In Vivo Mapping of Fiber Pathways in the Rhesus Monkey Brain

S. Hofer, J. Frahm
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引用次数: 9

Abstract

The study of complex fiber systems in relation to the cognitive abilities of humans is a long-standing challenge for neuroscientists. With the development of diffusion tensor imaging (DTI) it is now possible to visualize large fiber bundles non-invasively. The existing knowledge of the white matter architecture largely stems from either lesion studies of human patients or, in more detail, tracer injection studies of non-human primates. Hence, it seems mandatory to com- pare DTI results with histochemical findings obtained for the same species. Using a geometrically undistorted DTI tech- nique and fiber tractography, we examined the fiber anatomy of the macaque brain in vivo and related the results to fiber pathways previously identified in monkeys with conventional tract tracing. The approach identified multiple fiber tracts including the main association and projection pathways as well as fibers of the limbic system, commissural system, optic system, and cerebellar system. In conclusion, in vivo fiber tractography based on current-state DTI allows for a compre- hensive analysis of major fiber pathways in the intact macaque brain.
恒河猴大脑纤维通路的体内定位
研究与人类认知能力有关的复杂纤维系统是神经科学家长期面临的挑战。随着扩散张量成像(DTI)技术的发展,对大纤维束的无创成像已成为可能。现有的关于白质结构的知识主要来自于对人类患者的病变研究,或者更详细地说,来自于对非人灵长类动物的示踪剂注射研究。因此,似乎有必要将DTI结果与同一物种的组织化学结果进行比较。利用几何不扭曲的DTI技术和纤维束成像技术,我们检查了猕猴体内大脑的纤维解剖结构,并将结果与之前在猴子中发现的传统束追踪纤维通路联系起来。该方法确定了多个纤维束,包括主要的关联和投射通路,以及边缘系统、联合系统、视系统和小脑系统的纤维。总之,基于当前状态DTI的体内纤维束造影允许对完整猕猴大脑中的主要纤维通路进行全面分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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