the literature was conducted, considering studies employing a computational fluid dynamics approach to gain insights into the flow field phenotype that develops in idealized models of vascular access. Several important discoveries have originated from idealized model studies, including the detrimental role of disturbed flow and turbulent flow, and the beneficial role of spiral flow in intimal hyperplasia. The general flow phenotype was consistent among studies, but findings were not treated homogeneously since they paralleled achievements in cardiovascular biomechanics which spanned over the last two decades. Computational studies in idealized models are important for studying local blood flow features and evaluating new concepts that may improve the patency of vascular access for hemodialysis. For future studies we strongly recommend numerical modelling targeted at accurately characterizing turbulent flows and multidirectional wall shear disturbances.

摘要

尽管我们对血液透析血管通路失败机制的理解有了显著提高,但这些知识尚未转化为成功的治疗方法。尽管技术有所进步,但由于诸如内膜增生等并发症,人们认识到血管通路难以维持。计算研究已被用于估计血管通路建立所引起的血流动力学变化。由于患者特定几何形状的异质性以及获取可靠的通路血管模型存在困难,人们经常采用理想化模型。在本综述中,我们分析了使用此类简化计算模型所获得的知识。我们对文献进行了综述,考虑了采用计算流体动力学方法的研究,以深入了解在血管通路理想化模型中发展的流场表型。理想化模型研究产生了几个重要发现,包括紊乱流和湍流的有害作用以及螺旋流在内膜增生中的有益作用。各项研究中的总体流型是一致的,但研究结果并未得到统一处理,因为它们与过去二十年心血管生物力学的成果相似。理想化模型中的计算研究对于研究局部血流特征和评估可能改善血液透析血管通路通畅性的新概念很重要。对于未来的研究,我们强烈建议进行数值建模,以准确表征湍流和多方向壁面切应力扰动。

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