首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Neural Representation of Interaural Time Differences in Humans—an Objective Measure that Matches Behavioural Performance
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Neural Representation of Interaural Time Differences in Humans—an Objective Measure that Matches Behavioural Performance

机译:人类耳间时间差异的神经表征-一种与行为表现相匹配的客观测量

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摘要

Humans, and many other species, exploit small differences in the timing of sounds at the two ears (interaural time difference, ITD) to locate their source and to enhance their detection in background noise. Despite their importance in everyday listening tasks, however, the neural representation of ITDs in human listeners remains poorly understood, and few studies have assessed ITD sensitivity to a similar resolution to that reported perceptually. Here, we report an objective measure of ITD sensitivity in electroencephalography (EEG) signals to abrupt modulations in the interaural phase of amplitude-modulated low-frequency tones. Specifically, we measured following responses to amplitude-modulated sinusoidal signals (520-Hz carrier) in which the stimulus phase at each ear was manipulated to produce discrete interaural phase modulations at minima in the modulation cycle—interaural phase modulation following responses (IPM-FRs). The depth of the interaural phase modulation (IPM) was defined by the sign and the magnitude of the interaural phase difference (IPD) transition which was symmetric around zero. Seven IPM depths were assessed over the range of ±22 ° to ±157 °, corresponding to ITDs largely within the range experienced by human listeners under natural listening conditions (120 to 841 μs). The magnitude of the IPM-FR was maximal for IPM depths in the range of ±67.6 ° to ±112.6 ° and correlated well with performance in a behavioural experiment in which listeners were required to discriminate sounds containing IPMs from those with only static IPDs. The IPM-FR provides a sensitive measure of binaural processing in the human brain and has a potential to assess temporal binaural processing.
机译:人类和许多其他物种利用两只耳朵的声音时序的细微差异(耳间时差,ITD)来定位其来源并增强其对背景噪声的检测能力。尽管它们在日常聆听任务中很重要,但是人们对ITD在听众中的神经表示仍然知之甚少,并且很少有研究评估ITD对与感知报告的分辨率相似的分辨率的敏感性。在这里,我们报告客观测量脑电图(EEG)信号中ITD灵敏度的幅度调制的低频音的听觉阶段中的突然调制。具体来说,我们测量了对振幅调制正弦信号(520 Hz载波)的响应,其中在每个调制周期中,每只耳朵的刺激相位均被操纵以产生离散的耳间相位调制-响应后的耳间相位调制(IPM-FRs )。耳间相位调制(IPM)的深度由符号和在零附近对称的耳间相位差(IPD)过渡幅度决定。在±22°至±157°的范围内评估了七个IPM深度,对应于ITD很大程度上处于人类聆听者在自然聆听条件下(120至841μs)经历的范围内。 IPM-FR的幅度在±67.6°至±112.6°范围内的IPM深度最大,并且与行为实验中的表现很好相关,在该行为实验中,要求听众将包含IPM的声音与仅具有静态IPD的声音区分开。 IPM-FR提供了人脑中双耳处理的灵敏措施,并具有评估临时双耳处理的潜力。

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