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Spatio-temporal dynamics of alpha brain electric fields, and cognitive modes.

作者信息

Lehmann D, Koenig T

机构信息

KEY Institute for Brain-Mind Research, University Hospital of Psychiatry, CH-8029 Zürich, Switzerland.

出版信息

Int J Psychophysiol. 1997 Jun;26(1-3):99-112. doi: 10.1016/s0167-8760(97)00758-7.

DOI:10.1016/s0167-8760(97)00758-7
PMID:9202997
Abstract

Brain electric activity is viewed as sequences of momentary maps of potential distribution. Frequency-domain source modeling, estimation of the complexity of the trajectory of the mapped brain field distribution in state space, and microstate parsing were used as analysis tools. Input-presentation as well as task-free (spontaneous thought) data collection paradigms were employed. We found: Alpha EEG field strength is more affected by visualizing mentation than by abstract mentation, both input-driven as well as self-generated. There are different neuronal populations and brain locations of the electric generators for different temporal frequencies of the brain field. Different alpha frequencies execute different brain functions as revealed by canonical correlations with mentation profiles. Different modes of mentation engage the same temporal frequencies at different brain locations. The basic structure of alpha electric fields implies inhomogeneity over time-alpha consists of concatenated global microstates in the sub-second range, characterized by quasi-stable field topographics, and rapid transitions between the microstates. In general, brain activity is strongly discontinuous, indicating that parsing into field landscape-defined microstates is appropriate. Different modes of spontaneous and induced mentation are associated with different brain electric microstates; these are proposed as candidates for psychophysiological 'atoms of thought'.

摘要

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