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内嗅皮质代表与任务相关的远端位置,独立于海马体CA1区。

Entorhinal cortex represents task-relevant remote locations independent of CA1.

作者信息

Jones Emily A Aery, Low Isabel I C, Cho Frances S, Giocomo Lisa M

机构信息

Department of Neurobiology, Stanford University School of Medicine, Stanford, CA 94305.

出版信息

bioRxiv. 2024 Jul 24:2024.07.23.604815. doi: 10.1101/2024.07.23.604815.

Abstract

Neurons can collectively represent the current sensory experience while an animal is exploring its environment or remote experiences while the animal is immobile. These remote representations can reflect learned associations and be required for learning. Neurons in the medial entorhinal cortex (MEC) reflect the animal's current location during movement, but little is known about what MEC neurons collectively represent during immobility. Here, we recorded thousands of neurons in superficial MEC and dorsal CA1 as mice learned to associate two pairs of rewarded locations. We found that during immobility, the MEC neural population frequently represented positions far from the animal's location, which we defined as 'non-local coding'. Cells with spatial firing fields at remote locations drove non-local coding, even as cells representing the current position remained active. While MEC non-local coding has been reported during sharp-wave ripples in downstream CA1, we observed non-local coding more often outside of ripples. In fact, CA1 activity was less coordinated with MEC during non-local coding. We further observed that non-local coding was pertinent to the task, as MEC preferentially represented remote task-relevant locations at appropriate times, while rarely representing task-irrelevant locations. Together, this work raises the possibility that MEC non-local coding could strengthen associations between locations independently from CA1.

摘要

当动物探索其环境时,神经元可以共同表征当前的感官体验;而当动物静止不动时,神经元可以表征遥远的经历。这些遥远的表征可以反映习得的关联,并且是学习所必需的。内侧内嗅皮层(MEC)中的神经元在动物移动时反映其当前位置,但对于MEC神经元在动物静止时共同表征什么却知之甚少。在这里,当小鼠学会将两对奖励位置联系起来时,我们记录了浅表MEC和背侧CA1中的数千个神经元。我们发现,在静止期间,MEC神经群体经常表征远离动物位置的位置,我们将其定义为“非局部编码”。在遥远位置具有空间放电场的细胞驱动非局部编码,即使代表当前位置的细胞仍然活跃。虽然在下游CA1的尖波涟漪期间已经报道了MEC非局部编码,但我们在涟漪之外更频繁地观察到非局部编码。事实上,在非局部编码期间,CA1活动与MEC的协调性较差。我们进一步观察到非局部编码与任务相关,因为MEC在适当的时候优先表征遥远的与任务相关的位置,而很少表征与任务无关的位置。总之,这项工作提出了一种可能性,即MEC非局部编码可以独立于CA1加强位置之间的关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ea9/11291150/db584f1c1663/nihpp-2024.07.23.604815v1-f0006.jpg

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