首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Mesoscale Mapping of Mouse Cortex Reveals Frequency-Dependent Cycling between Distinct Macroscale Functional Modules
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Mesoscale Mapping of Mouse Cortex Reveals Frequency-Dependent Cycling between Distinct Macroscale Functional Modules

机译:Mescale映射的鼠标皮质映射显示不同宏观函数模块之间的频率依赖性循环

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Connectivity mapping based on resting-state activity in mice has revealed functional motifs of correlated activity. However, the rules by which motifs organize into larger functional modules that lead to hemisphere wide spatial-temporal activity sequences is not clear. We explore cortical activity parcellation in head-fixed, quiet awake GCaMP6 mice from both sexes by using mesoscopic calcium imaging. Spectral decomposition of spontaneous cortical activity revealed the presence of two dominant frequency modes (<1 and <3 Hz), each of them associated with a unique spatial signature of cortical macro-parcellation not predicted by classical cytoarchitectonic definitions of cortical areas. Based on assessment of 0.1-1 Hz activity, we define two macro-organizing principles: the first being a rotating polymodal-association pinwheel structure around which activity flows sequentially from visual to barrel then to hindlimb somatosensory; the second principle is correlated activity symmetry planes that exist on many levels within a single domain such as intrahemispheric reflections of sensory and motor cortices. In contrast, higher frequency activity >1 Hz yielded two larger clusters of coactivated areas with an enlarged default mode network-like posterior region. We suggest that the apparent constrained structure for intra-areal cortical activity flow could be exploited in future efforts to normalize activity in diseases of the nervous system.
机译:基于小鼠静静态活动的连接映射揭示了相关活动的功能基序。但是,图案组织成更大的功能模块的规则,导致半球宽空间 - 时间活动序列尚不清楚。我们通过使用介相钙成像来探索头固定,安静的唤醒Gcamp6小鼠的皮质活动局。自发皮质活动的光谱分解揭示了两种显性频率模式(<1和<3Hz)的存在,它们中的每一个与皮质宏局的独特空间签名相关联,未通过皮质区域的经典细胞构表中定义预测的皮质宏观局的唯一空间签名。基于评估0.1-1 Hz活性,我们定义了两个宏组织原则:首先是旋转多种关联轮转焰火结构,周围的活动从视觉到桶依次流动到Hindlimb Somatosove;第二原理是相关活动对称平面,其在单个领域内的许多级别存在,例如感觉和电机皮质的内肌肉反射。相反,较高的频率活动> 1 Hz产生两个具有扩大默认模式网络后部区域的一个更大的共置区域簇。我们建议在将来的努力中,可以利用面积内皮质活动流动的表观约束结构,使神经系统疾病中的活性正常化。

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