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早期单耳闭塞揭示的猫头鹰脑干(VLVp)听觉可塑性位点。

Site of auditory plasticity in the brain stem (VLVp) of the owl revealed by early monaural occlusion.

作者信息

Mogdans J, Knudsen E I

机构信息

Department of Neurobiology, Stanford Medical School, California 94305-5401.

出版信息

J Neurophysiol. 1994 Dec;72(6):2875-91. doi: 10.1152/jn.1994.72.6.2875.

Abstract
  1. The optic tectum of the barn owl contains a physiological map of interaural level difference (ILD) that underlies, in part, its map of auditory space. Monaural occlusion shifts the range of ILDs experienced by an animal and alters the correspondence of ILDs with source locations. Chronic monaural occlusion during development induces an adaptive shift in the tectal ILD map that compensates for the effects of the earplug. The data presented in this study indicate that one site of plasticity underlying this adaptive adjustment is in the posterior division of the ventral nucleus of the lateral lemniscus (VLVp), the first site of ILD comparison in the auditory pathway. 2. Single and multiple unit sites were recorded in the optic tecta and VLVps of ketamine-anesthetized owls. The owls were raised from 4 wk of age with one ear occluded with an earplug. Auditory testing, using digitally synthesized dichotic stimuli, was carried out 8-16 wk later with the earplug removed. The adaptive adjustment in ILD coding in each bird was quantified as the shift from normal ILD tuning measured in the optic tectum. Evidence of adaptive adjustment in the VLVp was based on statistical differences between the VLVp's ipsilateral and contralateral to the occluded ear in the sensitivity of units to excitatory-ear and inhibitory-ear stimulation. 3. The balance of excitatory to inhibitory influences on VLVp units was shifted in the adaptive direction in six out of eight owls. In three of these owls, adaptive differences in inhibition, but not in excitation, were found. For this group of owls, the patterns of response properties across the two VLVps can only be accounted for by plasticity in the VLVp. For the other three owls, the possibility that the difference between the two VLVps resulted from damage to one of the VLVps could not be eliminated, and for one of these, plasticity at a more peripheral site (in the cochlea or cochlear nucleus) could also explain the data. In the remaining two owls, there was no evidence of adaptive adjustment in the VLVp despite large adaptive adjustments in the optic tectum. 4. The adjustment of ILD coding in the VLVp was always substantially smaller than expected based on the adjustment of ILD tuning in the optic tectum measured in the same animals. This indicates the involvement of at least one additional site of adaptive plasticity in the auditory pathway above the level of the VLVp.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 仓鸮的视顶盖包含一个耳间水平差(ILD)的生理图谱,这在一定程度上构成了其听觉空间图谱的基础。单耳闭塞会改变动物所经历的ILD范围,并改变ILD与声源位置的对应关系。发育过程中的慢性单耳闭塞会导致视顶盖ILD图谱发生适应性变化,以补偿耳塞的影响。本研究中的数据表明,这种适应性调整背后的一个可塑性位点位于外侧丘系腹侧核的后部分(VLVp),这是听觉通路中进行ILD比较的第一个位点。2. 在氯胺酮麻醉的仓鸮的视顶盖和VLVp中记录单个和多个神经元位点。这些仓鸮从4周龄开始饲养,一只耳朵用耳塞闭塞。8 - 16周后,在移除耳塞的情况下,使用数字合成的双耳刺激进行听觉测试。每只鸟在ILD编码方面的适应性调整被量化为视顶盖中测量的正常ILD调谐的变化。VLVp中适应性调整的证据基于单位对兴奋性耳和抑制性耳刺激的敏感性在闭塞耳同侧和对侧VLVp之间的统计差异。3. 在八只仓鸮中的六只中,对VLVp单位的兴奋性与抑制性影响的平衡向适应性方向转变。在其中三只仓鸮中,发现了抑制方面的适应性差异,但兴奋方面没有。对于这组仓鸮,两个VLVp之间的反应特性模式只能通过VLVp中的可塑性来解释。对于另外三只仓鸮,两个VLVp之间的差异是由其中一个VLVp受损导致的可能性无法排除,对于其中一只,更外周位点(耳蜗或耳蜗核)的可塑性也可以解释这些数据。在剩下的两只仓鸮中,尽管视顶盖有很大的适应性调整,但VLVp中没有适应性调整的证据。4. 根据在同一动物中测量的视顶盖中ILD调谐的调整,VLVp中ILD编码的调整总是比预期的要小得多。这表明在听觉通路中,至少在VLVp水平之上还有一个额外的适应性可塑性位点参与其中。(摘要截断于400字)

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