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Faculté des Sciences appliquées
Faculté des Sciences appliquées
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Modeling of the interaction between neuronal populations involved in memory consolidation during the sleep-wake switch

Preud'Homme, Chloé ULiège
Promoteur(s) : Drion, Guillaume ULiège
Date de soutenance : 24-jui-2021/25-jui-2021 • URL permanente : http://hdl.handle.net/2268.2/11559
Détails
Titre : Modeling of the interaction between neuronal populations involved in memory consolidation during the sleep-wake switch
Auteur : Preud'Homme, Chloé ULiège
Date de soutenance  : 24-jui-2021/25-jui-2021
Promoteur(s) : Drion, Guillaume ULiège
Membre(s) du jury : Sacré, Pierre ULiège
Seutin, Vincent ULiège
Phillips, Christophe ULiège
Ruffoni, Davide ULiège
Langue : Anglais
Discipline(s) : Ingénierie, informatique & technologie > Multidisciplinaire, généralités & autres
Institution(s) : Université de Liège, Liège, Belgique
Diplôme : Master en ingénieur civil biomédical, à finalité spécialisée
Faculté : Mémoires de la Faculté des Sciences appliquées

Résumé

[en] It has been shown experimentally that memory consolidation occurs during sleep and that three brain regions are involved in this process: the thalamus, the neocortex and the hippocampus. The hippocampus has been shown as being the short-term store of the representation, the neocortex as the long-term store and the thalamus as the coordinator of the consolidation during sleep. As an illustration, when an individual experiences a camping event in which he observes his tent and the trees, he can recall a representation of this event after a night of sleep at the sight of his tent. The representation has been consolidated in the long-term store, the connections between the two items are reinforced in the neocortex thanks to neuronal ensemble reactivations occurring in the hippocampus during sleep. It appears that the synchronization of their electrical behaviour is essential for the consolidation of the experience in the neocortex.

In order to deepen our knowledge about how memories are consolidated thanks to those organs, computational modeling is a powerful approach for testing various stimuli. However, the cellular communication between these three regions is computationally under-investigated.

Therefore, this present work aims to reproduce a simplified and faithful computational representation of global and local interactions in the context of memory consolidation. The global anatomy and the role of these brain regions are first highlighted and the oscillations of the sleep-wake cycle are examined. The neurophysiology of each cell types composing the different regions is deeply studied by exploring the literature. Then, the way the cells communicate is inspected in order to build a simplified but still representative cellular network connecting the three regions and demonstrating their communication during wakefulness and sleep. To that aim, conductance-based models are suitable modeling tools used for reproducing the electrical behaviour of the distinct types of cells constituting the thalamus, neocortex and hippocampus.

The behaviour of each cell taken individually is favourably reproduced with the aim of replicating
the communication between each cell in the built network, which is performed successfully.
Moreover, the network developed is robust to variability


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Auteur

  • Preud'Homme, Chloé ULiège Université de Liège > Master ing. civ. biomed., à fin.

Promoteur(s)

Membre(s) du jury

  • Sacré, Pierre ULiège Université de Liège - ULiège > Dép. d'électric., électron. et informat. (Inst.Montefiore) > Robotique intelligente
    ORBi Voir ses publications sur ORBi
  • Seutin, Vincent ULiège Université de Liège - ULiège > Département des sciences biomédicales et précliniques > Pharmacologie
    ORBi Voir ses publications sur ORBi
  • Phillips, Christophe ULiège Université de Liège - ULiège > Dép. d'électric., électron. et informat. (Inst.Montefiore) > Dép. d'électric., électron. et informat. (Inst.Montefiore)
    ORBi Voir ses publications sur ORBi
  • Ruffoni, Davide ULiège Université de Liège - ULiège > Département d'aérospatiale et mécanique > Mécanique des matériaux biologiques et bioinspirés
    ORBi Voir ses publications sur ORBi
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