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首页> 外文期刊>Medical engineering & physics. >Development of a patient-specific simulation tool to analyse aortic dissections: Assessment of mixed patient-specific flow and pressure boundary conditions
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Development of a patient-specific simulation tool to analyse aortic dissections: Assessment of mixed patient-specific flow and pressure boundary conditions

机译:开发特定于患者的模拟工具以分析主动脉夹层:评估混合的特定于患者的流量和压力边界条件

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摘要

Aortic dissection has high morbidity and mortality rates and guidelines regarding surgical intervention are not clearly defined. The treatment of aortic dissection varies with each patient and detailed knowledge of haemodynamic and mechanical forces would be advantageous in the process of choosing a course of treatment. In this study, a patient-specific dissected aorta geometry is constructed from computed tomography scans. Dynamic boundary conditions are implemented by coupling a three element Windkessel model to the 3D domain at each outlet, in order to capture the essential behaviour of the downstream vasculature. The Windkessel model parameters are defined based on clinical data. The predicted minimum and maximum pressures are close to those measured invasively. Malperfusion is indicated and complex flow patterns are observed. Pressure, flow and wall shear stress distributions are analysed. The methodology presented here provides insight into the haemodynamics in a patient-specific dissected aorta and represents a development towards the use of CFD simulations as a diagnostic tool for aortic dissection. (C) 2013 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:主动脉夹层具有较高的发病率和死亡率,有关手术干预的指南尚无明确定义。主动脉夹层的治疗因每个患者而异,血液动力学和机械力的详细知识在选择治疗方案的过程中将是有利的。在这项研究中,根据计算机断层扫描扫描构建了特定于患者的解剖主动脉。通过将三元素Windkessel模型耦合到每个出口处的3D域来实现动态边界条件,以便捕获下游脉管系统的基本行为。根据临床数据定义Windkessel模型参数。预测的最小和最大压力接近侵入式测量的压力。显示灌注不足,并观察到复杂的流动模式。分析了压力,流量和壁面剪应力分布。此处介绍的方法提供了对特定患者解剖主动脉血流动力学的深入了解,并代表了使用CFD模拟作为主动脉夹层诊断工具的发展。 (C)2013年IPEM。由Elsevier Ltd.出版。保留所有权利。

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