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下丘中用于声音定位的频谱线索的听觉处理。

Auditory processing of spectral cues for sound localization in the inferior colliculus.

作者信息

Davis Kevin A, Ramachandran Ramnarayan, May Bradford J

机构信息

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD 21205, USA.

出版信息

J Assoc Res Otolaryngol. 2003 Jun;4(2):148-63. doi: 10.1007/s10162-002-2002-5.

Abstract

The head-related transfer function (HRTF) of the cat adds directionally dependent energy minima to the amplitude spectrum of complex sounds. These spectral notches are a principal cue for the localization of sound source elevation. Physiological evidence suggests that the dorsal cochlear nucleus (DCN) plays a critical role in the brainstem processing of this directional feature. Type O units in the central nucleus of the inferior colliculus (ICC) are a primary target of ascending DCN projections and, therefore, may represent midbrain specializations for the auditory processing of spectral cues for sound localization. Behavioral studies confirm a loss of sound orientation accuracy when DCN projections to the inferior colliculus are surgically lesioned. This study used simple analogs of HRTF notches to characterize single-unit response patterns in the ICC of decerebrate cats that may contribute to the directional sensitivity of the brain's spectral processing pathways. Manipulations of notch frequency and bandwidth demonstrated frequency-specific excitatory responses that have the capacity to encode HRTF-based cues for sound source location. These response patterns were limited to type O units in the ICC and have not been observed for the projection neurons of the DCN. The unique spectral integration properties of type O units suggest that DCN influences are transformed into a more selective representation of sound source location by a local convergence of wideband excitatory and frequency-tuned inhibitory inputs.

摘要

猫的头部相关传递函数(HRTF)会在复杂声音的振幅谱中添加与方向相关的能量最小值。这些频谱陷波是声源高度定位的主要线索。生理学证据表明,背侧耳蜗核(DCN)在脑干对这种方向特征的处理中起关键作用。下丘中央核(ICC)中的O型神经元是DCN上行投射的主要目标,因此可能代表了中脑对声音定位频谱线索进行听觉处理的特化。行为学研究证实,当DCN至下丘的投射通过手术损伤后,声音定向准确性会丧失。本研究使用HRTF陷波的简单模拟来表征去大脑猫ICC中的单神经元反应模式,这些模式可能有助于大脑频谱处理通路的方向敏感性。对陷波频率和带宽的操作显示出频率特异性的兴奋性反应,这些反应有能力编码基于HRTF的声源位置线索。这些反应模式仅限于ICC中的O型神经元,在DCN的投射神经元中未观察到。O型神经元独特的频谱整合特性表明,通过宽带兴奋性和频率调谐抑制性输入的局部汇聚,DCN的影响被转化为声源位置更具选择性的表征。

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