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半球间通路在听觉中的作用。

The role of the interhemispheric pathway in hearing.

作者信息

Bamiou Doris-Eva, Sisodiya Sanjay, Musiek Frank E, Luxon Linda M

机构信息

Neuro-otology Department, National Hospital for Neurology and Neurosurgery, Queen Square, London WC1N 3BG, UK.

出版信息

Brain Res Rev. 2007 Nov;56(1):170-82. doi: 10.1016/j.brainresrev.2007.07.003. Epub 2007 Jul 17.

Abstract

The corpus callosum consists of heavily myelinated fibres connecting the two hemispheres. Its caudal portion and splenium contain fibres that originate from the primary and second auditory cortices, and from other auditory responsive areas. The anterior commissure in humans is much smaller than the corpus callosum, and it also contains interhemispheric fibres from auditory responsive cortical areas. The corpus callosum is exclusively present in placental mammals, while in acallosal mammals, most of the corpus callosum-related functions are carried out by the anterior commissure. The exact contribution of these two structures and of interhemispheric transfer in hearing in humans is still a matter of debate. In more recent years, human behavioural studies which employ psychoacoustic tasks designed to tap into interhemispheric transfer, combined with sophisticated neuroimaging paradigms, have helped to interpret information from animal experiments and post-mortem studies. This review will summarize and discuss the available information of the contributions of the human interhemispheric pathway in hearing in humans from behavioural, neuroimaging and histopathological studies in humans.

摘要

胼胝体由连接两个半球的大量有髓纤维组成。其尾部和压部包含起源于初级和次级听觉皮层以及其他听觉反应区域的纤维。人类的前连合比胼胝体小得多,它也包含来自听觉反应皮层区域的半球间纤维。胼胝体仅存在于胎盘哺乳动物中,而在无胼胝体的哺乳动物中,大多数与胼胝体相关的功能由前连合执行。这两种结构以及半球间传递在人类听力中的具体作用仍存在争议。近年来,采用旨在探究半球间传递的心理声学任务的人类行为研究,结合复杂的神经成像范式,有助于解释来自动物实验和尸检研究的信息。本综述将总结并讨论来自人类行为、神经成像和组织病理学研究的关于人类半球间通路在听力中作用的现有信息。

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