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首页|Learning to learn persistently modifies an entorhinal-hippocampal excitatory-inhibitory subcircuit

Learning to learn persistently modifies an entorhinal-hippocampal excitatory-inhibitory subcircuit

Learning to learn persistently modifies an entorhinal-hippocampal excitatory-inhibitory subcircuit

来源:bioRxiv_logobioRxiv
英文摘要

SUMMARY Cognitive control, the judicious use of relevant information while ignoring distractions, is a feature of everyday cognitive experience, but its neurobiology is understudied. We investigated whether cognitive control training (CCT) changes hippocampal neural circuit function in mice, beyond the changes caused by place learning and memory formation. Mice learned and remembered a conditioned place avoidance during CCT that required ignoring irrelevant locations of shock. They were compared to controls that learned the same place avoidance under lower cognitive control demands. Weeks after CCT, mice learn new tasks in novel environments faster than controls; they learned to learn. We investigated entorhinal cortex-to-dentate gyrus neural circuit changes and report that CCT rapidly changes synaptic circuit function, resulting in an excitatory-inhibitory subcircuit change that persists for months. CCT increases inhibition that attenuates the dentate response to medial entorhinal cortical input, and through disinhibition, potentiates the response to strong inputs, pointing to overall signal-to-noise enhancement. These neurobiological findings support a neuroplasticity hypothesis that, beyond storing item/event associations, CCT persistently optimizes neural circuit information processing.

Fenton Andr¨| A.、Grau-Perales Alejandro、Levy Eliott、Dvorak Dino、Hussain Nida、Chung Ain、Jou Claudia

Center for Neural Science, New York University||Neuroscience Institute at the NYU Langone Medical CenterCenter for Neural Science, New York UniversityCenter for Neural Science, New York UniversityCenter for Neural Science, New York UniversityCenter for Neural Science, New York UniversityCenter for Neural Science, New York UniversityDepartment of Biological Sciences, City University of New York, Hunter College

10.1101/817627

神经病学、精神病学基础医学生物科学研究方法、生物科学研究技术

Fenton Andr¨| A.,Grau-Perales Alejandro,Levy Eliott,Dvorak Dino,Hussain Nida,Chung Ain,Jou Claudia.Learning to learn persistently modifies an entorhinal-hippocampal excitatory-inhibitory subcircuit[EB/OL].(2025-03-28)[2025-05-05].https://www.biorxiv.org/content/10.1101/817627.点此复制

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