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Methods for identification of spike patterns in massively parallel spike trains

机译:大规模平行峰值列车中峰值模式的识别方法

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摘要

Temporally, precise correlations between simultaneously recorded neurons have been interpreted as signatures of cell assemblies, i.e., groups of neurons that form processing units. Evidence for this hypothesis was found on the level of pairwise correlations in simultaneous recordings of few neurons. Increasing the number of simultaneously recorded neurons increases the chances to detect cell assembly activity due to the larger sample size. Recent technological advances have enabled the recording of 100 or more neurons in parallel. However, these massively parallel spike train data require novel statistical tools to be analyzed for correlations, because they raise considerable combinatorial and multiple testing issues. Recently, various of such methods have started to develop. First approaches were based on population or pairwise measures of synchronization, and later led to methods for the detection of various types of higher-order synchronization and of spatio-temporal patterns. The latest techniques combine data mining with analysis of statistical significance. Here, we give a comparative overview of these methods, of their assumptions and of the types of correlations they can detect.Electronic supplementary materialThe online version of this article (10.1007/s00422-018-0755-0) contains supplementary material, which is available to authorized users.
机译:暂时地,同时记录的神经元之间的精确相关性已被解释为细胞装配体(即形成处理单元的神经元组)的特征。在少数神经元的同时记录中,成对相关的水平得到了这一假设的证据。由于更大的样本量,增加了同时记录的神经元的数量,从而增加了检测细胞装配活动的机会。最近的技术进步使得能够并行记录100个或更多的神经元。但是,这些大规模并行的峰值训练数据需要新颖的统计工具进行相关性分析,因为它们引发了相当大的组合和多重测试问题。近来,各种这样的方法已经开始发展。第一种方法基于同步的总体或成对度量,后来导致了用于检测各种类型的高阶同步和时空模式的方法。最新技术将数据挖掘与统计意义分析相结合。在这里,我们对这些方法,它们的假设以及可以检测到的相关类型进行比较概述。电子补充材料本文的在线版本(10.1007 / s00422-018-0755-0)包含补充材料,可以通过以下途径获得给授权用户。

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