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Neurophysiological signatures of cortical micro-architecture
by
Baillet, Sylvain
, Shafiei, Golia
, Voytek, Bradley
, Misic, Bratislav
, Fulcher, Ben D.
, Satterthwaite, Theodore D.
in
631/378/116/1925
/ 631/378/116/2392
/ Architecture
/ Attention
/ Brain - physiology
/ Brain Mapping
/ Cell differentiation
/ Computer architecture
/ Cortex
/ Dynamics
/ Gene expression
/ Glucose metabolism
/ Humanities and Social Sciences
/ Humans
/ Magnetoencephalography
/ Metabolism
/ multidisciplinary
/ Myelin
/ Neurophysiology
/ Neurotransmitter receptors
/ Neurotransmitters
/ Receptors
/ Receptors, Neurotransmitter
/ Science
/ Science (multidisciplinary)
/ Spatial variations
/ Time series
2023
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Neurophysiological signatures of cortical micro-architecture
by
Baillet, Sylvain
, Shafiei, Golia
, Voytek, Bradley
, Misic, Bratislav
, Fulcher, Ben D.
, Satterthwaite, Theodore D.
in
631/378/116/1925
/ 631/378/116/2392
/ Architecture
/ Attention
/ Brain - physiology
/ Brain Mapping
/ Cell differentiation
/ Computer architecture
/ Cortex
/ Dynamics
/ Gene expression
/ Glucose metabolism
/ Humanities and Social Sciences
/ Humans
/ Magnetoencephalography
/ Metabolism
/ multidisciplinary
/ Myelin
/ Neurophysiology
/ Neurotransmitter receptors
/ Neurotransmitters
/ Receptors
/ Receptors, Neurotransmitter
/ Science
/ Science (multidisciplinary)
/ Spatial variations
/ Time series
2023
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Do you wish to request the book?
Neurophysiological signatures of cortical micro-architecture
by
Baillet, Sylvain
, Shafiei, Golia
, Voytek, Bradley
, Misic, Bratislav
, Fulcher, Ben D.
, Satterthwaite, Theodore D.
in
631/378/116/1925
/ 631/378/116/2392
/ Architecture
/ Attention
/ Brain - physiology
/ Brain Mapping
/ Cell differentiation
/ Computer architecture
/ Cortex
/ Dynamics
/ Gene expression
/ Glucose metabolism
/ Humanities and Social Sciences
/ Humans
/ Magnetoencephalography
/ Metabolism
/ multidisciplinary
/ Myelin
/ Neurophysiology
/ Neurotransmitter receptors
/ Neurotransmitters
/ Receptors
/ Receptors, Neurotransmitter
/ Science
/ Science (multidisciplinary)
/ Spatial variations
/ Time series
2023
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Neurophysiological signatures of cortical micro-architecture
Journal Article
Neurophysiological signatures of cortical micro-architecture
2023
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Overview
Systematic spatial variation in micro-architecture is observed across the cortex. These micro-architectural gradients are reflected in neural activity, which can be captured by neurophysiological time-series. How spontaneous neurophysiological dynamics are organized across the cortex and how they arise from heterogeneous cortical micro-architecture remains unknown. Here we extensively profile regional neurophysiological dynamics across the human brain by estimating over 6800 time-series features from the resting state magnetoencephalography (MEG) signal. We then map regional time-series profiles to a comprehensive multi-modal, multi-scale atlas of cortical micro-architecture, including microstructure, metabolism, neurotransmitter receptors, cell types and laminar differentiation. We find that the dominant axis of neurophysiological dynamics reflects characteristics of power spectrum density and linear correlation structure of the signal, emphasizing the importance of conventional features of electromagnetic dynamics while identifying additional informative features that have traditionally received less attention. Moreover, spatial variation in neurophysiological dynamics is co-localized with multiple micro-architectural features, including gene expression gradients, intracortical myelin, neurotransmitter receptors and transporters, and oxygen and glucose metabolism. Collectively, this work opens new avenues for studying the anatomical basis of neural activity.
How neurophysiological dynamics are organized across the cortex and their relationship with cortical micro-architecture is not well understood. Here, the authors find the dominant axis of neurophysiological dynamics reflects characteristics of the power spectrum and the linear correlation structure of the signal, and that spatial variation in neurophysiological dynamics is colocalized with multiple micro-architectural features.
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