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Principal Component and Cluster Analysis of Layer V Pyramidal Cells in Visual and Non-Visual Cortical Areas Projecting to the Primary Visual Cortex of the Mouse

机译:视觉和非视觉皮层区域中投影到小鼠主要视觉皮层的V层金字塔形细胞的主要成分和聚类分析

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The loog-distance corticocortical connections between visuai and nonvisual sensory areas that arise from pyramidal neurons located within layer V can be considered as a subpopulation of feedback connections. The purpose of the present study is to determine if layer V pyramidal neurons from visual and nonvisual sensory cortical areas that project onto the visual cortex (V1) constitute a homogeneous population of cells. Additionally, we ask whether dendritic arborization relates to the target, the sensory modality, the hierarchical level, or laterally of the source cortical area. Complete 3D reconstructions of dendritic arbors of retrogradely labeled layer V pyramidal neurons were performed for neurons of the primary auditory (A1) and somatosensory (81) cortices and from the lateral (V2L) and medial (V2M) parts of the secondary visual cortices of both hemispheres. The morphological parameters extracted from these reconstructions were subjected to principal component aiaEysis (PCA) and cluster analysis. The PCA showed that neurons are distributed within a continuous range of morphologies and do not form discrete groups. Nevertheless, the cluster analysis defines neuronal groups that share similar features. Each cortical area includes neurons belonging to several clusters. We suggest that layer V feedback connections within a single cortical area comprise several cell types.
机译:位于V层内的锥体神经元引起的视觉与非视觉感觉区域之间的皮质距离皮层皮质连接可以视为反馈连接的子群体。本研究的目的是确定来自视觉和非视觉感觉皮层区域的V层锥体神经元是否投射到视觉皮层(V1)上,以构成均匀的细胞群。此外,我们询问树突状乔木化是否与目标,感觉模态,层级或源皮质区域的侧面有关。逆向标记的V层锥体神经元的树突状树突的完整3D重建是针对两个听觉皮层的主要听觉(A1)和体感(81)皮质的神经元进行的。半球。从这些重建中提取的形态学参数经过主成分分析(PCA)和聚类分析。 PCA显示神经元在连续的形态范围内分布,并且不形成离散的组。尽管如此,聚类分析定义了具有相似特征的神经元组。每个皮层区域包括属于几个簇的神经元。我们建议单个皮质区域内的V层反馈连接包括几种细胞类型。

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