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猫听觉胼胝体纤维的双耳噪声刺激:对双耳时间延迟的反应。

Binaural noise stimulation of auditory callosal fibers of the cat: responses to interaural time delays.

作者信息

Poirier P, Lepore F, Provençal C, Ptito M, Guillemot J P

机构信息

Département de Psychologie, Université de Montréal, Succ. Centre-Ville, Canada.

出版信息

Exp Brain Res. 1995;104(1):30-40. doi: 10.1007/BF00229853.

Abstract

The corpus callosum, the principal neocortical commissure, allows for the interhemispheric transfer of lateralized information between the hemispheres. The aim of the present experiment was to study callosal transfer of auditory information in the cat, with particular reference to its contribution to sound localization. The corpus callosum was approached under direct visual control, and axonic responses were recorded under light anesthesia using glass micro-pipettes. Results showed that auditory information is transmitted in the posterior portion of the callosum. Diotic presentations, in which interaural time delay was manipulated, indicated that, for a large number of fibers, the largest excitatory or inhibitory interactions were obtained at null interaural time delay, a condition which supports the notion of a callosal contribution to auditory midline fusion. However, an important number of callosal fibers was also found to be excited maximally at specific, non-zero interaural time delays, suggesting that they preferred sounds situated at spatial locations other than the midline. The results are discussed in relation to those obtained electrophysiologically for the visual and somesthesic modalities and in terms of results obtained in human and animal behavioral experiments.

摘要

胼胝体是主要的新皮质连合纤维,它使得半球间的偏侧化信息得以在两个半球之间进行传递。本实验的目的是研究猫的胼胝体对听觉信息的传递,尤其关注其在声音定位方面的作用。在直接视觉控制下暴露胼胝体,并在轻度麻醉状态下使用玻璃微电极记录轴突反应。结果显示,听觉信息在胼胝体后部进行传递。通过双耳同时呈现并改变双耳时间延迟的实验表明,对于大量纤维而言,在双耳时间延迟为零时可获得最大的兴奋性或抑制性相互作用,这一情况支持了胼胝体对听觉中线融合有作用的观点。然而,也发现相当数量的胼胝体纤维在特定的、非零双耳时间延迟时被最大程度地激发,这表明它们偏好位于中线以外空间位置的声音。我们将结合视觉和躯体感觉模态的电生理实验结果以及人类和动物行为实验结果来讨论这些结果。

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