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Cortical networks of the mouse brain elaborate within the gray matter

机译:小鼠脑的皮质网络在灰质内阐述

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In primates, proximal cortical areas are interconnected via within-cortex “intrinsic” pathway, whereas distant areas are connected via “extrinsic” white matter pathway. To date, such distinction has not been clearly done for small-brained mammals like rodents. In this study, we systematically analyzed the data of Allen Mouse Brain Connectivity Atlas to answer this question and found that the ipsilateral cortical connections in mice are almost exclusively contained within the gray matter, although we observed exceptions for projections from the retrosplenial area and the medial/orbital frontal areas. By analyzing axonal projections within the gray matter using Cortical Box method, which enabled us to investigate the layer patterns across different cortical areas, we obtained the following results. First, widespread axonal projections were observed in both upper and lower layers in the vicinity of injections, whereas highly specific “point-to-point” projections were observed toward remote areas. Second, such long-range projections were predominantly aligned in the anteromedial–posterolateral direction. Third, in the majority of these projections, the connecting axons traveled through layer 6. Finally, the projections from the primary and higher order areas to distant targets preferentially terminated in the middle and superficial layers, respectively, suggesting hierarchical connections similar to those of primates. Overall, our study demonstrated conspicuous differences in gray/white matter segregation of axonal projections between rodents and primates, despite certain similarities in the hierarchical cortical organization.
机译:在灵长类动物中,近端皮质区域通过在皮质内互连“内在”途径,而远距离区域通过“外在”白质途径连接。迄今为止,对于像啮齿动物这样的小型哺乳动物,尚未清楚地完成这种区分。在这项研究中,我们系统地分析了艾伦小鼠脑连接的数据,以回答这个问题,发现小鼠中的同侧皮质连接几乎完全包含在灰质内,尽管我们观察到来自逆向普通区域和内侧的预测的例外/轨道正面区域。通过使用皮质盒方法分析灰质内的轴突投影,使我们能够研究不同皮质区域的层模式,我们获得了以下结果。首先,在注射附近的上层和下层中观察到广泛的轴突突起,而对偏远地区观察到高度特定的“点对点”突起。其次,这种远程突出突起主要是在前后外侧方向上的。第三,在这些突起的大部分中,连接轴颈通过层6行进。最后,将来自初级和高阶区域的投影分别优先终止在中间层和浅层层中的远端目标,暗示类似于灵长类动物的分层连接。总的来说,我们的研究表明啮齿动物和灵长类动物之间的轴突突起的灰色/白质偏析的显着差异,尽管分级式皮质组织中某些相似性。

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