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评估人类癫痫皮质发作前单个神经元活动的关键特征。

Assessing criticality in pre-seizure single-neuron activity of human epileptic cortex.

机构信息

Max-Planck-Institute for Dynamics and Self-Organization, Göttingen, Germany.

Department of Epileptology, University of Bonn Medical Centre, Bonn, Germany.

出版信息

PLoS Comput Biol. 2021 Mar 8;17(3):e1008773. doi: 10.1371/journal.pcbi.1008773. eCollection 2021 Mar.

DOI:10.1371/journal.pcbi.1008773
PMID:33684101
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7971851/
Abstract

Epileptic seizures are characterized by abnormal and excessive neural activity, where cortical network dynamics seem to become unstable. However, most of the time, during seizure-free periods, cortex of epilepsy patients shows perfectly stable dynamics. This raises the question of how recurring instability can arise in the light of this stable default state. In this work, we examine two potential scenarios of seizure generation: (i) epileptic cortical areas might generally operate closer to instability, which would make epilepsy patients generally more susceptible to seizures, or (ii) epileptic cortical areas might drift systematically towards instability before seizure onset. We analyzed single-unit spike recordings from both the epileptogenic (focal) and the nonfocal cortical hemispheres of 20 epilepsy patients. We quantified the distance to instability in the framework of criticality, using a novel estimator, which enables an unbiased inference from a small set of recorded neurons. Surprisingly, we found no evidence for either scenario: Neither did focal areas generally operate closer to instability, nor were seizures preceded by a drift towards instability. In fact, our results from both pre-seizure and seizure-free intervals suggest that despite epilepsy, human cortex operates in the stable, slightly subcritical regime, just like cortex of other healthy mammalians.

摘要

癫痫发作的特征是异常和过度的神经活动,皮质网络动力学似乎变得不稳定。然而,在大多数没有发作的时期,癫痫患者的大脑皮层显示出完全稳定的动力学。这就提出了一个问题,即在这种稳定的默认状态下,反复发作的不稳定性是如何产生的。在这项工作中,我们研究了两种潜在的癫痫发作生成情况:(i)癫痫皮质区可能普遍更接近不稳定性,这将使癫痫患者更容易发生癫痫发作,或者(ii)癫痫皮质区可能在癫痫发作前系统地向不稳定性漂移。我们分析了 20 名癫痫患者的癫痫灶(局灶性)和非癫痫灶半球的单个神经元放电记录。我们在临界性框架中使用一种新的估计器来量化离不稳定性的距离,该估计器能够从小的神经元记录集进行无偏推断。令人惊讶的是,我们没有发现任何一种情况的证据:局灶区并没有普遍更接近不稳定性,也没有在癫痫发作前出现向不稳定性漂移的情况。事实上,我们从发作前和无发作间期的结果表明,尽管存在癫痫,人类大脑皮层仍处于稳定的、稍低于临界的状态,就像其他健康哺乳动物的皮层一样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f087/7971851/9677e940ea41/pcbi.1008773.g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f087/7971851/9ad50c4945d3/pcbi.1008773.g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f087/7971851/9677e940ea41/pcbi.1008773.g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f087/7971851/9ad50c4945d3/pcbi.1008773.g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f087/7971851/9677e940ea41/pcbi.1008773.g002.jpg

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