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延迟反应任务中错误行为的神经基础研究。

Investigation of Neural Substrates of Erroneous Behavior in a Delayed-Response Task.

机构信息

Department of Biomedical Engineering, Ulsan National Institute of Science and Technology, Ulju-gun, Ulsan 44929, South Korea.

Department of Medical Science, Catholic Kwandong University, International St. Mary's Hospital, Gangneung-si, Gangwon-do 25601, South Korea

出版信息

eNeuro. 2022 Apr 11;9(2). doi: 10.1523/ENEURO.0490-21.2022. Print 2022 Mar-Apr.

Abstract

Motor cortical neurons exhibit persistent selective activities (selectivity) during motor planning. Experimental perturbation of selectivity results in the failure of short-term memory retention and consequent behavioral biases, demonstrating selectivity as a neural characteristic of encoding previous sensory input or future action. However, even without experimental manipulation, animals occasionally fail to maintain short-term memory leading to erroneous choice. Here, we investigated neural substrates that lead to the incorrect formation of selectivity during short-term memory. We analyzed neuronal activities in anterior lateral motor cortex (ALM) of mice, a region known to be engaged in motor planning while mice performed the tactile delayed-response task. We found that highly selective neurons lost their selectivity while originally nonselective neurons showed selectivity during the error trials where mice licked toward incorrect direction. We assumed that those alternations would reflect changes in intrinsic properties of population activity. Thus, we estimated an intrinsic manifold shared by neuronal population (shared space), using factor analysis (FA) and measured the association of individual neurons with the shared space by communality, the variance of neuronal activity accounted for by the shared space. We found a positive correlation between selectivity and communality over ALM neurons, which disappeared in erroneous behavior. Notably, neurons showing selectivity alternations between correct and incorrect licking also underwent proportional changes in communality. Our results demonstrated that the extent to which an ALM neuron is associated with the intrinsic manifolds of population activity may elucidate its selectivity and that disruption of this association may alter selectivity, likely leading to erroneous behavior.

摘要

运动皮层神经元在运动规划过程中表现出持久的选择性活动(选择性)。选择性的实验干扰会导致短期记忆保留失败,进而导致行为偏见,这表明选择性是对先前感觉输入或未来动作进行编码的神经特征。然而,即使没有实验操作,动物偶尔也会无法维持短期记忆,从而导致错误的选择。在这里,我们研究了导致短期记忆过程中选择性错误形成的神经基础。我们分析了小鼠前外侧运动皮层(ALM)中的神经元活动,该区域已知在小鼠执行触觉延迟反应任务时参与运动规划。我们发现,高选择性神经元在错误试验中失去了选择性,而原本非选择性神经元在小鼠向错误方向舔舐时表现出了选择性。我们假设这些变化反映了群体活动内在特性的变化。因此,我们使用因子分析(FA)来估计神经元群体共享的内在流形(共享空间),并通过共性来衡量单个神经元与共享空间的关联,即共享空间解释神经元活动方差的比例。我们发现,ALM 神经元的选择性与共性之间存在正相关,而在错误行为中这种相关性消失了。值得注意的是,在正确和错误舔舐之间表现出选择性变化的神经元,其共性也发生了相应的变化。我们的结果表明,ALM 神经元与群体活动内在流形的关联程度可以阐明其选择性,而这种关联的破坏可能会改变选择性,从而导致错误行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a16a/9007410/d3ecc55404a3/ENEURO.0490-21.2022_f001.jpg

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