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Block coherence: a method for measuring the interdependence between two blocks of neurobiological time series

机译:块一致性:一种测量神经生物学时间序列的两个块之间相互依赖性的方法

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Multisensor recordings are becoming commonplace. When studying functional connectivity between different brain areas using such recordings, one defines regions of interest, and each region of interest is often characterized by a set (block) of time series. Presently, for two such regions, the interdependence is typically computed by estimating the ordinary coherence for each pair of individual time series and then summing or averaging the results over all such pairs of channels (one from block 1 and other from block 2). The aim of this paper is to generalize the concept of coherence so that it can be computed for two blocks of non-overlapping time series. This quantity, called block coherence, is first shown mathematically to have properties similar to that of ordinary coherence, and then applied to analyze local field potential recordings from a monkey performing a visuomotor task. It is found that an increase in block coherence between the channels from V4 region and the channels from prefrontal region in beta band leads to a decrease in response time.
机译:多传感器记录正变得司空见惯。当使用这样的记录研究不同大脑区域之间的功能连接时,一个定义了感兴趣的区域,并且每个感兴趣的区域通常由一组时间序列(块)来表征。当前,对于两个这样的区域,通常通过估计每对独立时间序列的普通相干性,然后求和或平均所有所有这样的通道对上的结果(一个来自块1,另一个来自块2)来计算相互依赖性。本文的目的是概括相干的概念,以便可以为两个不重叠的时间序列块计算相干。首先,以数学方式显示此数量(称为块相关性),具有与普通相干性相似的性质,然后将其应用于分析来自执行粘性运动任务的猴子的局部场电势记录。发现在β带中来自V4区域的通道和来自前额叶区域的通道之间的块相干性增加导致响应时间减少。

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