心电中心脏激活序列的成像研究

V. Bhat, A. H
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引用次数: 0

摘要

在心肌上传播的电脉冲在细胞内和细胞外空间之间产生电位差,称为跨膜电位。这些波阵面穿过心肌,在体表产生电位,可通过心电图测量。心律不齐、心肌病和梗死等心血管疾病可导致心肌细胞破裂,其动作电位较小或为零。为了诊断破裂细胞的位置,心电图是目前常用的主要检查方法之一。但是,心电图在心脏水平上对心脏活动的成像能力受到限制。临床医生可能不得不使用其他成像方式/侵入性方法来诊断疾病。因此,非侵入性成像是一种具有挑战性的方法,它将帮助临床医生定位心脏破裂区域。在此基础上,采用均匀双层理论对心脏的正演问题进行建模。激活波在心脏表面无创成像。反向研究扩展到利用Tikhonov正则化技术重建左、右心室肌肉(前、后)异常部位的去极化波。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study of Imaging the Cardiac Activation Sequences in Electrocardiology
The electrical impulses propagating on the heart muscles create a potential difference between intra and extra cellular space, called as transmembrane potentials. These wavefronts passing throughout the myocardium generates potential on the body surface, which can be measured in terms of Electrocardiogram (ECG). The cardiovascular diseases like arrhythmia, cardiomyopathy, and infarctions result in rupturing of myocardial cells that show either less magnitude or zero action potentials. In order to diagnose the locations of the ruptured cells, ECG is one of the main tests that is popularly used. But, ECG limits its ability to image cardiac activities in the heart level. The clinicians may have to use other imaging modalities/invasive methods to diagnose the diseases. Non- invasive imaging is thus challenging approach that would help clinicians to localize the ruptured cardiac region. In this, the forward problem of the heart is modeled based on uniform double layer theory. The activation waves are non-invasively imaged on the cardiac surface. The inverse study is extended to reconstruct depolarization waves from abnormal sites at left and right ventricle muscles (anterior and posterior) using Tikhonov regularization technique.
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