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清醒行为小鼠的全皮质双光子介观成像与神经行为匹配

Pan-cortical 2-photon mesoscopic imaging and neurobehavioral alignment in awake, behaving mice.

作者信息

Vickers Evan D, McCormick David A

机构信息

Institute of Neuroscience, University of Oregon, Eugene, OR.

Department of Biology.

出版信息

bioRxiv. 2024 Feb 5:2023.10.19.563159. doi: 10.1101/2023.10.19.563159.

Abstract

The flow of neural activity across the neocortex during active sensory discrimination is constrained by task-specific cognitive demands, movements, and internal states. During behavior, the brain appears to sample from a broad repertoire of activation motifs. Understanding how these patterns of local and global activity are selected in relation to both spontaneous and task-dependent behavior requires in-depth study of densely sampled activity at single neuron resolution across large regions of cortex. In a significant advance toward this goal, we developed procedures to record mesoscale 2-photon Ca imaging data from two novel preparations that, between them, allow simultaneous access to nearly all of the mouse dorsal and lateral neocortex. As a proof of principle, we aligned neural activity with both behavioral primitives and high-level motifs to reveal the existence of large populations of neurons that coordinated their activity across cortical areas with spontaneous changes in movement and/or arousal. The methods we detail here facilitate the identification and exploration of widespread, spatially heterogeneous neural ensembles whose activity is related to diverse aspects of behavior.

摘要

在主动感觉辨别过程中,新皮层中神经活动的流动受到特定任务的认知需求、运动和内部状态的限制。在行为过程中,大脑似乎从广泛的激活模式中进行采样。要理解这些局部和全局活动模式如何与自发行为和任务依赖行为相关联而被选择,需要在跨大脑皮层大区域的单个神经元分辨率下对密集采样的活动进行深入研究。在朝着这一目标取得的一项重大进展中,我们开发了从两种新型制剂记录中尺度双光子钙成像数据的程序,这两种制剂合起来能够同时接近几乎所有小鼠背侧和外侧新皮层。作为原理验证,我们将神经活动与行为原语和高级模式进行了比对,以揭示大量神经元的存在,这些神经元通过运动和/或觉醒的自发变化在不同皮层区域协调它们的活动。我们在此详细介绍的方法有助于识别和探索广泛的、空间上异质的神经集合,其活动与行为的不同方面相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32bd/10851984/6d635501bff0/nihpp-2023.10.19.563159v3-f0001.jpg

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