Spatio-temporal Spread Variation through Myocardium in Supply and Demand Ischemia.

Oishee Mazumder, Dibyendu Roy, Aniruddha Sinha
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引用次数: 0

Abstract

In this paper, we investigate spatio-temporal progression of Myocardial ischemia (MI) and propose a metric for quantifying ischemic manifestation using cardiac activation time. Spatio-temporal spread is separately analyzed and compared for two different types of ischemia, namely 'Demand' and 'Supply' ischemia. This is done for both surface progression, along the epicardial surface as well as volume progression, along the three sub-myocardial layers. Cardiac activation time or depolarization time is computed from cardiac surface potential using a combined spatio-temporal derivative function. Ischemic zones in the cardiac surface is computed using Principal Component Analysis (PCA) and eigen vector projection of the depolarization time. Spatio-temporal ischemic spread analysis revealed different ischemic initiation and manifestation pattern for Demand and Supply ischemia, both in surface and volume progression.Clinical relevance Activation time based ischemic progression metric can serve as an alternate marker for ischemia detection and can provide more intuitive understanding on the pathological progression, and in turn assist in developing methods to prevent cell damage due to ischemic progression.

供需性心肌缺血时心肌的时空分布变化
本文研究了心肌缺血(MI)的时空进展,并提出了一种利用心脏激活时间量化缺血表现的指标。针对两种不同类型的缺血,即 "需求型 "缺血和 "供应型 "缺血,分别对时空扩散进行了分析和比较。这既包括沿心外膜表面的表面进展,也包括沿三个心肌下层的体积进展。心脏活化时间或去极化时间是根据心脏表面电位计算得出的,使用的是组合时空导函数。利用主成分分析(PCA)和去极化时间的特征向量投影计算心脏表面的缺血区。临床意义 基于活化时间的缺血进展指标可作为缺血检测的替代标记,并能让人更直观地了解病理进展,进而帮助开发防止缺血进展导致细胞损伤的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
0.80
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