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Independent Components of Neural Activity Carry Information on Individual Populations

机译:神经活动的独立成分承载着各个人群的信息

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摘要

Local field potential (LFP), the low-frequency part of the potential recorded extracellularly in the brain, reflects neural activity at the population level. The interpretation of LFP is complicated because it can mix activity from remote cells, on the order of millimeters from the electrode. To understand better the relation between the recordings and the local activity of cells we used a large-scale network thalamocortical model to compute simultaneous LFP, transmembrane currents, and spiking activity. We used this model to study the information contained in independent components obtained from the reconstructed Current Source Density (CSD), which smooths transmembrane currents, decomposed further with Independent Component Analysis (ICA). We found that the three most robust components matched well the activity of two dominating cell populations: superior pyramidal cells in layer 2/3 (rhythmic spiking) and tufted pyramids from layer 5 (intrinsically bursting). The pyramidal population from layer 2/3 could not be well described as a product of spatial profile and temporal activation, but by a sum of two such products which we recovered in two of the ICA components in our analysis, which correspond to the two first principal components of PCA decomposition of layer 2/3 population activity. At low noise one more cell population could be discerned but it is unlikely that it could be recovered in experiment given typical noise ranges.
机译:局部电场电位(LFP)是大脑细胞外记录的电位的低频部分,反映了人口水平的神经活动。 LFP的解释很复杂,因为它可以混合来自远程细胞的活动,距离电极约几毫米。为了更好地了解记录与细胞局部活性之间的关系,我们使用了大规模的脑丘脑皮层模型来计算同时的LFP,跨膜电流和尖峰活动。我们使用该模型研究了从重构电流源密度(CSD)获得的独立成分中包含的信息,该成分使跨膜电流变得平滑,并通过独立成分分析(ICA)进行了进一步分解。我们发现,三个最坚固的组件与两个主要细胞群体的活性非常匹配:2/3层中的上层锥体细胞(节律性尖刺)和第5层中的簇状金字塔(内在破裂)。来自第2/3层的金字塔状种群不能很好地描述为空间轮廓和时间激活的乘积,而是由我们在分析中的两个ICA分量中回收的两个这样的乘积之和得出,这两个分量对应于第一个PCA分解的第2/3层人口活动的主要成分。在低噪声下,可以识别出更多的细胞群,但是在给定典型噪声范围的情况下,不可能在实验中将其恢复。

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