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植入式心脏复律除颤器导线体内运动的三维分析。

Three-Dimensional Analysis of the In Vivo Motion of Implantable Cardioverter Defibrillator Leads.

机构信息

Department of Cardiology, Erasmus MC, Postbus 2040, 3000 CA, Rotterdam, The Netherlands.

Biotronik SE & Co. KG, Woermannkehre 1, 12359, Berlin, Germany.

出版信息

Cardiovasc Eng Technol. 2022 Feb;13(1):129-138. doi: 10.1007/s13239-021-00557-4. Epub 2021 Jun 29.

Abstract

UNLABELLED

Better understanding of the lead curvature, movement and their spatial distribution may be beneficial in developing lead testing methods, guiding implantations and improving life expectancy of implanted leads.

OBJECTIVE

The aim of this two-phase study was to develop and test a novel biplane cine-fluoroscopy-based method to evaluate input parameters for bending stress in leads based on their in vivo 3D motion using precisely determined spatial distributions of lead curvatures. Potential tensile, compressive or torque forces were not subjects of this study.

METHODS

A method to measure lead curvature and curvature evolution was initially tested in a phantom study. In the second phase using this model 51 patients with implanted ICD leads were included. A biplane cine-fluoroscopy recording of the intracardiac region of the lead was performed. The lead centerline and its motion were reconstructed in 3D and used to define lead curvature and curvature changes. The maximum absolute curvature C during a cardiac cycle, the maximum curvature amplitude C and the maximum curvature C at the location of C were calculated. These parameters can be used to characterize fatigue stress in a lead under cyclical bending.

RESULTS

The medians of C and C were 0.18 cm and 0.42 cm, respectively. The median location of C was in the atrium whereas the median location of C occurred close to where the transit through the tricuspid valve can be assumed. Increased curvatures were found for higher slack grades.

CONCLUSION

Our results suggest that reconstruction of 3D ICD lead motion is feasible using biplane cine-fluoroscopy. Lead curvatures can be computed with high accuracy and the results can be implemented to improve lead design and testing.

摘要

目的

本两项研究的目的是开发和测试一种新的基于双平面电影荧光透视的方法,该方法基于精确确定的导线曲率的空间分布,利用体内 3D 运动来评估植入导线弯曲应力的输入参数。本研究不涉及潜在的拉伸、压缩或扭转力。

方法

首先在体模研究中测试了一种测量导线曲率和曲率演变的方法。在第二阶段,使用该模型纳入了 51 例植入 ICD 导线的患者。对导线的心脏内区域进行双平面电影荧光透视记录。重建导线的中心线及其运动,并用于定义导线曲率和曲率变化。计算一个心动周期内的最大绝对曲率 C、最大曲率 C 和最大曲率 C 的位置。这些参数可用于描述导线在周期性弯曲下的疲劳应力。

结果

C 和 C 的中位数分别为 0.18cm 和 0.42cm。C 的中位数位置在心房,而 C 的中位数位置接近三尖瓣通过的位置。较高的松弛度等级会导致曲率增加。

结论

我们的结果表明,使用双平面电影荧光透视术重建 3D ICD 导线运动是可行的。可以高精度地计算导线曲率,并且可以实施这些结果来改进导线设计和测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/340d/8888494/99124c5503a0/13239_2021_557_Fig1_HTML.jpg

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