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是与非:宽场 Ca2+ 成像揭示新皮层功能分割兼具稳定性和灵活性。

To be and not to be: wide-field Ca2+ imaging reveals neocortical functional segmentation combines stability and flexibility.

机构信息

Department of Neuroscience, University of Minnesota, 2001 Sixth Street S.E., Minneapolis 55455, MN, United States.

出版信息

Cereb Cortex. 2023 May 24;33(11):6543-6558. doi: 10.1093/cercor/bhac523.

Abstract

The stability and flexibility of the functional parcellation of the cerebral cortex is fundamental to how familiar and novel information is both represented and stored. We leveraged new advances in Ca2+ sensors and microscopy to understand the dynamics of functional segmentation in the dorsal cerebral cortex. We performed wide-field Ca2+ imaging in head-fixed mice and used spatial independent component analysis (ICA) to identify independent spatial sources of Ca2+ fluorescence. The imaging data were evaluated over multiple timescales and discrete behaviors including resting, walking, and grooming. When evaluated over the entire dataset, a set of template independent components (ICs) were identified that were common across behaviors. Template ICs were present across a range of timescales, from days to 30 seconds, although with lower occurrence probability at shorter timescales, highlighting the stability of the functional segmentation. Importantly, unique ICs emerged at the shorter duration timescales that could act to transiently refine the cortical network. When data were evaluated by behavior, both common and behavior-specific ICs emerged. Each behavior is composed of unique combinations of common and behavior-specific ICs. These observations suggest that cerebral cortical functional segmentation exhibits considerable spatial stability over time and behaviors while retaining the flexibility for task-dependent reorganization.

摘要

大脑皮层功能分区的稳定性和灵活性是熟悉和新颖信息如何被表示和存储的基础。我们利用 Ca2+ 传感器和显微镜的新进展来了解背侧大脑皮层功能分割的动态。我们在头固定的小鼠中进行了宽场 Ca2+ 成像,并使用空间独立成分分析 (ICA) 来识别 Ca2+ 荧光的独立空间源。对成像数据进行了多个时间尺度和离散行为(包括休息、行走和梳理)的评估。当对整个数据集进行评估时,确定了一组在多种行为中都存在的模板独立成分 (IC)。模板 IC 存在于多个时间尺度范围内,从几天到 30 秒,但在较短的时间尺度上出现的概率较低,这突出了功能分割的稳定性。重要的是,在较短的持续时间尺度上出现了独特的 IC,可以暂时细化皮质网络。当按行为对数据进行评估时,出现了共同和特定于行为的 IC。每种行为都是由共同和特定于行为的 IC 的独特组合组成。这些观察结果表明,大脑皮层功能分割在时间和行为上表现出相当大的空间稳定性,同时保持了任务相关重组的灵活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e93/10233288/1aa6455358b0/bhac523f1.jpg

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