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幅度相关性对局部场电位相干性的影响。

Effect of amplitude correlations on coherence in the local field potential.

作者信息

Srinath Ramanujan, Ray Supratim

机构信息

Centre for Neuroscience, Indian Institute of Science, Bangalore, India.

Centre for Neuroscience, Indian Institute of Science, Bangalore, India

出版信息

J Neurophysiol. 2014 Aug 15;112(4):741-51. doi: 10.1152/jn.00851.2013. Epub 2014 Apr 30.

Abstract

Neural activity across the brain shows both spatial and temporal correlations at multiple scales, and understanding these correlations is a key step toward understanding cortical processing. Correlation in the local field potential (LFP) recorded from two brain areas is often characterized by computing the coherence, which is generally taken to reflect the degree of phase consistency across trials between two sites. Coherence, however, depends on two factors-phase consistency as well as amplitude covariation across trials-but the spatial structure of amplitude correlations across sites and its contribution to coherence are not well characterized. We recorded LFP from an array of microelectrodes chronically implanted in the primary visual cortex of monkeys and studied correlations in amplitude across electrodes as a function of interelectrode distance. We found that amplitude correlations showed a similar trend as coherence as a function of frequency and interelectrode distance. Importantly, even when phases were completely randomized between two electrodes, amplitude correlations introduced significant coherence. To quantify the contributions of phase consistency and amplitude correlations to coherence, we simulated pairs of sinusoids with varying phase consistency and amplitude correlations. These simulations confirmed that amplitude correlations can significantly bias coherence measurements, resulting in either over- or underestimation of true phase coherence. Our results highlight the importance of accounting for the correlations in amplitude while using coherence to study phase relationships across sites and frequencies.

摘要

大脑中的神经活动在多个尺度上都表现出空间和时间相关性,理解这些相关性是迈向理解皮层处理过程的关键一步。从两个脑区记录的局部场电位(LFP)中的相关性通常通过计算相干性来表征,相干性一般被认为反映了两个位点在不同试验之间的相位一致性程度。然而,相干性取决于两个因素——相位一致性以及不同试验间的幅度协变——但位点间幅度相关性的空间结构及其对相干性的贡献尚未得到很好的表征。我们从长期植入猴子初级视觉皮层的微电极阵列记录了LFP,并研究了电极间幅度相关性作为电极间距函数的情况。我们发现,幅度相关性作为频率和电极间距的函数,呈现出与相干性相似的趋势。重要的是,即使两个电极之间的相位完全随机化,幅度相关性也会引入显著的相干性。为了量化相位一致性和幅度相关性对相干性的贡献,我们模拟了具有不同相位一致性和幅度相关性的正弦波对。这些模拟证实,幅度相关性会显著影响相干性测量,导致对真实相位相干性的高估或低估。我们的结果强调了在使用相干性研究位点和频率间的相位关系时,考虑幅度相关性的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1794/4122739/8654fb964da5/z9k0141425120001.jpg

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