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Hodgkin–Huxley revisited: reparametrization and identifiability analysis of the classic action potential model with approximate Bayesian methods

机译:重温霍奇金-赫克斯利:经典贝叶斯方法对经典动作电位模型的重新参数化和可识别性分析

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摘要

As cardiac cell models become increasingly complex, a correspondingly complex ‘genealogy’ of inherited parameter values has also emerged. The result has been the loss of a direct link between model parameters and experimental data, limiting both reproducibility and the ability to re-fit to new data. We examine the ability of approximate Bayesian computation (ABC) to infer parameter distributions in the seminal action potential model of Hodgkin and Huxley, for which an immediate and documented connection to experimental results exists. The ability of ABC to produce tight posteriors around the reported values for the gating rates of sodium and potassium ion channels validates the precision of this early work, while the highly variable posteriors around certain voltage dependency parameters suggests that voltage clamp experiments alone are insufficient to constrain the full model. Despite this, Hodgkin and Huxley's estimates are shown to be competitive with those produced by ABC, and the variable behaviour of posterior parametrized models under complex voltage protocols suggests that with additional data the model could be fully constrained. This work will provide the starting point for a full identifiability analysis of commonly used cardiac models, as well as a template for informative, data-driven parametrization of newly proposed models.
机译:随着心脏细胞模型变得越来越复杂,遗传参数值的相应复杂“谱系”也出现了。结果是模型参数和实验数据之间失去了直接联系,从而限制了再现性和重新适应新数据的能力。我们研究了近似贝叶斯计算(ABC)推断Hodgkin和Huxley精液动作电位模型中参数分布的能力,为此,存在与实验结果的直接且有据可查的联系。 ABC在钠和钾离子通道门控速率的报告值附近产生紧密后验的能力验证了这项早期工作的准确性,而在某些电压依赖性参数附近的高度后验表明,仅电压钳制实验不足以约束完整的模型。尽管如此,Hodgkin和Huxley的估计与ABC产生的估计相比具有竞争力,并且在复杂电压协议下后参数化模型的可变行为表明,使用附加数据可以完全限制该模型。这项工作将为常用的心脏模型的全面可识别性分析提供起点,并为新提出的模型提供信息丰富的,数据驱动的参数化提供模板。

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