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人类内侧颞叶中的单个神经元会在空间任务和记忆任务之间灵活地转换表征。

Single neurons in the human medial temporal lobe flexibly shift representations across spatial and memory tasks.

作者信息

Donoghue Thomas, Cao Runnan, Han Claire Z, Holman Cameron M, Brandmeir Nicholas J, Wang Shuo, Jacobs Joshua

机构信息

Department of Biomedical Engineering, Columbia University.

Lane Department of Computer Science and Electrical Engineering, West Virginia University.

出版信息

bioRxiv. 2023 Feb 23:2023.02.22.529437. doi: 10.1101/2023.02.22.529437.

Abstract

Investigations into how individual neurons encode behavioral variables of interest have revealed specific representations in single neurons, such as place and object cells, as well as a wide range of cells with conjunctive encodings or mixed selectivity. However, as most experiments examine neural activity within individual tasks, it is currently unclear if and how neural representations change across different task contexts. Within this discussion, the medial temporal lobe is particularly salient, as it is known to be important for multiple behaviors including spatial navigation and memory, however the relationship between these functions is currently unclear. Here, to investigate how representations in single neurons vary across different task contexts in the MTL, we collected and analyzed single-neuron activity from human participants as they completed a paired-task session consisting of a passive-viewing visual working memory and a spatial navigation and memory task. Five patients contributed 22 paired-task sessions, which were spike sorted together to allow for the same putative single neurons to be compared between the different tasks. Within each task, we replicated concept-related activations in the working memory task, as well as target-location and serial-position responsive cells in the navigation task. When comparing neuronal activity between tasks, we first established that a significant number of neurons maintained the same kind of representation, responding to stimuli presentations across tasks. Further, we found cells that changed the nature of their representation across tasks, including a significant number of cells that were stimulus responsive in the working memory task that responded to serial position in the spatial task. Overall, our results support a flexible encoding of multiple, distinct aspects of different tasks by single neurons in the human MTL, whereby some individual neurons change the nature of their feature coding between task contexts.

摘要

对单个神经元如何编码感兴趣的行为变量的研究揭示了单个神经元中的特定表征,如位置细胞和物体细胞,以及具有联合编码或混合选择性的多种细胞。然而,由于大多数实验研究的是单个任务中的神经活动,目前尚不清楚神经表征是否以及如何在不同任务背景下发生变化。在这个讨论中,内侧颞叶尤为突出,因为它已知对包括空间导航和记忆在内的多种行为很重要,然而目前这些功能之间的关系尚不清楚。在这里,为了研究内侧颞叶中单个神经元的表征如何在不同任务背景下变化,我们收集并分析了人类参与者在完成一个配对任务时的单个神经元活动,该配对任务包括一个被动观看视觉工作记忆任务和一个空间导航与记忆任务。五名患者贡献了22个配对任务,对这些任务的尖峰信号进行分类,以便在不同任务之间比较相同的假定单个神经元。在每个任务中,我们在工作记忆任务中复制了与概念相关的激活,以及在导航任务中复制了目标位置和序列位置响应细胞。当比较不同任务之间的神经元活动时,我们首先确定大量神经元保持相同类型的表征,对不同任务中的刺激呈现做出反应。此外,我们发现了在不同任务之间改变其表征性质的细胞,包括大量在工作记忆任务中对刺激有反应而在空间任务中对序列位置有反应的细胞。总体而言,我们的结果支持人类内侧颞叶中的单个神经元对不同任务的多个不同方面进行灵活编码,其中一些单个神经元在任务背景之间改变其特征编码的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9672/9980106/b4ff72b8b301/nihpp-2023.02.22.529437v2-f0001.jpg

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