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首页> 外文期刊>The European Journal of Neuroscience >Behavioural sensitivity to binaural spatial cues in ferrets: Evidence for plasticity in the duplex theory of sound localization
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Behavioural sensitivity to binaural spatial cues in ferrets: Evidence for plasticity in the duplex theory of sound localization

机译:雪貂中双层空间线索的行为敏感性:声音定位双面理论中可塑性的证据

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For over a century, the duplex theory has guided our understanding of human sound localization in the horizontal plane. According to this theory, the auditory system uses interaural time differences (ITDs) and interaural level differences (ILDs) to localize low-frequency and high-frequency sounds, respectively. Whilst this theory successfully accounts for the localization of tones by humans, some species show very different behaviour. Ferrets are widely used for studying both clinical and fundamental aspects of spatial hearing, but it is not known whether the duplex theory applies to this species or, if so, to what extent the frequency range over which each binaural cue is used depends on acoustical or neurophysiological factors. To address these issues, we trained ferrets to lateralize tones presented over earphones and found that the frequency dependence of ITD and ILD sensitivity broadly paralleled that observed in humans. Compared with humans, however, the transition between ITD and ILD sensitivity was shifted toward higher frequencies. We found that the frequency dependence of ITD sensitivity in ferrets can partially be accounted for by acoustical factors, although neurophysiological mechanisms are also likely to be involved. Moreover, we show that binaural cue sensitivity can be shaped by experience, as training ferrets on a 1-kHz ILD task resulted in significant improvements in thresholds that were specific to the trained cue and frequency. Our results provide new insights into the factors limiting the use of different sound localization cues and highlight the importance of sensory experience in shaping the underlying neural mechanisms.
机译:多世纪以来,双工理论引导了我们对水平面的人类声音定位的理解。根据该理论,听觉系统使用腔间时间差(IDD)和互联网水平差异(ILD)分别定位低频和高频声音。虽然这一理论成功地占人类的本地化,但某些物种表现出非常不同的行为。雪貂广泛用于研究空间听证的临床和基本方面,但是不知道双工理论是否适用于该物种,或者如果是,则使用每个双耳电气的频率范围在多大程度上取决于声学或神经生理因素。为了解决这些问题,我们培训了雪貂,以横穿耳机呈现的音调,发现ITD的频率依赖性和ILD敏感性大致平行​​于人类中观察到的。然而,与人类相比,ITD与ILD敏感度之间的过渡变为较高的频率。我们发现,雪貂中ITD敏感性的频率依赖性可以通过声学因素来部分地占据,尽管也可能涉及神经生理机制。此外,我们表明,如1-KHz ILD任务上的训练雪貂,可以通过经验形式塑造双耳提示灵敏度,导致培训的提示和频率特异的阈值的显着改进。我们的结果为限制不同声音定位线索的因素提供了新的见解,并突出了传感体验在塑造潜在的神经机制方面的重要性。

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