首页> 外文会议>Conference on Computers in Cardiology >Mechanisms Underlying Cardiac Vulnerability to Electric Shocks within the Three-Dimensional Volume of the Rabbit Ventricles
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Mechanisms Underlying Cardiac Vulnerability to Electric Shocks within the Three-Dimensional Volume of the Rabbit Ventricles

机译:心脏脆弱的机制在兔心室的三维体积内的电击到电击

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The goal of this study is to investigate the contribution of transmural heterogeneities in action potential duration (APD) to the mechanisms of cardiac vulnerability to electric shocks, in an attempt to better understand the mechanisms behind defibrillation failure. This study used a three-dimensional, geometrically accurate finite element bidomain model of the rabbit ventricles. Transmural heterogeneities in ionic currents were incorporated based on experimental data to generate the transmural APD profile recorded in adult rabbits during pacing. Results reveal that the upper limit of vulnerability (ULV) is 30.5V/cm and the vulnerable window (VW) extends from CI=120ms to CI=190ms. Examination of shock-end virtual electrode polarisation and postshock electrical activity reveals that increased dispersion in postshock repolarisation within the LV wall play a key role in the existence of the ULV whereas mechanisms underlying the existence of the VW are determined by shock-end refractoriness in the septum.
机译:本研究的目的是探讨透息异质性在动作潜在持续时间(APD)对电击的心脏脆弱性机制的贡献,以便更好地理解除颤失败背后的机制。这项研究使用了兔心室的三维,几何准确的有限元等寡族模型。基于实验数据掺入离子电流中的透射异质性,以在起搏期间产生成人兔中记录的透射APD曲线。结果表明,漏洞(ULV)的上限为30.5V / cm,易受伤害的窗口(VW)从CI = 120ms延伸到CI = 190ms。检查震动虚拟电极极化和后臂电活动显示,在LV壁内的骨折复合中的分散在LV壁内的增加在ulv存在的关键作用,而底层的机制由抗冲击耐火材料决定隔膜。

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