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心肌的区域特异性建模:模拟电位与实验电位的比较。

Region specific modeling of cardiac muscle: comparison of simulated and experimental potentials.

作者信息

Muzikant Adam L, Hsu Edward W, Wolf Patrick D, Henriquez Craig S

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27708-0281, USA.

出版信息

Ann Biomed Eng. 2002 Jul-Aug;30(7):867-83. doi: 10.1114/1.1509453.

Abstract

This article investigates the quantitative predictive capabilities of region-specific models by comparing experimental electrograms obtained from in vivo mapping of the ventricular free wall with those obtained through simulation of a region specific three-dimensional bidomain model that incorporates measured fiber orientations. Epicardial electrograms were recorded from canine left ventricles during and after unipolar pacing using a 528-channel electrode plaque. Fiber directions throughout the tissue were estimated from diffusion-weighted MRI and from pace mapping. Electrograms were computed in the bidomain model with experimentally derived properties during paced activations at the same spatiotemporal resolution as those recorded experimentally. Epicardial potentials from model and experiment were directly compared, and sensitivities of these comparisons to reference electrode location and to the choice of material properties were analyzed. The comparisons performed here demonstrate, that (1) the stimulus artifact can be used to estimate the in vivo myocardial fiber architecture, (2) the correlation between simulated and experimental electrograms decreases with increasing pacing depth, and (3) the quantitative comparisons between bidomain model and experimental data are sensitive to both the description of the fiber architecture, and the location of the unipolar reference electrode, but relatively insensitive to moderate changes in the bidomain conductivities.

摘要

本文通过比较从心室游离壁体内标测获得的实验心电图与通过模拟包含测量纤维方向的区域特异性三维双域模型所获得的心电图,研究了区域特异性模型的定量预测能力。在单极起搏期间和之后,使用528通道电极板从犬左心室记录心外膜心电图。通过扩散加权磁共振成像和起搏标测估计整个组织中的纤维方向。在双域模型中,以与实验记录相同的时空分辨率,在起搏激活期间根据实验得出的特性计算心电图。直接比较模型和实验的心外膜电位,并分析这些比较对参考电极位置和材料特性选择的敏感性。此处进行的比较表明:(1)刺激伪迹可用于估计体内心肌纤维结构;(2)模拟心电图与实验心电图之间的相关性随起搏深度增加而降低;(3)双域模型与实验数据之间的定量比较对纤维结构的描述和单极参考电极的位置均敏感,但对双域电导率的适度变化相对不敏感。

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