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Ventricular Endocardial Tissue Geometry Affects Stimulus Threshold and Effective Refractory Period

机译:心室心内膜组织几何形状影响刺激阈值和有效不应期。

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摘要

Background: Understanding the biophysical processes by which electrical stimuli applied to cardiac tissue may result in local activation is important in both the experimental and clinical electrophysiology laboratory environments, as well as for gaining a more in-depth knowledge of the mechanisms of focal-trigger-induced arrhythmias. Previous computational models have predicted that local myocardial tissue architecture alone may significantly modulate tissue excitability, affecting both the local stimulus current required to excite the tissue and the local effective refractory period (ERP). In this work, we present experimental validation of this structural modulation of local tissue excitability on the endocardial tissue surface, use computational models to provide mechanistic understanding of this phenomena in relation to localized changes in electrotonic loading, and demonstrate its implications for the capture of afterdepolarizations.
机译:背景:在实验和临床电生理实验室环境中,了解电刺激施加至心脏组织可能导致局部激活的生物物理过程,以及对病灶触发机制的更深入了解,都非常重要。诱发心律不齐。先前的计算模型已经预测,单独的局部心肌组织结构可能会显着调节组织的兴奋性,从而影响激发组织所需的局部刺激电流和局部有效不应期(ERP)。在这项工作中,我们目前对心内膜组织表面上局部组织兴奋性的这种结构调节进行实验验证,使用计算模型来提供对这种现象的了解,以了解与电声负荷的局部变化有关,并证明其对捕获去极化后的影响。

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