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3.0T高分辨率磁共振成像皮质解剖结构:17区视区中Gennari条纹的检测

Imaging cortical anatomy by high-resolution MR at 3.0T: detection of the stripe of Gennari in visual area 17.

作者信息

Barbier Emmanuel L, Marrett Sean, Danek Adrian, Vortmeyer Alexander, van Gelderen Peter, Duyn Jeff, Bandettini Peter, Grafman Jordan, Koretsky Alan P

机构信息

Laboratory of Functional and Molecular Imaging, National Institute for Neurological Disorders and Stroke, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Magn Reson Med. 2002 Oct;48(4):735-8. doi: 10.1002/mrm.10255.

Abstract

The brain can be parcellated into numerous anatomical and functional subunits. The classic work by Brodmann (Vergleichende Lokalisationslehre der Grosshirnrinde in ihren Prinzipien dargestellt auf Grund des Zellenbaues. Leipzig: Barth; 1909) identified areas of the cerebral cortex based on histological differences. An alternative to his cytoarchitectonic approach is the myeloarchitectonic approach. MRI has excellent white/gray matter contrast in the brain due to the presence of myelin, and thus seems uniquely suited for in vivo studies of cortical myeloarchitecture. Here it is demonstrated that the stripe or stria of Gennari can be consistently detected in human occipital cortex. T(1)-weighted images obtained at 3T from six of 10 normal volunteers, with resolutions of 350 x 350 x 600 mu clearly demonstrate this myelin-rich intracortical layer. It is concluded that the striate cortex (area 17 of Brodmann) of the human brain can be delineated in vivo on T(1)-weighted images, potentially enabling detection of specific cortical boundaries within individual brains.

摘要

大脑可被划分为众多解剖学和功能亚单位。布罗德曼的经典著作(《基于细胞结构的大脑皮质比较定位学说》。莱比锡:巴特出版社;1909年)根据组织学差异确定了大脑皮质区域。他的细胞构筑学方法的一种替代方法是髓鞘构筑学方法。由于髓磷脂的存在,MRI在大脑中具有出色的白质/灰质对比度,因此似乎特别适合用于皮质髓鞘构筑的体内研究。在此证明,在人类枕叶皮质中可以持续检测到枕纹或亨氏纹。从10名正常志愿者中的6名在3T下获得的T(1)加权图像,分辨率为350×350×600微米,清楚地显示了这个富含髓磷脂的皮质内层。得出的结论是,人类大脑的纹状皮质(布罗德曼第17区)可以在T(1)加权图像上进行体内描绘,这有可能实现对个体大脑内特定皮质边界的检测。

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