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人类大脑皮层的空间和时间相关性本质上是由功能层次、警觉状态以及抗癫痫药物负荷所联系和预测的。

Spatial and temporal correlations in human cortex are inherently linked and predicted by functional hierarchy, vigilance state as well as antiepileptic drug load.

机构信息

Computational Neurology Lab, Department of Neurology, Charité-Universitätsmedizin Berlin, Berlin, Germany.

Berlin Institute of Health, Berlin, Germany.

出版信息

PLoS Comput Biol. 2023 Mar 3;19(3):e1010919. doi: 10.1371/journal.pcbi.1010919. eCollection 2023 Mar.

DOI:10.1371/journal.pcbi.1010919
PMID:36867652
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10027224/
Abstract

The ability of neural circuits to integrate information over time and across different cortical areas is believed an essential ingredient for information processing in the brain. Temporal and spatial correlations in cortex dynamics have independently been shown to capture these integration properties in task-dependent ways. A fundamental question remains if temporal and spatial integration properties are linked and what internal and external factors shape these correlations. Previous research on spatio-temporal correlations has been limited in duration and coverage, thus providing only an incomplete picture of their interdependence and variability. Here, we use long-term invasive EEG data to comprehensively map temporal and spatial correlations according to cortical topography, vigilance state and drug dependence over extended periods of time. We show that temporal and spatial correlations in cortical networks are intimately linked, decline under antiepileptic drug action, and break down during slow-wave sleep. Further, we report temporal correlations in human electrophysiology signals to increase with the functional hierarchy in cortex. Systematic investigation of a neural network model suggests that these dynamical features may arise when dynamics are poised near a critical point. Our results provide mechanistic and functional links between specific measurable changes in the network dynamics relevant for characterizing the brain's changing information processing capabilities.

摘要

神经回路随时间和跨不同皮层区域整合信息的能力被认为是大脑信息处理的重要组成部分。皮质动力学中的时间和空间相关性已被独立证明以任务依赖的方式捕获这些整合特性。一个基本问题仍然存在,即时间和空间整合特性是否相关联,以及内部和外部因素如何塑造这些相关性。以前关于时空相关性的研究在持续时间和覆盖范围上受到限制,因此仅提供了它们相互依赖性和可变性的不完整图景。在这里,我们使用长期的侵入性 EEG 数据,根据皮质拓扑结构、警觉状态和药物依赖,在长时间内全面绘制根据皮质拓扑结构、警觉状态和药物依赖的时间和空间相关性图谱。我们表明,皮质网络中的时间和空间相关性密切相关,在抗癫痫药物作用下下降,并在慢波睡眠期间崩溃。此外,我们报告说,人类电生理学信号中的时间相关性随着皮质中的功能层次结构而增加。对神经网络模型的系统研究表明,当动力学接近临界点时,这些动态特征可能会出现。我们的结果提供了网络动力学中特定可测量变化与表征大脑不断变化的信息处理能力之间的机制和功能联系。

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Spatial and temporal correlations in human cortex are inherently linked and predicted by functional hierarchy, vigilance state as well as antiepileptic drug load.人类大脑皮层的空间和时间相关性本质上是由功能层次、警觉状态以及抗癫痫药物负荷所联系和预测的。
PLoS Comput Biol. 2023 Mar 3;19(3):e1010919. doi: 10.1371/journal.pcbi.1010919. eCollection 2023 Mar.
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Correction: Spatial and temporal correlations in human cortex are inherently linked and predicted by functional hierarchy, vigilance state as well as antiepileptic drug load.更正:人类皮层中的空间和时间相关性本质上是相互关联的,并由功能层次、警觉状态以及抗癫痫药物负荷所预测。
PLoS Comput Biol. 2023 Apr 27;19(4):e1011094. doi: 10.1371/journal.pcbi.1011094. eCollection 2023 Apr.

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本文引用的文献

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Correction: Spatial and temporal correlations in human cortex are inherently linked and predicted by functional hierarchy, vigilance state as well as antiepileptic drug load.更正:人类皮层中的空间和时间相关性本质上是相互关联的,并由功能层次、警觉状态以及抗癫痫药物负荷所预测。
PLoS Comput Biol. 2023 Apr 27;19(4):e1011094. doi: 10.1371/journal.pcbi.1011094. eCollection 2023 Apr.
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