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Adaptation of Binaural Processing in the Adult Brainstem Induced by Ambient Noise

机译:环境噪声引起的成人脑干中双耳处理的适应性

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摘要

Interaural differences in stimulus intensity and timing are major cues for sound localization. In mammals, these cues are first processed in the lateral and medial superior olive by interaction of excitatory and inhibitory synaptic inputs from ipsi- and contralateral cochlear nucleus neurons. To preserve sound localization acuity following changes in the acoustic environment, the processing of these binaural cues needs neuronal adaptation. Recent studies have shown that binaural sensitivity adapts to stimulation history within milliseconds, but the actual extent of binaural adaptation is unknown. In the current study, we investigated long-term effects on binaural sensitivity using extracellular in vivo recordings from single neurons in the dorsal nucleus of the lateral lemniscus that inherit their binaural properties directly from the lateral and medial superior olives. In contrast to most previous studies, we used a noninvasive approach to influence this processing. Adult gerbils were exposed for 2 weeks to moderate noise with no stable binaural cue. We found monaural response properties to be unaffected by this measure. However, neuronal sensitivity to binaural cues was reversibly altered for a few days. Computational models of sensitivity to interaural time and level differences suggest that upregulation of inhibition in the superior olivary complex can explain the electrophysiological data.
机译:刺激强度和时机的耳间差异是声音定位的主要提示。在哺乳动物中,首先通过同侧和对侧人工耳蜗神经元的兴奋性和抑制性突触输入的相互作用,首先在外侧和内侧上橄榄中处理这些提示。为了保持声学环境变化后的声音定位敏锐度,这些双耳提示的处理需要神经元适应。最近的研究表明,双耳敏感性在几毫秒内就可以适应刺激历史,但是双耳适应的实际程度尚不清楚。在当前的研究中,我们使用来自外侧红单侧背核中单个神经元的细胞外体内记录,研究了对双耳敏感性的长期影响,该单神经元直接从外侧和内侧上级橄榄继承了双耳特性。与大多数以前的研究相比,我们使用了一种非侵入性方法来影响这一过程。成年沙鼠在中等噪音下暴露2周,没有稳定的双耳提示。我们发现单耳反应属性不受此措施的影响。然而,对双耳提示的神经元敏感性几天来可逆地改变。对耳间时间和水平差异的敏感性的计算模型表明上橄榄复合物中抑制作用的上调可以解释电生理数据。

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