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颞叶的连接解剖。

The connectional anatomy of the temporal lobe.

机构信息

Natbrainlab, Department of Forensic and Neurodevelopmental Sciences, Institute of Psychiatry, Psychology and Neuroscience, London, United Kingdom; Department of Neuroimaging Sciences, Institute of Psychiatry, Psychology and Neuroscience, London, United Kingdom.

出版信息

Handb Clin Neurol. 2022;187:3-16. doi: 10.1016/B978-0-12-823493-8.00001-8.

Abstract

The idea of a temporal lobe separated from the rest of the hemisphere by reason of its unique structural and functional properties is a clinically useful artifact. While the temporal lobe can be safely defined as the portion of the cerebrum lodged in the middle cranial fossa, the pattern of its connections is a more revealing description of its functional subdivisions and specific contribution to higher cognitive functions. This chapter provides an historical overview of the anatomy of the temporal lobe and an updated framework of temporal lobe connections based on tractography studies of human and nonhuman primates and patients with brain disorders. Compared to monkeys, the human temporal lobe shows a relatively increased connectivity with perisylvian frontal and parietal regions and a set of unique intrinsic connections, which may have supported the evolution of working memory, semantic representation, and language in our species. Conversely, the decreased volume of the anterior (limbic) interhemispheric temporal connections in humans is related to a reduced reliance on olfaction and a partial transference of functions from the anterior commissure to the posterior corpus callosum. Overall the novel data from tractography suggest a revision of current dual stream models for visual and auditory processing.

摘要

颞叶与大脑其他部分分离的概念,是基于其独特的结构和功能特性,这在临床上是一个有用的概念。虽然颞叶可以被安全地定义为位于中颅窝的大脑部分,但它的连接模式更能揭示其功能分区和对高级认知功能的特定贡献。本章提供了颞叶解剖结构的历史概述,并基于人类和非人类灵长类动物以及脑疾病患者的轨迹研究,更新了颞叶连接的框架。与猴子相比,人类的颞叶与大脑外侧前额叶和顶叶区域的连接相对增加,并具有一组独特的内在连接,这可能支持了我们物种工作记忆、语义表达和语言的进化。相反,人类前(边缘)半球间颞叶连接体积的减小与嗅觉依赖的降低以及功能从前连合向后胼胝体的部分转移有关。总体而言,轨迹研究的新数据表明,目前关于视觉和听觉处理的双流模型需要修订。

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