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Linking Macroscale Graph Analytical Organization to Microscale Neuroarchitectonics in the Macaque Connectome

机译:将宏图分析组织链接到猕猴Connectome中的微型神经建筑学

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摘要

Macroscale connectivity of the mammalian brain has been shown to display several characteristics of an efficient communication network architecture. In parallel, at the microscopic scale, histological studies have extensively revealed large interregional variation in cortical neural architectonics. However, how these two “scales” of cerebrum organization are linked remains an open question. Collating and combining data across multiple studies on the cortical cytoarchitecture of the macaque cortex with information on macroscale anatomical wiring derived from tract tracing studies, this study focuses on examining the interplay between macroscale organization of the macaque connectome and microscale cortical neuronal architecture. Our findings show that both macroscale degree as well as the topological role in the overall network are related to the level of neuronal complexity of cortical regions at the microscale, showing (among several effects) a positive overall association between macroscale degree and metrics of microscale pyramidal complexity. Macroscale hub regions, together forming a densely interconnected “rich club,” are noted to display a high level of neuronal complexity, findings supportive of a high level of integrative neuronal processes to occur in these regions. Together, we report on cross-scale observations that jointly suggest that a region's microscale neuronal architecture is tuned to its role in the global brain network.
机译:哺乳动物大脑的宏连接已显示出有效通信网络体系结构的几个特征。同时,在微观范围内,组织学研究广泛揭示了皮质神经建筑学中区域间的巨大差异。但是,如何将这两个“规模”的大脑组织联系起来仍然是一个悬而未决的问题。整理和组合有关猕猴皮层皮质细胞结构的多项研究的数据,并结合从管道追踪研究获得的有关宏观解剖学布线的信息,本研究着重研究猕猴连接体的宏观组织与微观皮质神经元结构之间的相互作用。我们的研究结果表明,宏观程度以及拓扑在整个网络中的作用都与微观区域的皮质区域的神经元复杂程度有关,这表明(在多种效应中)宏观程度与微观金字塔形度量之间存在积极的整体联系复杂。大型集线器区域一起形成了紧密互连的“丰富俱乐部”,被认为显示出高水平的神经元复杂性,这些发现支持在这些区域中发生高水平的整合性神经元过程。我们共同报告了跨尺度的观察结果,这些观察结果共同表明该地区的微尺度神经元体系结构已适应其在全球脑网络中的作用。

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