猴子运动皮层静息状态尖峰活动的复杂性研究。

Cerebral cortex communications Pub Date : 2021-05-18 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab033
Paulina Anna Dąbrowska, Nicole Voges, Michael von Papen, Junji Ito, David Dahmen, Alexa Riehle, Thomas Brochier, Sonja Grün
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引用次数: 0

摘要

静息状态已被确立为脑活动研究的经典范式,主要基于大规模测量,如功能性磁共振成像或脑磁图和脑电图。这个术语通常指的是一种行为状态,其特征是没有任何任务或刺激。相应的神经元活动通常被称为空闲或进行中。许多关于尖峰神经网络的建模研究声称可以模拟这种空闲状态,但将其结果与任务或刺激驱动的实验或麻醉受试者的实验结果进行比较。这两种方法都可能导致误导性的结论。为了提供适当的基础来比较生理和模拟的网络动力学,我们描述了同时记录的猴子运动皮层中单个神经元在休息时的峰值活动,并显示了自发和任务或刺激诱导的运动条件的差异。我们也区分睁着眼睛休息和闭着眼睛睡觉休息。与行为相关状态相比,睁开眼睛的静息状态表现出明显更高的维数、更低的放电率和更低的群体水平兴奋和抑制之间的平衡。
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On the Complexity of Resting State Spiking Activity in Monkey Motor Cortex.

Resting state has been established as a classical paradigm of brain activity studies, mostly based on large-scale measurements such as functional magnetic resonance imaging or magneto- and electroencephalography. This term typically refers to a behavioral state characterized by the absence of any task or stimuli. The corresponding neuronal activity is often called idle or ongoing. Numerous modeling studies on spiking neural networks claim to mimic such idle states, but compare their results with task- or stimulus-driven experiments, or to results from experiments with anesthetized subjects. Both approaches might lead to misleading conclusions. To provide a proper basis for comparing physiological and simulated network dynamics, we characterize simultaneously recorded single neurons' spiking activity in monkey motor cortex at rest and show the differences from spontaneous and task- or stimulus-induced movement conditions. We also distinguish between rest with open eyes and sleepy rest with eyes closed. The resting state with open eyes shows a significantly higher dimensionality, reduced firing rates, and less balance between population level excitation and inhibition than behavior-related states.

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