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在蝙蝠下丘脑中对两耳起始时间差的高频敏感性。

High frequency sensitivity to interaural onset time differences in the bat inferior colliculus.

机构信息

Department of Psychology, Neuroscience & Behaviour, McMaster University, Hamilton, ON, L8S 4K1, Canada.

Department of Psychology, Neuroscience & Behaviour, McMaster University, Hamilton, ON, L8S 4K1, Canada.

出版信息

Hear Res. 2021 Feb;400:108133. doi: 10.1016/j.heares.2020.108133. Epub 2020 Nov 30.

DOI:10.1016/j.heares.2020.108133
PMID:33340969
Abstract

Many neurons in the auditory midbrain are tuned to binaural cues. Two prominent binaural cues are the interaural level difference (ILD) and the interaural time difference (ITD). The ITD cue can further be subdivided into the ongoing envelope ITD cues and transient onset ITD cues. More is known about the sensitivity of single neurons to ongoing envelope ITDs compared to transient onset ITDs in the mammalian auditory system, particularly in bats. The current study examines the response properties of single neurons in the inferior colliculus (IC) of the big brown bat, Eptesicus fuscus, to onset ITDs in response to high frequency pure tones. Measures of neurons' dynamic ITD response revealed an average change of 36% of its maximum response within the behaviorally relevant range of ITDs (±50 µs). Across all IC neurons, we measured an average time-intensity trading ratio of 30 µs/dB in the sensitivity of the ITD response function to changing ILDs. Minimum and maximum ITD responses were clustered within a narrow range of ITDs. The average peak in the ITD response function was at 268 µs, a finding that is consistent with other non-echolocating mammals. Some ITD-sensitive neurons also showed weak facilitation of maximum response during binaural stimulation, compared to monaural stimulation. These results suggest that echolocating bats possess the potential to use onset ITD cues to assist in the azimuthal sound localization of ultrasonic frequencies.

摘要

许多听觉中脑神经元对双耳线索敏感。两个突出的双耳线索是耳间水平差 (ILD) 和耳间时间差 (ITD)。ITD 线索可进一步细分为持续包络 ITD 线索和瞬态起始 ITD 线索。与哺乳动物听觉系统,特别是蝙蝠相比,人们对单个神经元对持续包络 ITD 的敏感性了解更多,而对瞬态起始 ITD 的了解较少。本研究检查了大棕蝠 (Eptesicus fuscus) 下丘 (IC) 中单个神经元对高频纯音起始 ITD 的反应特性。神经元动态 ITD 反应的测量结果显示,在行为相关的 ITD 范围内 (±50 µs),其最大反应的平均变化为 36%。在所有 IC 神经元中,我们测量了 ITD 反应函数对变化的 ILD 的敏感性的平均时间-强度交易比为 30 µs/dB。最小和最大 ITD 反应在 ITD 范围内聚类。ITD 反应函数的平均峰值为 268 µs,这一发现与其他非回声定位哺乳动物一致。一些对 ITD 敏感的神经元在双耳刺激下与单耳刺激相比,最大反应也表现出较弱的易化。这些结果表明,回声定位蝙蝠有可能利用起始 ITD 线索来辅助超声频率的方位声定位。

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