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人脑顶内沟和延森前中间顶沟的形态模式。

Morphological patterns of the intraparietal sulcus and the anterior intermediate parietal sulcus of Jensen in the human brain.

作者信息

Zlatkina Veronika, Petrides Michael

机构信息

Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada H3A 2B4

Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada H3A 2B4.

出版信息

Proc Biol Sci. 2014 Dec 22;281(1797). doi: 10.1098/rspb.2014.1493.

Abstract

Distinct parts of the intraparietal sulcal cortex contribute to sensorimotor integration and visual spatial attentional processing. A detailed examination of the morphological relations of the different segments of the complex intraparietal sulcal region in the human brain in standard stereotaxic space, which is a prerequisite for detailed structure-to-function studies, is not available. This study examined the intraparietal sulcus (IPS) and the related sulcus of Jensen in magnetic resonance imaging brain volumes registered in the Montreal Neurological Institute stereotaxic space. It was demonstrated that the IPS is divided into two branches: the anterior ramus and the posterior ramus of the IPS, often separated by a submerged gyral passage. The sulcus of Jensen emerges between the anterior and posterior rami of the IPS, and its ventral end is positioned between the first and second caudal branches of the superior temporal sulcus. In a small number of brains, the sulcus of Jensen may merge superficially with the first caudal branch of the superior temporal sulcus. The above morphological findings are discussed in relation to previously reported functional neuroimaging findings and provide the basis for future exploration of structure-to-function relations in the posterior parietal region of individual subjects.

摘要

顶内沟皮质的不同部分有助于感觉运动整合和视觉空间注意力处理。目前尚无对人脑复杂顶内沟区域不同节段在标准立体定向空间中的形态关系进行详细检查,而这是详细的结构与功能研究的前提条件。本研究在蒙特利尔神经病学研究所立体定向空间中对磁共振成像脑容积中的顶内沟(IPS)和相关的詹森沟进行了检查。结果表明,IPS分为两个分支:IPS的前支和后支,通常由一条隐藏的脑回通道分隔。詹森沟出现在IPS的前支和后支之间,其腹端位于颞上沟的第一和第二尾侧分支之间。在少数大脑中,詹森沟可能在表面上与颞上沟的第一尾侧分支融合。上述形态学发现结合先前报道的功能神经影像学发现进行了讨论,并为未来探索个体受试者后顶叶区域的结构与功能关系提供了基础。

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