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Binaural response organization within a frequency-band representation of the inferior colliculus: implications for sound localization

机译:下丘的频带表示内的双耳反应组织:对声音定位的影响

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摘要

The auditory system of the mustache bat (Pteronotus parnellii) contains a disproportionately large representation of a narrow frequency band, corresponding to the dominant, 60 kHz component of its echolocation signal. In the inferior colliculus (IC), the 60 kHz representation comprises an architectonically distinct region called the dorsoposterior division (DPD), which is accessible for detailed physiological study. We examined the topographic distribution of binaural responses within this one frequency-band representation of the inferior colliculus. We describe two primary results. First, neurons with different binaural response properties are spatially segregated into one of four binaural response-specific regions of the DPD: a large region of monaural (EO) responses; two regions containing neurons excited by sound from both ears (EE); and a region containing neurons excited by one ear and inhibited by the other (EI). Regions dominated by 60 kHz EI responses are also found in the lateral extremity of the IC, probably within the external nucleus. These results demonstrate functionally defined subdivisions in a single frequency-band representation of the IC. Moreover, they suggest that brain stem auditory projections to the DPD and/or intrinsic connections within the DPD are highly organized. Second, within the EI region of the DPD, there is a systematic shift in the sensitivity of EI multiunit responses to interaural intensity disparities (IIDs). Dorsally, EI neurons are suppressed only by relatively loud ipsilateral sounds, and there is a systematic decrease in the relative ipsilateral intensity required for suppression at more ventral recording sites. This result demonstrates that neurons sensitive to a sound localization cue are systematically organized within a frequency-band representation of the inferior colliculus. It has implications for the manner in which the location of a sound source is encoded within the primary auditory pathway.
机译:小胡子蝙蝠(Pteronotus parnellii)的听觉系统包含一个狭窄频带的不成比例的大型表示形式,对应于其回声定位信号的主要60 kHz分量。在下丘脑(IC)中,60 kHz表示包括一个称为背后肌区(DPD)的结构上不同的区域,可用于详细的生理学研究。我们检查了下丘的这一频带表示内双耳反应的地形分布。我们描述了两个主要结果。首先,具有不同双耳响应特性的神经元在空间上被分为DPD的四个双耳响应特定区域之一:大的单耳(EO)反应区域;两个区域包含被来自双耳(EE)的声音激发的神经元;以及包含被一只耳朵激发而被另一只耳朵抑制的神经元的区域(EI)。在IC的外侧末端,也可能在外核内,也发现了以60 kHz EI响应为主的区域。这些结果证明了在IC的单个频带表示中的功能定义的细分。此外,他们认为脑干听觉投影到DPD和/或DPD内部的内在联系是高度组织的。其次,在DPD的EI区域内,EI多单位反应对听觉强度差异(IID)的敏感性发生了系统性变化。背面,EI神经元仅被相对较大的同侧声音抑制,并且在更多腹侧记录部位抑制所需的相对同侧强度有系统地降低。该结果表明,对声音定位提示敏感的神经元在下丘的频带表示中被系统地组织。它对在主要听觉通路内编码声源位置的方式有影响。

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