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通过神经反馈对远程海马表征进行闭环调制。

Closed-loop modulation of remote hippocampal representations with neurofeedback.

作者信息

Coulter Michael E, Gillespie Anna K, Chu Joshua, Denovellis Eric L, Nguyen Trevor Thai K, Liu Daniel F, Wadhwani Katherine, Sharma Baibhav, Wang Kevin, Deng Xinyi, Eden Uri T, Kemere Caleb, Frank Loren M

机构信息

Kavli Institute and Department of Physiology, UCSF, San Francisco, CA, USA; Howard Hughes Medical Institute, Chevy Chase, MD, USA.

Departments of Neurobiology and Biophysics and Lab Medicine and Pathology, University of Washington, Seattle, WA, USA.

出版信息

Neuron. 2025 Mar 19;113(6):949-961.e3. doi: 10.1016/j.neuron.2024.12.023. Epub 2025 Jan 20.

Abstract

Humans can remember specific remote events without acting on them and influence which memories are retrieved based on internal goals. However, animal models typically present sensory cues to trigger memory retrieval and then assess retrieval based on action. Thus, it is difficult to determine whether measured neural activity patterns relate to the cue(s), the memory, or the behavior. We therefore asked whether retrieval-related neural activity could be generated in animals without cues or a behavioral report. We focused on hippocampal "place cells," which primarily represent the animal's current location (local representations) but can also represent locations away from the animal (remote representations). We developed a neurofeedback system to reward expression of remote representations and found that rats could learn to generate specific spatial representations that often jumped directly to the experimenter-defined target location. Thus, animals can deliberately engage remote representations, enabling direct study of retrieval-related activity in the brain.

摘要

人类能够记住特定的遥远事件而不采取行动,并根据内部目标影响哪些记忆被提取。然而,动物模型通常呈现感官线索以触发记忆提取,然后根据行为来评估提取情况。因此,很难确定所测量的神经活动模式是与线索、记忆还是行为相关。因此,我们询问在没有线索或行为报告的情况下,动物是否能产生与提取相关的神经活动。我们聚焦于海马体的“位置细胞”,其主要代表动物当前的位置(局部表征),但也能代表远离动物的位置(遥远表征)。我们开发了一种神经反馈系统来奖励遥远表征的表达,发现大鼠能够学会产生特定的空间表征,这些表征常常直接跳到实验者定义的目标位置。因此,动物能够有意地参与遥远表征,从而能够直接研究大脑中与提取相关的活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8548/12067296/130d23406f70/nihms-2048106-f0001.jpg

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