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猫前外侧薛氏回皮质(AEC)中的感觉模态分布。

Sensory modality distribution in the anterior ectosylvian cortex (AEC) of cats.

作者信息

Jiang H, Lepore F, Ptito M, Guillemot J P

机构信息

Department de Psychologie, Université de Montréal, Qué., Canada.

出版信息

Exp Brain Res. 1994;97(3):404-14. doi: 10.1007/BF00241534.

Abstract

Modality specificity of neuronal responses to visual, somesthetic and auditory stimuli was investigated in the anterior ectosylvian cortex (AEC) of cats, using single-unit recording techniques. Seven classes of neurons were found, and according to their responsiveness to sensory stimuli regrouped into three categories: unimodal, bimodal and trimodal. Unimodal cells that responded to only one of the three stimulus modalities formed 59% of the units; 30.2% were bimodal, in that they showed a clear increase of neuronal discharges to two of the three stimulus types; 10.8% were defined as trimodal because they responded to all three stimulus modalities. Although the different categories of cells were intermingled within the AEC, indicating a certain degree of overlap between sensory modalities, some clustering of cell types was nonetheless evident. Thus, the somatosensory responsive cells were mainly located in the anterior two-thirds of the dorsal bank of the anterior ectosylvian sulcus. Visually responsive cells were concentrated on the ventral bank of the sulcus, whereas neurons with an auditory response occupied the banks and fundus of the posterior three-quarters of the sulcus. The histological distribution and physiological properties of AEC neurons suggest that this cortical region is a higher-order associative area whose function may be to integrate information from different sensory modalities.

摘要

利用单单位记录技术,在猫的前外侧沟回皮质(AEC)中研究了神经元对视觉、躯体感觉和听觉刺激反应的模态特异性。发现了七类神经元,并根据它们对感觉刺激的反应性重新分为三类:单模态、双模态和三模态。仅对三种刺激模态之一有反应的单模态细胞占细胞总数的59%;30.2%为双模态,即它们对三种刺激类型中的两种刺激的神经元放电有明显增加;10.8%被定义为三模态,因为它们对所有三种刺激模态都有反应。尽管不同类别的细胞在AEC内相互交织,表明感觉模态之间存在一定程度的重叠,但细胞类型仍有一些聚类现象明显。因此,躯体感觉反应细胞主要位于前外侧沟回背侧缘前三分之二处。视觉反应细胞集中在沟回腹侧缘,而有听觉反应的神经元占据沟回后四分之三的边缘和底部。AEC神经元的组织学分布和生理特性表明,该皮质区域是一个高级联合区,其功能可能是整合来自不同感觉模态的信息。

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