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A Global Sensitivity Index for Biophysically Detailed Cardiac Cell Models: A Computational Approach

机译:生理学上详细的心脏细胞模型的全球敏感性指数:一种计算方法。

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Biophysically detailed cardiac cell models are based upon stiff ordinary differential equations describing ionic channels and intracellular dynamics aiming at reproducing experimental action potentials (APs) andrnintracellular calcium ([Ca~(2+)]_i) transients. Channel blocking and bifurcationrnanalyses are local sensitivity analyses in model parameter space. However, all parameters influence model behaviour and require a global sensitivity index quantifying the influence of parameters on model responses. Identification of the influence of individual parameters increases our understanding of models. A global parameter sensitivity index for assessing the sensitivity of model responses to parameters in cardiac cell models is proposed. The robust index was applied to four widely used models. The analysis revealed thatrnwhilst models have common sets of parameters influencing AP and [Ca~(2+)]_irntransients, there are subtle differences. This sensitivity analysis offers a systematic method for quantifying the influence of individual parameters on model behaviour to assist in model reduction, refinement or development.
机译:生物学上详细的心脏细胞模型基于描述离子通道和细胞内动力学的刚性常微分方程,旨在再现实验动作电位(APs)和细胞内钙([Ca〜(2 +)] _ i)瞬变。通道阻塞和分叉分析是模型参数空间中的局部灵敏度分析。但是,所有参数都会影响模型行为,并且需要全局敏感性指数来量化参数对模型响应的影响。识别各个参数的影响会增加我们对模型的理解。提出了用于评估模型对心脏细胞模型中参数的敏感性的全局参数敏感性指数。鲁棒指数已应用于四个广泛使用的模型。分析表明,最惠氏模型具有影响AP和[Ca〜(2 +)] _ irn瞬态的通用参数集,存在细微的差异。这种敏感性分析提供了一种系统的方法,用于量化各个参数对模型行为的影响,以帮助模型简化,完善或开发。

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