首页> 外文期刊>Network >A unified description of cerebellar inter-spike interval distributions and variabilities using summation of Gaussians
【24h】

A unified description of cerebellar inter-spike interval distributions and variabilities using summation of Gaussians

机译:使用高斯求和的小脑峰间间隔和变异性的统一描述

获取原文
获取原文并翻译 | 示例
       

摘要

Neuronal inter-spike intervals (ISIs) have previously been described as Poisson, Gamma, inverse Gaussian or other unimodal distributions. We analyzed ISIs of rhythmic and arrhythmic neuronal spike trains in cerebellum recorded from freely behaving rats, and found that their distributions can be described as the summation or integration of multiple Gaussian distributions. The ISIs of rhythmic cerebellar Purkinje cells have a main Gaussian peak at a basic firing interval and exponentially reduced peaks at multiples of this firing period. ISIs of arrhythmic Purkinje cells can be modeled as the integration of multiple Gaussian distributions centered at continuous intervals with exponentially reduced peak amplitudes. The sources of variability are directly related to the relative timing of action potentials between neighboring cells since we show that irregularities of discharge in one cell are associated with the previous history of its discharge in time relative to another cell. Through relative phase analyses, we demonstrate that the shape and the mathematical form of the ISI distributions in cerebellum are direct result of dynamic interactions in the nearby neuronal network, in addition to intrinsic firing properties. The analysis in this paper provides a unified description of cerebellar inter-spike interval distributions which deviate from the usual Poisson assumptions. Our results suggest the existence of an intrinsic rhythmicity in cells exhibiting arrhythmic spike trains in cerebellum, and may identify an important source of variability in neuronal firing patterns that is relevant to the mechanism of neural computation in cerebellum.
机译:神经元峰值间间隔(ISI)先前已被描述为泊松,伽马,高斯逆或其他单峰分布。我们分析了自由行为大鼠记录的小脑节律性和心律失常性神经元棘突序列的ISI,发现它们的分布可以描述为多个高斯分布的求和或积分。有节奏的小脑浦肯野细胞的ISI在一个基本的发射间隔内有一个主要的高斯峰,在这个发射周期的倍数上有一个呈指数下降的峰。心律不齐的浦肯野细胞的ISI可以建模为以连续间隔为中心的多个高斯分布的积分,并且峰值幅度呈指数减小。可变性的来源与相邻细胞之间的动作电位的相对时间直接相关,因为我们表明一个细胞中放电的不规则性与其相对于另一个细胞在时间上的放电先前的历史有关。通过相对相位分析,我们证明了小脑中ISI分布的形状和数学形式,除了固有的发射特性外,还是邻近神经元网络中动态相互作用的直接结果。本文的分析提供了与通常的Poisson假设不同的小脑峰间间隔分布的统一描述。我们的结果表明小脑中表现出心律不齐训练的细胞中存在固有的节律性,并可能确定神经元放电模式变异的重要来源,这与小脑神经计算的机制有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号