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声音定位中的适应:从 GABA(B)受体介导的突触调制到感知。

Adaptation in sound localization: from GABA(B) receptor-mediated synaptic modulation to perception.

机构信息

Division of Neurobiology, Department Biologie II, Ludwig-Maximilians-Universität München, Planegg-Martinsried, Germany.

出版信息

Nat Neurosci. 2013 Dec;16(12):1840-7. doi: 10.1038/nn.3548. Epub 2013 Oct 20.

Abstract

Across all sensory modalities, the effect of context-dependent neural adaptation can be observed at every level, from receptors to perception. Nonetheless, it has long been assumed that the processing of interaural time differences, which is the primary cue for sound localization, is nonadaptive, as its outputs are mapped directly onto a hard-wired representation of space. Here we present evidence derived from in vitro and in vivo experiments in gerbils indicating that the coincidence-detector neurons in the medial superior olive modulate their sensitivity to interaural time differences through a rapid, GABA(B) receptor-mediated feedback mechanism. We show that this mechanism provides a gain control in the form of output normalization, which influences the neuronal population code of auditory space. Furthermore, psychophysical tests showed that the paradigm used to evoke neuronal GABA(B) receptor-mediated adaptation causes the perceptual shift in sound localization in humans that was expected on the basis of our physiological results in gerbils.

摘要

在所有感觉模态中,从受体到感知,都可以观察到上下文相关的神经适应的影响。尽管如此,长期以来一直认为,作为声音定位主要线索的耳间时间差处理是非适应性的,因为其输出直接映射到空间的硬连线表示上。在这里,我们提出了来自沙鼠体外和体内实验的证据,表明中橄榄核上的吻合检测器神经元通过快速的 GABA(B) 受体介导的反馈机制调节其对耳间时间差的敏感性。我们表明,这种机制以输出归一化的形式提供了增益控制,从而影响听觉空间的神经元群体代码。此外,心理物理测试表明,用于引发神经元 GABA(B) 受体介导适应的范式会导致人类声音定位的感知转变,这是基于我们在沙鼠中的生理结果所预期的。

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