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用累积损伤分布对神经活动进行建模。

Modeling neural activity with cumulative damage distributions.

作者信息

Leiva Víctor, Tejo Mauricio, Guiraud Pierre, Schmachtenberg Oliver, Orio Patricio, Marmolejo-Ramos Fernando

机构信息

Faculty of Engineering and Sciences, Universidad Adolfo Ibáñez, Viña del Mar, Chile.

Institute of Statistics, Universidad de Valparaiso, Valparaiso, Chile.

出版信息

Biol Cybern. 2015 Oct;109(4-5):421-33. doi: 10.1007/s00422-015-0651-9. Epub 2015 May 22.

Abstract

Neurons transmit information as action potentials or spikes. Due to the inherent randomness of the inter-spike intervals (ISIs), probabilistic models are often used for their description. Cumulative damage (CD) distributions are a family of probabilistic models that has been widely considered for describing time-related cumulative processes. This family allows us to consider certain deterministic principles for modeling ISIs from a probabilistic viewpoint and to link its parameters to values with biological interpretation. The CD family includes the Birnbaum-Saunders and inverse Gaussian distributions, which possess distinctive properties and theoretical arguments useful for ISI description. We expand the use of CD distributions to the modeling of neural spiking behavior, mainly by testing the suitability of the Birnbaum-Saunders distribution, which has not been studied in the setting of neural activity. We validate this expansion with original experimental and simulated electrophysiological data.

摘要

神经元通过动作电位或脉冲来传递信息。由于脉冲间隔(ISI)存在固有的随机性,概率模型常被用于对其进行描述。累积损伤(CD)分布是一类概率模型,已被广泛用于描述与时间相关的累积过程。这类模型使我们能够从概率角度考虑某些确定性原理来对ISI进行建模,并将其参数与具有生物学意义的值联系起来。CD模型族包括Birnbaum-Saunders分布和逆高斯分布,它们具有独特的性质和理论依据,有助于描述ISI。我们将CD分布的应用扩展到神经脉冲行为的建模中,主要是通过测试Birnbaum-Saunders分布的适用性,该分布在神经活动领域尚未得到研究。我们用原始实验数据和模拟电生理数据验证了这种扩展应用。

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