首页> 外文会议>Computers in Cardiology, 2009 >Ionic basis of arrhythmic risk biomarkers on simulated rabbit ventricular myocytes
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Ionic basis of arrhythmic risk biomarkers on simulated rabbit ventricular myocytes

机译:模拟兔心室肌细胞中心律失常危险生物标志物的离子基础

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Cardiac proarrhythmic risk can be estimated considering several biomarkers based on electrophysiological properties. The aim of this work is to identify the key ionic mechanisms predicting arrhythmia generation in rabbit hearts at the cellular level. For this purpose, the sensitivity of action potential (AP) duration (APD), AP triangulation, AP rate dependence and intracellular calcium and sodium levels to variations in transmembrane ionic current conductances was analyzed. Simulations show that, in rabbit, APD is moderately influenced by changes in all repolarization current conductances, highlighting INaK, ICaL and IKr. AP triangulation, however, is basically determined by IKl and IKr. In addition, AP rate dependence is especially sensitive to INaK, INaCa, IKr and ICaL. Furthermore, intracellular calcium and sodium levels are highly determined by ICaL, INaK and INaCa.
机译:可以考虑几种基于电生理特性的生物标志物来评估心脏心律失常的风险。这项工作的目的是在细胞水平上确定预测兔心律失常产生的关键离子机制。为此,分析了动作电位(AP)持续时间(APD),AP三角测量,AP速率依赖性以及细胞内钙和钠水平对跨膜离子电流电导变化的敏感性。模拟表明,在兔子中,APD受所有复极电流电导变化的中等影响,突出显示了I NaK ,I CaL 和I Kr 。但是,AP三角剖分基本上由I Kl 和I Kr 决定。此外,AP速率依赖性对I NaK ,I NaCa ,I Kr 和I CaL 尤其敏感。此外,细胞内钙和钠的水平由I CaL ,I NaK 和I NaCa 高度确定。

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