首页> 外文会议>Computing in Cardiology 2012.;vol. 39. >Computational analysis of extracellular calcium effects on an improved human ventricular action potential model
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Computational analysis of extracellular calcium effects on an improved human ventricular action potential model

机译:计算细胞外钙对改善的人心室动作电位模型的影响

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摘要

A decrease in extracellular calcium concentration ([Ca2+]o) prolongs the action potential (AP) in ventricular cardiomyocytes, and vice versa. Although this phenomenon can be relevant to arrhythmogenesis in clinical settings, it is not included in most of the commonly used computational models of ventricular AP. Therefore, the aim of this study has been to improve a recently published human ventricular model (O'Hara-Rudy, 2011), in order to reproduce the inverse relationship between [Ca2+]o and AP duration (APD). The original L-type Calcium current (ICaL) formulation has been replaced by a minimal Markov chain, developed on purpose. Some minor modifications were also implemented to preserve the physiological behavior of the whole cell and to maintain consistency with the experimental data reported in the original paper. Thus, the modified model can be used as a framework to explore the impact of [Ca2+]o imbalances on the myocyte electrical activity. Further modifications are foreseen to improve model behavior in a larger variety of contexts.
机译:细胞外钙浓度([Ca 2 + ] o )的降低会延长心室心肌细胞的动作电位(AP),反之亦然。尽管此现象可能与临床环境中的心律失常有关,但大多数心室AP的常用计算模型并未包括该现象。因此,本研究的目的是改进最近发表的人心室模型(O'Hara-Rudy,2011),以重现[Ca 2 + ] 之间的逆关系。 o 和AP持续时间(APD)。最初的L型钙电流(I CaL )配方已被有意开发的最小马尔可夫链取代。还进行了一些较小的修改,以保留整个细胞的生理行为,并与原始论文中报道的实验数据保持一致。因此,修改后的模型可以作为探索[Ca 2 + ] o 不平衡对肌细胞电活动影响的框架。可以预见将进行进一步的修改,以改善在更多情况下的模型行为。

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