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下丘中的经验依赖性可塑性:谷仓猫头鹰听觉空间神经表征视觉校准的位点。

Experience-dependent plasticity in the inferior colliculus: a site for visual calibration of the neural representation of auditory space in the barn owl.

作者信息

Brainard M S, Knudsen E I

机构信息

Department of Neurobiology, Stanford University, California 94305-5401.

出版信息

J Neurosci. 1993 Nov;13(11):4589-608. doi: 10.1523/JNEUROSCI.13-11-04589.1993.

Abstract

The optic tectum (homolog of the superior colliculus) contains mutually aligned neural maps of auditory and visual space. During development, the organization of the auditory map is guided by spatial information provided by vision: barn owls raised wearing prismatic spectacles, which optically shift the visual field and the visual map in the optic tectum, develop an auditory map that is shifted by an approximately equivalent amount, such that alignment between the two maps is preserved (Knudsen and Brainard, 1991). In this study we investigated whether this shift in the auditory map is intrinsic to the optic tectum or whether it reflects plasticity at an earlier stage in the auditory pathway. Owls were raised wearing prismatic spectacles that displaced the visual field by 23 degrees to the left or right. This manipulation alters the normal correspondence between locations in the visual field and interaural time difference (ITD), the primary cue for the azimuth of a sound source. In normal owls and in owls with at least 150 d of prism experience, extracellular unit recordings were used to assess the representations of ITD at anatomically and physiologically defined sites in the optic tectum and in the two prior stages of the auditory pathway, the external and central nuclei of the inferior colliculus (ICx and ICc). In the optic tectum of normal owls, the values of ITD to which units responded most strongly (best ITDs) varied systematically with the azimuths of unit visual receptive fields (VRFs). In the prism-reared owls, best ITDs were shifted from normal toward the values of ITD produced by sounds at the locations of the units' optically displaced VRFs. In the ICx of prism-reared owls, the representation of ITD also was shifted from normal, by an amount and in a direction that could completely account for the shift in ITD measured in the optic tectum. At some sites in the ICx, the shift in ITD tuning was apparent within the first 7-8 msec of the response; shifted tuning at such short latencies argues that the altered representation of ITD in the ICx reflects plasticity in the ascending auditory pathway, and is not the result of descending activity from higher auditory centers. In the ICc, which immediately precedes the ICx in the ascending pathway, the representation of ITD was normal. The results indicate that the visual instruction of auditory spatial tuning of neurons in the optic tectum reflects plasticity at the level of the ICx, the site where the auditory map of space is first synthesized.

摘要

视顶盖(与上丘同源)包含听觉和视觉空间相互对齐的神经图谱。在发育过程中,听觉图谱的组织由视觉提供的空间信息引导:戴着棱镜眼镜饲养的仓鸮,其视觉场和视顶盖中的视觉图谱会发生光学偏移,它们发育出的听觉图谱也会有大致等量的偏移,从而保持两张图谱之间的对齐(克努森和布雷纳德,1991年)。在本研究中,我们调查了听觉图谱的这种偏移是视顶盖固有的,还是反映了听觉通路早期阶段的可塑性。给仓鸮戴上能使视野向左或向右偏移23度的棱镜眼镜进行饲养。这种操作改变了视野中位置与双耳时间差(ITD)之间的正常对应关系,而ITD是声源方位的主要线索。在正常仓鸮和有至少150天棱镜佩戴经历的仓鸮中,通过细胞外单位记录来评估视顶盖以及听觉通路的两个先前阶段(下丘的外侧核和中央核,即ICx和ICc)中在解剖学和生理学上定义的位点处ITD的表征。在正常仓鸮的视顶盖中,单位反应最强烈的ITD值(最佳ITD)随单位视觉感受野(VRF)的方位而系统变化。在戴棱镜饲养的仓鸮中,最佳ITD从正常情况向由单位光学偏移的VRF位置处声音产生的ITD值偏移。在戴棱镜饲养的仓鸮的ICx中,ITD的表征也从正常情况发生了偏移,偏移量和方向能够完全解释在视顶盖中测量到的ITD偏移。在ICx的某些位点,ITD调谐的偏移在反应的最初7 - 8毫秒内就很明显;如此短潜伏期的调谐偏移表明ICx中ITD表征的改变反映了上行听觉通路的可塑性,而不是来自更高听觉中枢的下行活动的结果。在ICc中,其在上升通路中紧接在ICx之前,ITD的表征是正常的。结果表明,视顶盖中神经元听觉空间调谐的视觉指令反映了ICx水平的可塑性,ICx是空间听觉图谱首次合成的位点。

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