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基于血管造影序列对起搏导线进行体内应力分析。

In vivo stress analysis of a pacing lead from an angiographic sequence.

作者信息

Liu L, Wang J, Yang W, Chen S J

机构信息

Department of Mechanical Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

J Biomech Eng. 2011 Apr;133(4):041004. doi: 10.1115/1.4003524.

Abstract

In this paper, a method is presented to analyze the mechanical stress distribution in a pacing lead based on a sequence of paired 2D angiographic images. The 3D positions and geometrical shapes of an implanted pacemaker lead throughout the cardiac cycle were generated using a previously validated 3D modeling technique. Based on the Frenet-Serret formulas, the kinematic property of the lead was derived and characterized. The distribution of curvature and twist angle per unit length in the pacing lead was calculated from a finite difference method, which enabled a rapid and effective computation of the mechanical stress in the pacing lead. The analytical solution of the helix deformation geometry was used to evaluate the accuracy of the proposed numerical method, and an excellent agreement in curvature, twist angle, and stresses was achieved. As demonstrated in the example, the proposed technique can be used to analyze the complex movement and deformation of the implanted pacing lead in vivo. The information can facilitate the future development of pacing leads.

摘要

本文提出了一种基于一系列成对二维血管造影图像分析起搏导线内机械应力分布的方法。利用先前验证过的三维建模技术生成植入式起搏器导线在整个心动周期中的三维位置和几何形状。基于弗伦内-塞雷特公式,推导并表征了导线的运动学特性。通过有限差分法计算了起搏导线中单位长度的曲率和扭转角分布,这使得能够快速有效地计算起搏导线中的机械应力。利用螺旋变形几何的解析解来评估所提出数值方法的准确性,在曲率、扭转角和应力方面取得了极好的一致性。如示例所示,所提出的技术可用于分析体内植入式起搏导线的复杂运动和变形。这些信息有助于起搏导线的未来发展。

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