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What kind of noise is brain noise: anomalous scaling behavior of the resting brain activity fluctuations

机译:脑噪声是什么噪声:静息的大脑活动波动的异常缩放行为

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摘要

The study of spontaneous fluctuations of brain activity, often referred as brain noise, is getting increasing attention in functional magnetic resonance imaging (fMRI) studies. Despite important efforts, much of the statistical properties of such fluctuations remain largely unknown. This work scrutinizes these fluctuations looking at specific statistical properties which are relevant to clarify its dynamical origins. Here, three statistical features which clearly differentiate brain data from naive expectations for random processes are uncovered: First, the variance of the fMRI mean signal as a function of the number of averaged voxels remains constant across a wide range of observed clusters sizes. Second, the anomalous behavior of the variance is originated by bursts of synchronized activity across regions, regardless of their widely different sizes. Finally, the correlation length (i.e., the length at which the correlation strength between two regions vanishes) as well as mutual information diverges with the cluster's size considered, such that arbitrarily large clusters exhibit the same collective dynamics than smaller ones. These three properties are known to be exclusive of complex systems exhibiting critical dynamics, where the spatio-temporal dynamics show these peculiar type of fluctuations. Thus, these findings are fully consistent with previous reports of brain critical dynamics, and are relevant for the interpretation of the role of fluctuations and variability in brain function in health and disease.
机译:自发性脑活动波动(通常称为脑噪声)的研究在功能磁共振成像(fMRI)研究中受到越来越多的关注。尽管做出了很大的努力,但这种波动的许多统计属性仍然很大程度上未知。这项工作仔细研究了这些波动,并查看了与阐明其动态起源有关的特定统计属性。在这里,发现了三个统计特征,这些特征清楚地区分了大脑数据和对随机过程的幼稚期望:首先,在广泛观察到的簇尺寸范围内,fMRI平均信号的方差作为平均体素数量的函数保持恒定。其次,方差的异常行为是由跨区域同步活动的爆发引起的,而不管其大小差异很大。最后,相关长度(即两个区域之间的相关强度消失的长度)以及相互信息随所考虑的簇的大小而变化,使得任意大的簇表现出与较小的簇相同的集体动力学。众所周知,这三个特性不包括表现出临界动力学的复杂系统,时空动力学显示出这些特殊类型的波动。因此,这些发现与先前关于大脑关键动态的报道完全一致,并且与解释波动和变异性在健康和疾病中大脑功能的作用有关。

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