位置球囊血管成形术

P. Tang, Dongjin Huang, Yin Wang, Ruobin Gong, Wen Tang, Youdong Ding
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引用次数: 2

摘要

球囊血管成形术是一种血管内手术,用于扩大狭窄或阻塞的血管,通常用于治疗动脉粥样硬化。在复杂的血管结构中模拟血管成形术是一项具有挑战性的任务,因为球囊和血管都是柔性体。为了解决气球充气过程中的非线性物理变形问题,提出了一种基于位置的气球物理模型。首先,采用封闭三角网格对气球进行离散建模,结合超弹性膜材料和基于连续介质的公式计算气球充气过程中的力学性能;然后,根据碰撞区域相对固定的特点,提出了一种自适应空气网格生成算法作为加速气球与血管碰撞过程的预处理程序;实验结果表明,该物理模型是可行的,可以模拟充气球囊与病变血管壁的接触和变形过程,具有较好的鲁棒性和实时性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Position based balloon angioplasty
Balloon angioplasty is an endovascular procedure to widen narrowed or obstructed blood vessels, typically to treat arterial atherosclerosis. Simulating angioplasty procedure in the complex vascular structures is a challenge task since the balloon and vessels are both flexible bodies. In this paper, we proposed a position based balloon physical model to solve nonlinear physical deformation in the process of balloon inflation. Firstly, the balloon is discrete modeled by the closed triangle mesh, and the hyperelastic membrane material and continuum based formulation are combined to compute the mechanical properties in the process of balloon inflation. Then, an adaptive air mesh generation algorithm is proposed as a preprocessing procedure for accelerating the coming collision process between the balloon and blood vessels according to the characteristic of collision region which is relative fixed. The experiment results show that this physical model is feasible, which could simulate the contact and deformation process between the inflation balloon and the diseased blood vessel wall with good robustness and in real-time.
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