State-dependent brain responsiveness, from local circuits to the whole brain

Fuente: arXiv
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Autores principales: Destexhe, A., Goldman, J, Tort-Colet, N., Roques, A., Fousek, J., Petkoski, S., Jirsa, V., David, O., Jedynak, M., Capone, C., De Luca, C., De Bonis, G., Paolucci, P. S., Mikulan, E., Pigorini, Massimini, M, Galluzzi, A., Pazienti, A., Mattia, M., Arena, A., Juel, B. E., Hagen, E., Storm, J. F., Montagni, E., Resta, F., Pavone, F. S., Mascaro, A. L. Allegra, Dwarakanath, A., Panagiotaropoulos, T. I., Senk, J., Diesmann, M., Camassa, A., Porta, L. Dalla, Manasanch, A., Sanchez-Vives, M. V.
Formato: Preprint
Publicado: 2025
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author Destexhe, A.
Goldman, J
Tort-Colet, N.
Roques, A.
Fousek, J.
Petkoski, S.
Jirsa, V.
David, O.
Jedynak, M.
Capone, C.
De Luca, C.
De Bonis, G.
Paolucci, P. S.
Mikulan, E.
Pigorini
Massimini, M
Galluzzi, A.
Pazienti, A.
Mattia, M.
Arena, A.
Juel, B. E.
Hagen, E.
Storm, J. F.
Montagni, E.
Resta, F.
Pavone, F. S.
Mascaro, A. L. Allegra
Dwarakanath, A.
Panagiotaropoulos, T. I.
Senk, J.
Diesmann, M.
Camassa, A.
Porta, L. Dalla
Manasanch, A.
Sanchez-Vives, M. V.
author_facet Destexhe, A.
Goldman, J
Tort-Colet, N.
Roques, A.
Fousek, J.
Petkoski, S.
Jirsa, V.
David, O.
Jedynak, M.
Capone, C.
De Luca, C.
De Bonis, G.
Paolucci, P. S.
Mikulan, E.
Pigorini
Massimini, M
Galluzzi, A.
Pazienti, A.
Mattia, M.
Arena, A.
Juel, B. E.
Hagen, E.
Storm, J. F.
Montagni, E.
Resta, F.
Pavone, F. S.
Mascaro, A. L. Allegra
Dwarakanath, A.
Panagiotaropoulos, T. I.
Senk, J.
Diesmann, M.
Camassa, A.
Porta, L. Dalla
Manasanch, A.
Sanchez-Vives, M. V.
contents The objective of this paper is to review physiological and computational aspects of the responsiveness of the cerebral cortex to stimulation, and how responsiveness depends on the state of the system. This correspondence between brain state and brain responsiveness (state-dependent responses) is outlined at different scales from the cellular and circuit level, to the mesoscale and macroscale level. At each scale, we review how quantitative methods can be used to characterize network states based on brain responses, such as the Perturbational Complexity Index (PCI). This description will compare data and models, systematically and at multiple scales, with a focus on the mechanisms that explain how brain responses depend on brain states.
format Preprint
id arxiv_https___arxiv_org_abs_2510_07956
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle State-dependent brain responsiveness, from local circuits to the whole brain
Destexhe, A.
Goldman, J
Tort-Colet, N.
Roques, A.
Fousek, J.
Petkoski, S.
Jirsa, V.
David, O.
Jedynak, M.
Capone, C.
De Luca, C.
De Bonis, G.
Paolucci, P. S.
Mikulan, E.
Pigorini
Massimini, M
Galluzzi, A.
Pazienti, A.
Mattia, M.
Arena, A.
Juel, B. E.
Hagen, E.
Storm, J. F.
Montagni, E.
Resta, F.
Pavone, F. S.
Mascaro, A. L. Allegra
Dwarakanath, A.
Panagiotaropoulos, T. I.
Senk, J.
Diesmann, M.
Camassa, A.
Porta, L. Dalla
Manasanch, A.
Sanchez-Vives, M. V.
Neurons and Cognition
The objective of this paper is to review physiological and computational aspects of the responsiveness of the cerebral cortex to stimulation, and how responsiveness depends on the state of the system. This correspondence between brain state and brain responsiveness (state-dependent responses) is outlined at different scales from the cellular and circuit level, to the mesoscale and macroscale level. At each scale, we review how quantitative methods can be used to characterize network states based on brain responses, such as the Perturbational Complexity Index (PCI). This description will compare data and models, systematically and at multiple scales, with a focus on the mechanisms that explain how brain responses depend on brain states.
title State-dependent brain responsiveness, from local circuits to the whole brain
topic Neurons and Cognition
url https://arxiv.org/abs/2510.07956