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颞叶解剖:从宏观到微观。

Anatomy of the temporal lobe: From macro to micro.

机构信息

Institute of Neuroscience and Medicine, INM-1, Research Centre Juelich, Juelich, Germany.

Institute of Neuroscience and Medicine, INM-1, Research Centre Juelich, Juelich, Germany; C&O Vogt Institute for Brain Research, University Hospital Düsseldorf, Medical Faculty, Heinrich-Heine University, Düsseldorf, Germany.

出版信息

Handb Clin Neurol. 2022;187:17-51. doi: 10.1016/B978-0-12-823493-8.00009-2.

Abstract

The temporal cortex encompasses a large number of different areas ranging from the six-layered isocortex to the allocortex. The areas support auditory, visual, and language processing, as well as emotions and memory. The primary auditory cortex is found at the Heschl gyri, which develop early in ontogeny with the Sylvian fissure, a deep and characteristic fissure that separates the temporal lobe from the parietal and frontal lobes. Gyri and sulci as well as brain areas vary between brains and between hemispheres, partly linked to the functional organization of language and lateralization. Interindividual variability in anatomy makes a direct comparison between different brains in structure-functional analysis often challenging, but can be addressed by applying cytoarchitectonic probability maps of the Julich-Brain atlas. We review the macroanatomy of the temporal lobe, its variability and asymmetry at the macro- and the microlevel, discuss the relationship to brain areas and their microstructure, and emphasize the advantage of a multimodal approach to address temporal lobe organization. We review recent data on combined cytoarchitectonic and molecular architectonic studies of temporal areas, and provide links to their function.

摘要

颞叶皮层包含大量不同的区域,从六层的同型皮质到异质皮质。这些区域支持听觉、视觉和语言处理,以及情感和记忆。初级听觉皮层位于 Heschl 回,它在个体发生早期与西尔维安裂(Sylvian fissure)一起发育,西尔维安裂是一条深而特征性的裂,将颞叶与顶叶和额叶分开。脑回和脑沟以及脑区在不同的大脑和大脑半球之间存在差异,部分与语言的功能组织和偏侧化有关。解剖结构的个体间变异性使得在结构-功能分析中对不同大脑进行直接比较通常具有挑战性,但可以通过应用 Julich-Brain 图谱的细胞构筑概率图来解决。我们回顾了颞叶的宏观解剖结构、其在宏观和微观水平上的变异性和不对称性,讨论了与脑区及其微观结构的关系,并强调了采用多模态方法解决颞叶组织的优势。我们回顾了关于颞叶区域的细胞构筑和分子构筑综合研究的最新数据,并提供了与其功能的链接。

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