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人脑穹隆的皮质投射区分布:大脑两半球不对称性和个体差异。

Cortical projection topography of the human splenium: hemispheric asymmetry and individual differences.

机构信息

Harvard Medical School, USA.

出版信息

J Cogn Neurosci. 2010 Aug;22(8):1662-9. doi: 10.1162/jocn.2009.21290.

Abstract

The corpus callosum is the largest white matter pathway in the human brain. The most posterior portion, known as the splenium, is critical for interhemispheric communication between visual areas. The current study employed diffusion tensor imaging to delineate the complete cortical projection topography of the human splenium. Homotopic and heterotopic connections were revealed between the splenium and the posterior visual areas, including the occipital and the posterior parietal cortices. In nearly one third of participants, there were homotopic connections between the primary visual cortices, suggesting interindividual differences in splenial connectivity. There were also more instances of connections with the right hemisphere, indicating a hemispheric asymmetry in interhemispheric connectivity within the splenium. Combined, these findings demonstrate unique aspects of human interhemispheric connectivity and provide anatomical bases for hemispheric asymmetries in visual processing and a long-described hemispheric asymmetry in speed of interhemispheric communication for visual information.

摘要

胼胝体是人类大脑中最大的白质通路。最靠后的部分,即压部,对于两个半球间视觉区域的信息交流至关重要。本研究采用弥散张量成像技术描绘了人类胼胝体的完整皮质投射地形图。在压部和包括枕叶和顶叶后部皮层在内的后部视觉区域之间揭示了同型和异型连接。在近三分之一的参与者中,初级视觉皮层之间存在同型连接,这表明在胼胝体连接方面存在个体差异。与右侧半球的连接也更多,表明在胼胝体中两个半球间的连接存在半球间不对称性。综上所述,这些发现展示了人类两个半球间连接的独特方面,并为视觉处理中的半球间不对称性以及长期描述的视觉信息两个半球间通信速度的半球间不对称性提供了解剖学基础。

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