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大鼠下丘中具有重叠频谱的并发声音的神经表征:时间精细结构与包络之间的比较。

Neural representations of concurrent sounds with overlapping spectra in rat inferior colliculus: Comparisons between temporal-fine structure and envelope.

作者信息

Luo Lu, Wang Qian, Li Liang

机构信息

Department of Psychology and Beijing Key Laboratory of Behavior and Mental Health, Peking University, Beijing, China.

Department of Psychology and Beijing Key Laboratory of Behavior and Mental Health, Peking University, Beijing, China; Beijing Key Laboratory of Epilepsy, Epilepsy Center, Department of Functional Neurosurgery, Sanbo Brain Hospital, Capital Medical University, Beijing, China.

出版信息

Hear Res. 2017 Sep;353:87-96. doi: 10.1016/j.heares.2017.06.005. Epub 2017 Jun 17.

DOI:10.1016/j.heares.2017.06.005
PMID:28655419
Abstract

Perceptual segregation of multiple sounds, which overlap in both time and spectra, into individual auditory streams is critical for hearing in natural environments. Some cues such as interaural time disparities (ITDs) play an important role in the segregation, especially when sounds are separated in space. In this study, we investigated the neural representation of two uncorrelated narrowband noises that shared the identical spectrum in the rat inferior colliculus (IC) using frequency-following-response (FFR) recordings, when the ITD for each noise stimulus was manipulated. The results of this study showed that recorded FFRs exhibited two distinctive components: the fast-varying temporal fine structure (TFS) component (FFR) and the slow-varying envelope component (FFR). When a single narrowband noise was presented alone, the FFR but not the FFR, was sensitive to ITDs. When two narrowband noises were presented simultaneously, the FFR took advantage of the ITD disparity that was associated with perceived spatial separation between the two concurrent sounds, and displayed a better linear synchronization to the sound with an ipsilateral-leading ITD. However, no effects of ITDs were found on the FFR. These results suggest that the FFR and FFR represent two distinct types of signal processing in the auditory brainstem and contribute differentially to sound segregation based on spatial cues: the FFR is more critical to spatial release from masking.

摘要

在自然环境中,将多个在时间和频谱上都重叠的声音感知分离为独立的听觉流对于听觉至关重要。一些线索,如耳间时间差异(ITD),在这种分离中起着重要作用,特别是当声音在空间上分开时。在本研究中,我们使用频率跟随反应(FFR)记录,在操纵每个噪声刺激的ITD的情况下,研究了大鼠下丘(IC)中具有相同频谱的两个不相关窄带噪声的神经表征。本研究结果表明,记录的FFR表现出两个独特的成分:快速变化的时间精细结构(TFS)成分(FFR)和缓慢变化的包络成分(FFR)。当单独呈现单个窄带噪声时,FFR而非FFR对ITD敏感。当同时呈现两个窄带噪声时,FFR利用了与两个同时存在的声音之间感知到的空间分离相关的ITD差异,并对具有同侧领先ITD的声音表现出更好的线性同步。然而,未发现ITD对FFR有影响。这些结果表明,FFR和FFR代表了听觉脑干中两种不同类型的信号处理,并基于空间线索对声音分离有不同贡献:FFR对掩蔽中的空间释放更为关键。

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