Publication:
Neural Systems Under Change of Scale

Date

Date

Date
2021
Journal Article
Published version
cris.lastimport.scopus2025-06-13T03:35:38Z
cris.lastimport.wos2025-07-25T01:33:59Z
dc.contributor.institutionUniversity of Zurich
dc.date.accessioned2022-01-18T15:31:07Z
dc.date.available2022-01-18T15:31:07Z
dc.date.issued2021
dc.description.abstractWe derive a theoretical construct that allows for the characterisation of both scalable and scale free systems within the dynamic causal modelling (DCM) framework. We define a dynamical system to be "scalable" if the same equation of motion continues to apply as the system changes in size. As an example of such a system, we simulate planetary orbits varying in size and show that our proposed methodology can be used to recover Kepler's third law from the timeseries. In contrast, a "scale free" system is one in which there is no characteristic length scale, meaning that images of such a system are statistically unchanged at different levels of magnification. As an example of such a system, we use calcium imaging collected in murine cortex and show that the dynamical critical exponent, as defined in renormalization group theory, can be estimated in an empirical biological setting. We find that a task-relevant region of the cortex is associated with higher dynamical critical exponents in task vs. spontaneous states and vice versa for a task-irrelevant region.
dc.identifier.doi10.3389/fncom.2021.643148
dc.identifier.issn1662-5188
dc.identifier.scopus2-s2.0-85105387550
dc.identifier.urihttps://www.zora.uzh.ch/handle/20.500.14742/191049
dc.identifier.wos000647008500001
dc.language.isoeng
dc.subject.ddc570 Life sciences; biology
dc.subject.ddc610 Medicine & health
dc.titleNeural Systems Under Change of Scale
dc.typearticle
dcterms.accessRightsinfo:eu-repo/semantics/openAccess
dcterms.bibliographicCitation.journaltitleFrontiers in Computational Neuroscience
dcterms.bibliographicCitation.originalpublishernameFrontiers Research Foundation
dcterms.bibliographicCitation.pagestart643148
dcterms.bibliographicCitation.pmid33967728
dcterms.bibliographicCitation.volume15
dspace.entity.typePublicationen
uzh.contributor.affiliationKing's College London
uzh.contributor.affiliationImperial College London
uzh.contributor.affiliationUniversity of Zurich|Clinical Neuroscience Center Zurich
uzh.contributor.affiliationUniversity of Zurich|Clinical Neuroscience Center Zurich
uzh.contributor.affiliationUCL
uzh.contributor.affiliationKing's College London
uzh.contributor.affiliationKing's College London
uzh.contributor.authorFagerholm, Erik D
uzh.contributor.authorFoulkes, W M C
uzh.contributor.authorGallero-Salas, Yasir
uzh.contributor.authorHelmchen, Fritjof
uzh.contributor.authorFriston, Karl J
uzh.contributor.authorLeech, Robert
uzh.contributor.authorMoran, Rosalyn J
uzh.contributor.correspondenceYes
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.document.availabilitypublished_version
uzh.eprint.datestamp2022-01-18 15:31:07
uzh.eprint.lastmod2025-07-25 01:42:39
uzh.eprint.statusChange2022-01-18 15:31:07
uzh.harvester.ethYes
uzh.harvester.nbNo
uzh.identifier.doi10.5167/uzh-212745
uzh.jdb.eprintsId12948
uzh.oastatus.unpaywallgold
uzh.oastatus.zoraGold
uzh.publication.citationFagerholm, Erik D; Foulkes, W M C; Gallero-Salas, Yasir; Helmchen, Fritjof; Friston, Karl J; Leech, Robert; Moran, Rosalyn J (2021). Neural Systems Under Change of Scale. Frontiers in Computational Neuroscience, 15:643148.
uzh.publication.freeAccessAtpubmedid
uzh.publication.originalworkoriginal
uzh.publication.publishedStatusfinal
uzh.scopus.impact3
uzh.scopus.subjectsNeuroscience (miscellaneous)
uzh.scopus.subjectsCellular and Molecular Neuroscience
uzh.workflow.doajuzh.workflow.doaj.true
uzh.workflow.eprintid212745
uzh.workflow.fulltextStatuspublic
uzh.workflow.revisions44
uzh.workflow.rightsCheckkeininfo
uzh.workflow.sourcePubMed:PMID:33967728
uzh.workflow.statusarchive
uzh.wos.impact3
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