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三维心脏电活动的成像与可视化

Imaging and visualization of 3-D cardiac electric activity.

作者信息

He B, Wu D

机构信息

Department of Bioengineering, University of Illinois at Chicago, 60607, USA.

出版信息

IEEE Trans Inf Technol Biomed. 2001 Sep;5(3):181-6. doi: 10.1109/4233.945288.

Abstract

Noninvasive imaging of cardiac electric activity is of importance for better understanding the underlying mechanisms and for aiding clinical diagnosis and intervention of cardiac abnormalities. We propose to image the three-dimensional (3-D) cardiac bioelectric source distribution from body-surface electrocardiograms. Cardiac electrical sources were modeled by a current dipole distribution throughout the entire myocardium, and estimated by using the Laplacian weighted minimum norm (LWMN) algorithm from body-surface potentials. The estimated inverse solution of the current distribution was further improved by using a recursive weighting strategy for localized sources, such as origins of cardiac arrhythmias. Computer simulations were conducted to test the feasibility of the proposed approach by using a 3-D ventricle model embedded in a realistically shaped torso model. The boundary element method was used to solve the forward problem from assumed cardiac sources to the body-surface potentials. Two testing dipoles were placed in the left and right ventricles, simulating the early activation associated with ventricular arrhythmias. The LWMN inverse solution showed an equivalent source distribution over the entity of both ventricles, with spread areas of activity overlying the positions of the testing dipoles. The sharpened inverse image provides well-localized focal sources near the testing dipole positions. In summary, the present computer simulation suggests that the proposed 3-D cardiac current source imaging and localization approach appears to be a promising candidate for localizing and imaging sites of origins of cardiac activation.

摘要

心脏电活动的无创成像对于更好地理解其潜在机制以及辅助心脏异常的临床诊断和干预具有重要意义。我们提议从体表心电图成像三维(3-D)心脏生物电源分布。心脏电源通过整个心肌中的电流偶极分布进行建模,并使用拉普拉斯加权最小范数(LWMN)算法从体表电位进行估计。通过对局部源(如心律失常的起源)使用递归加权策略,进一步改进了电流分布的估计逆解。通过使用嵌入逼真形状躯干模型中的三维心室模型进行计算机模拟,以测试所提出方法的可行性。边界元法用于解决从假定的心脏源到体表电位的正向问题。在左心室和右心室放置两个测试偶极,模拟与室性心律失常相关的早期激活。LWMN逆解显示两个心室实体上的等效源分布,活动扩散区域覆盖测试偶极的位置。锐化后的逆图像在测试偶极位置附近提供了定位良好的焦点源。总之,当前的计算机模拟表明,所提出的三维心脏电流源成像和定位方法似乎是用于定位和成像心脏激活起源部位的有前途的候选方法。

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