Signatures of brain criticality unveiled by maximum entropy analysis across cortical states

It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal avalanches, can depend on the cortical state. We revisit these claims with a completely different and independent approach, employing a maximum entropy model to test whether signat...

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Published inarXiv.org
Main Authors Lotfi, Nastaran, Fontenele, Antonio J, Feliciano, Thaís, Aguiar, Leandro A A, Nivaldo A P de Vasconcelos, Soares-Cunha, Carina, Coimbra, Bárbara, Ana João Rodrigues, Sousa, Nuno, Copelli, Mauro, Carelli, Pedro V
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LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 29.01.2020
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Abstract It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal avalanches, can depend on the cortical state. We revisit these claims with a completely different and independent approach, employing a maximum entropy model to test whether signatures of criticality appear in urethane-anesthetized rats. To account for the spontaneous variation of cortical state, we parse the time series and perform the maximum entropy analysis as a function of the variability of the population spiking activity. To compare data sets with different number of neurons, we define a normalized distance to criticality that takes into account the peak and width of the specific heat curve. We found an universal collapse of the normalized distance to criticality dependence on the cortical state on an animal by animal basis. This indicates a universal dynamics and a critical point at an intermediate value of spiking variability.
AbstractList It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal avalanches, can depend on the cortical state. We revisit these claims with a completely different and independent approach, employing a maximum entropy model to test whether signatures of criticality appear in urethane-anesthetized rats. To account for the spontaneous variation of cortical state, we parse the time series and perform the maximum entropy analysis as a function of the variability of the population spiking activity. To compare data sets with different number of neurons, we define a normalized distance to criticality that takes into account the peak and width of the specific heat curve. We found an universal collapse of the normalized distance to criticality dependence on the cortical state on an animal by animal basis. This indicates a universal dynamics and a critical point at an intermediate value of spiking variability.
Phys. Rev. E 102, 012408 (2020) It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal avalanches, can depend on the cortical state. We revisit these claims with a completely different and independent approach, employing a maximum entropy model to test whether signatures of criticality appear in urethane-anesthetized rats. To account for the spontaneous variation of cortical state, we parse the time series and perform the maximum entropy analysis as a function of the variability of the population spiking activity. To compare data sets with different number of neurons, we define a normalized distance to criticality that takes into account the peak and width of the specific heat curve. We found an universal collapse of the normalized distance to criticality dependence on the cortical state on an animal by animal basis. This indicates a universal dynamics and a critical point at an intermediate value of spiking variability.
Author Nivaldo A P de Vasconcelos
Feliciano, Thaís
Soares-Cunha, Carina
Aguiar, Leandro A A
Coimbra, Bárbara
Ana João Rodrigues
Sousa, Nuno
Fontenele, Antonio J
Carelli, Pedro V
Copelli, Mauro
Lotfi, Nastaran
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BackLink https://doi.org/10.48550/arXiv.2001.11080$$DView paper in arXiv
https://doi.org/10.1103/PhysRevE.102.012408$$DView published paper (Access to full text may be restricted)
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Snippet It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal avalanches, can depend on the cortical...
Phys. Rev. E 102, 012408 (2020) It has recently been reported that statistical signatures of brain criticality, obtained from distributions of neuronal...
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SubjectTerms Avalanches
Brain
Collapse
Critical point
Entropy
Maximum entropy
Model testing
Physics - Biological Physics
Quantitative Biology - Neurons and Cognition
Signatures
Spiking
Variability
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Title Signatures of brain criticality unveiled by maximum entropy analysis across cortical states
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