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CA3 循环侧支引起的位置细胞速率重映射。

Place cell rate remapping by CA3 recurrent collaterals.

作者信息

Solstad Trygve, Yousif Hosam N, Sejnowski Terrence J

机构信息

Howard Hughes Medical Institute, Computational Neurobiology Laboratory, Salk Institute for Biological Studies, La Jolla, California, United States of America; Kavli Institute for Systems Neuroscience and Centre for Neural Computation, Norwegian University of Science and Technology, MTFS, Trondheim, Norway.

Howard Hughes Medical Institute, Computational Neurobiology Laboratory, Salk Institute for Biological Studies, La Jolla, California, United States of America; Department of Physics, University of California at San Diego, La Jolla, California, United States of America.

出版信息

PLoS Comput Biol. 2014 Jun 5;10(6):e1003648. doi: 10.1371/journal.pcbi.1003648. eCollection 2014 Jun.

Abstract

Episodic-like memory is thought to be supported by attractor dynamics in the hippocampus. A possible neural substrate for this memory mechanism is rate remapping, in which the spatial map of place cells encodes contextual information through firing rate variability. To test whether memories are stored as multimodal attractors in populations of place cells, recent experiments morphed one familiar context into another while observing the responses of CA3 cell ensembles. Average population activity in CA3 was reported to transition gradually rather than abruptly from one familiar context to the next, suggesting a lack of attractive forces associated with the two stored representations. On the other hand, individual CA3 cells showed a mix of gradual and abrupt transitions at different points along the morph sequence, and some displayed hysteresis which is a signature of attractor dynamics. To understand whether these seemingly conflicting results are commensurate with attractor network theory, we developed a neural network model of the CA3 with attractors for both position and discrete contexts. We found that for memories stored in overlapping neural ensembles within a single spatial map, position-dependent context attractors made transitions at different points along the morph sequence. Smooth transition curves arose from averaging across the population, while a heterogeneous set of responses was observed on the single unit level. In contrast, orthogonal memories led to abrupt and coherent transitions on both population and single unit levels as experimentally observed when remapping between two independent spatial maps. Strong recurrent feedback entailed a hysteretic effect on the network which diminished with the amount of overlap in the stored memories. These results suggest that context-dependent memory can be supported by overlapping local attractors within a spatial map of CA3 place cells. Similar mechanisms for context-dependent memory may also be found in other regions of the cerebral cortex.

摘要

情景样记忆被认为是由海马体中的吸引子动力学所支持。这种记忆机制的一种可能的神经基础是速率重映射,即位置细胞的空间图谱通过放电率变异性来编码情境信息。为了测试记忆是否作为多模态吸引子存储在位置细胞群体中,最近的实验在观察CA3细胞集合的反应时,将一个熟悉的情境转变为另一个情境。据报道,CA3中的平均群体活动从一个熟悉的情境到另一个情境是逐渐过渡而非突然转变的,这表明与两个存储表征相关的吸引力缺乏。另一方面,单个CA3细胞在形态序列的不同点表现出逐渐和突然转变的混合,并且一些细胞表现出滞后现象,这是吸引子动力学的一个特征。为了理解这些看似矛盾的结果是否与吸引子网络理论相符,我们开发了一个CA3神经网络模型,该模型具有位置和离散情境的吸引子。我们发现,对于存储在单个空间图谱内重叠神经集合中的记忆,位置依赖的情境吸引子在形态序列的不同点发生转变。通过对群体进行平均得到了平滑的过渡曲线,而在单个单元水平上观察到了一组异质性的反应。相比之下,正交记忆在群体和单个单元水平上都导致了如在两个独立空间图谱之间重映射时实验观察到的突然且连贯的转变。强烈的循环反馈对网络产生了滞后效应,这种效应随着存储记忆中的重叠量而减弱。这些结果表明,情境依赖记忆可以由CA3位置细胞空间图谱内的重叠局部吸引子来支持。在大脑皮层的其他区域也可能发现类似的情境依赖记忆机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dba/4046921/e3c887ef760b/pcbi.1003648.g001.jpg

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