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动态群体编码及其与工作记忆的关系。

Dynamic population coding and its relationship to working memory.

作者信息

Meyers Ethan M

机构信息

Center for Brains, Minds and Machines, Massachusetts Institute of Technology, Cambridge, Massachusetts, and School of Cognitive Science, Hampshire College , Amherst, Massachusetts.

出版信息

J Neurophysiol. 2018 Nov 1;120(5):2260-2268. doi: 10.1152/jn.00225.2018. Epub 2018 Sep 12.

Abstract

For over 45 years, neuroscientists have conducted experiments aimed at understanding the neural basis of working memory. Early results examining individual neurons highlighted that information is stored in working memory in persistent sustained activity where neurons maintained elevated firing rates over extended periods of time. However, more recent work has emphasized that information is often stored in working memory in dynamic population codes, where different neurons contain information at different periods in time. In this paper, I review findings that show that both sustained activity as well as dynamic codes are present in the prefrontal cortex and other regions during memory delay periods. I also review work showing that dynamic codes are capable of supporting working memory and that such dynamic codes could easily be "readout" by downstream regions. Finally, I discuss why dynamic codes could be useful for enabling animals to solve tasks that involve working memory. Although additional work is still needed to know definitively whether dynamic coding is critical for working memory, the findings reviewed here give insight into how different codes could contribute to working memory, which should be useful for guiding future research.

摘要

45多年来,神经科学家们一直在进行实验,旨在了解工作记忆的神经基础。早期研究单个神经元的结果突出表明,信息以持续的持续活动形式存储在工作记忆中,即神经元在较长时间内保持较高的放电率。然而,最近的研究强调,信息通常以动态群体编码的形式存储在工作记忆中,不同的神经元在不同的时间段包含信息。在本文中,我回顾了一些研究结果,这些结果表明在记忆延迟期,前额叶皮层和其他区域同时存在持续活动和动态编码。我还回顾了一些研究,这些研究表明动态编码能够支持工作记忆,并且这种动态编码可以很容易地被下游区域“读出”。最后,我讨论了为什么动态编码对于使动物能够解决涉及工作记忆的任务可能是有用的。尽管仍需要更多的研究来确定动态编码是否对工作记忆至关重要,但这里回顾的研究结果深入了解了不同编码如何对工作记忆做出贡献,这应该有助于指导未来的研究。

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