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New insights in the homotopic and heterotopic connectivity of the frontal portion of the human corpus callosum revealed by microdissection and diffusion tractography

机译:显微解剖和扩散束线描记揭示了人类corp体额叶部分的同位和异位连接性的新见解

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摘要

Extensive studies revealed that the human corpus callosum (CC) plays a crucial role in providing large–scale bi‐hemispheric integration of sensory, motor and cognitive processing, especially within the frontal lobe. However, the literature lacks of conclusive data regarding the structural macroscopic connectivity of the frontal CC. In this study, a novel microdissection approach was adopted, to expose the frontal fibers of CC from the dorsum to the lateral cortex in eight hemispheres and in one entire brain. results were then combined with data from advanced constrained spherical deconvolution in 130 healthy subjects. We demonstrated as the frontal CC provides dense inter‐hemispheric connections. In particular, we found three types of fronto‐callosal fibers, having a dorso‐ventral organization. First, the dorso‐medial CC fibers subserve homotopic connections between the homologous medial cortices of the superior frontal gyrus. Second, the ventro‐lateral CC fibers subserve homotopic connections between lateral frontal cortices, including both the middle frontal gyrus and the inferior frontal gyrus, as well as heterotopic connections between the medial and lateral frontal cortices. Third, the ventro‐striatal CC fibers connect the medial and lateral frontal cortices with the contralateral putamen and caudate nucleus. We also highlighted an intricate crossing of CC fibers with the main association pathways terminating in the lateral regions of the frontal lobes. This combined approach of microdissection and diffusion tractography allowed demonstrating a previously unappreciated three‐dimensional architecture of the anterior frontal CC, thus clarifying the functional role of the CC in mediating the connectivity. . ©
机译:广泛的研究表明,人call体(CC)在提供感觉,运动和认知过程的大规模双半球整合中,尤其是在额叶内,起着至关重要的作用。但是,文献缺乏关于额叶CC的结构宏观连通性的结论性数据。在这项研究中,采用了一种新颖的显微解剖方法,将CC的额叶纤维从背侧暴露到八个半球和整个大脑中的外侧皮层。然后将结果与来自130名健康受试者的高级约束球面反褶积的数据相结合。我们证明了正面CC提供密集的半球间连接。尤其是,我们发现了三种类型的额call纤维,具有背腹组织。首先,背中CC纤维在上额回的同源内侧皮质之间保持同位连接。第二,腹外侧CC纤维保留了外侧额叶皮质之间的同位连接,包括中额叶回和额叶下回​​,以及内侧和外侧额叶皮质之间的异位连接。第三,腹侧纹状体CC纤维将内侧和外侧额叶皮层与对侧壳核和尾状核连接起来。我们还强调了CC纤维与主要缔合途径的复杂交叉,这些途径终止于额叶的外侧区域。这种显微解剖和扩散束摄影术的结合方法可以证明前额叶CC的先前未曾意识到的三维结构,从而阐明了CC在介导连通性方面的功能。 。 ©

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