Cortex-wide neural dynamics predict behavioral states and provide a neural basis for resting-state dynamic functional connectivity

Shahsavarani, S., Thibodeaux, D. N., Xu, W., Kim, S. H., Lodgher, F., Nwokeabia, C., Cambareri, M., Yagielski, A. J., Zhao, H. T., Handwerker, D. A., Gonzalez-Castillo, J., Bandettini, P. A., & Hillman, E. M. C. (2023). Cortex-wide neural dynamics predict behavioral states and provide a neural basis for resting-state dynamic functional connectivity. Cell Reports, 42(6), 112527. https://doi.org/10.1016/j.celrep.2023.112527
Authors:
Somayeh Shahsavarani
David N. Thibodeaux
Weihao Xu
Sharon Kim
Fatema Lodgher
Chinwendu Nwokeabia
Morgan K. Cambareri
Alexis J. Yagielski
Hanzhi Zhao
Daniel A. Handwerker
Javier González-Castillo
Peter A. Bandettini
Elizabeth M. C. Hillman
Affiliated Authors:
Somayeh Shahsavarani
David N. Thibodeaux
Weihao Xu
Sharon Kim
Fatema Lodgher
Chinwendu Nwokeabia
Morgan K. Cambareri
Alexis J. Yagielski
Hanzhi Zhao
Elizabeth M. C. Hillman
Author Keywords:
arousal
brain state
calcium imaging
cp: neuroscience
dynamic functional connectivity
functional topography
neurovascular coupling
real-time behavior
resting state
spatiotemporal correlation
wide-field optical mapping
Publication Type:
Article
Unique ID:
10.1016/j.celrep.2023.112527
PMID:
Journal:
Publication Date:
Data Source:
OpenAlex

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