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Publication avec DOI Récupéré Publication crossref

Duncan E. Astle, Mark H. Johnson, Danyal Akarca (2023). Toward computational neuroconstructivism: a framework for developmental systems neuroscience. Trends in Cognitive Sciences, 27(8), 726-744. Elsevier BV.

Date de publication
août 2023
Identifiant
10.1016/j.tics.2023.04.009
Auteurs
Duncan E. Astle, Mark H. Johnson, Danyal Akarca
Source
Trends in Cognitive Sciences
Détails
27(8), 726-744
Type de référence
article
Éditeur
Elsevier BV
Source de métadonnées
crossref

Résumé

Brain development is underpinned by complex interactions between neural assemblies, driving structural and functional change. This neuroconstructivism (the notion that neural functions are shaped by these interactions) is core to some developmental theories. However, due to their complexity, understanding underlying developmental mechanisms is challenging. Elsewhere in neurobiology, a computational revolution has shown that mathematical models of hidden biological mechanisms can bridge observations with theory building. Can we build a similar computational framework yielding mechanistic insights for brain development? Here, we outline the conceptual and technical challenges of addressing this theory gap, and demonstrate that there is great potential in specifying brain development as mathematically defined processes operating within physical constraints. We provide examples, alongside broader ingredients needed, as the field explores computational explanations of system-wide development.

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