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灵长类动物听觉皮层的分区及处理水平

Subdivisions of auditory cortex and levels of processing in primates.

作者信息

Kaas J H, Hackett T A

机构信息

Department of Psychology, Vanderbilt University, Nashville, TN 37240, USA.

出版信息

Audiol Neurootol. 1998 Mar-Jun;3(2-3):73-85. doi: 10.1159/000013783.

Abstract

In a series of experiments on New World and Old World monkeys, architectonic features of auditory cortex were related to tone frequency maps and patterns of connections to generate and evaluate theories of cortical organization. The results suggest that cortical processing of auditory information involves a number of functionally distinct fields that can be broadly grouped into four or more levels of processing. At the first level, there are three primary-like areas, each with a discrete pattern of tonotopic organization, koniocortical histological features, and direct inputs from the ventral division of the medial geniculate complex. These three core areas are interconnected and project to a narrow surrounding belt of perhaps seven areas which receive thalamic input from the major divisions of the medial geniculate complex, the suprageniculate/limitans complex, and the medial pulvinar. The belt areas connect with a lateral parabelt region of two or more fields that are almost devoid of direct connections with the core and the ventral division of the medial geniculate complex. The parabelt fields connect with more distant cortex in the superior temporal gyrus, superior temporal sulcus, and prefrontal cortex. The results indicate that auditory processing involves 15 or more cortical areas, each of which is interconnected with a number of other fields, especially adjoining fields of the same level.

摘要

在一系列针对新大陆猴和旧大陆猴的实验中,听觉皮层的构筑特征与音调频率图谱以及连接模式相关,以此来生成和评估皮层组织理论。结果表明,听觉信息的皮层处理涉及多个功能不同的区域,这些区域大致可分为四个或更多处理层次。在第一个层次,有三个初级样区域,每个区域都有离散的音调组织模式、颗粒状皮层组织学特征,以及来自内侧膝状体复合体腹侧部的直接输入。这三个核心区域相互连接,并投射到一个狭窄的周边带,该周边带可能包含七个区域,这些区域接受来自内侧膝状体复合体主要部分、上膝状体/界带复合体以及内侧丘脑枕的丘脑输入。周边带区域与两个或更多区域的外侧旁带区域相连,这些区域几乎与核心区域和内侧膝状体复合体腹侧部没有直接连接。旁带区域与颞上回、颞上沟和前额叶皮层中更远的皮层相连。结果表明,听觉处理涉及15个或更多的皮层区域,每个区域都与许多其他区域相互连接,尤其是同一层次相邻的区域。

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