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An architectonic type principle integrates macroscopic cortico-cortical connections with intrinsic cortical circuits of the primate brain

机译:建筑类型原理将宏观皮质-皮质连接与灵长类动物大脑的内在皮质回路整合在一起

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摘要

The connections linking neurons within and between cerebral cortical areas form a multiscale network for communication. We review recent work relating essential features of cortico-cortical connections, such as their existence and laminar origins and terminations, to fundamental structural parameters of cortical areas, such as their distance, similarity in cytoarchitecture, defined by lamination or neuronal density, and other macroscopic and microscopic structural features. These analyses demonstrate the presence of an architectonic type principle. Across species and cortices, the essential features of cortico-cortical connections vary consistently and strongly with the cytoarchitectonic similarity of cortical areas. By contrast, in multivariate analyses such relations were not found consistently for distance, similarity of cortical thickness, or cellular morphology. Gradients of laminar cortical differentiation, as reflected in overall neuronal density, also correspond to regional variations of cellular features, forming a spatially ordered natural axis of concerted architectonic and connectional changes across the cortical sheet. The robustness of findings across mammalian brains allows cross-species predictions of the existence and laminar patterns of projections, including estimates for the human brain that are not yet available experimentally. The architectonic type principle integrates cortical connectivity and architecture across scales, with implications for computational explorations of cortical physiology and developmental mechanisms.
机译:连接大脑皮层区域内和大脑皮层区域之间的神经元的连接形成了多尺度的交流网络。我们回顾了有关皮质-皮质连接的基本特征(例如它们的存在以及层状起源和终止)与皮质区域的基本结构参数(例如它们的距离,细胞结构的相似性,由层压或神经元密度定义)以及其他宏观方面相关的最新工作和微观结构特征。这些分析证明了建筑类型原理的存在。跨物种和皮质,皮质-皮质连接的基本特征随皮质区域的细胞建筑相似性而一致且强烈变化。相比之下,在多变量分析中,在距离,皮质厚度相似性或细胞形态方面并没有一致地发现这种关系。整体神经元密度所反映的层状皮层分化梯度也与细胞特征的区域变化相对应,形成了整个皮层片上一致的建筑和连接变化的空间有序自然轴。跨哺乳动物大脑发现的鲁棒性允许跨物种预测投射的存在和层状模式,包括尚无法通过实验获得的对人类大脑的估计。建筑类型原理整合了跨尺度的皮质连通性和体系结构,对皮质生理学和发育机制的计算探索具有启示意义。

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