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Interaction of spatial and non-spatial cues in auditory stream segregation in the European starling

机译:空间和非空间线索在欧洲椋鸟听觉流中的相互作用

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摘要

Integrating sounds from the same source and segregating sounds from different sources in an acoustic scene are an essential function of the auditory system. Naturally, the auditory system simultaneously makes use of multiple cues. Here, we investigate the interaction between spatial cues and frequency cues in stream segregation of European starlings (Sturnus vulgaris) using an objective measure of perception. Neural responses to streaming sounds were recorded, while the bird was performing a behavioural task that results in a higher sensitivity during a one-stream than a two-stream percept. Birds were trained to detect an onset time shift of a B tone in an ABA- triplet sequence in which A and B could differ in frequency and/or spatial location. If the frequency difference or spatial separation between the signal sources or both were increased, the behavioural time shift detection performance deteriorated. Spatial separation had a smaller effect on the performance compared to the frequency difference and both cues additively affected the performance. Neural responses in the primary auditory forebrain were affected by the frequency and spatial cues. However, frequency and spatial cue differences being sufficiently large to elicit behavioural effects did not reveal correlated neural response differences. The difference between the neuronal response pattern and behavioural response is discussed with relation to the task given to the bird. Perceptual effects of combining different cues in auditory scene analysis indicate that these cues are analysed independently and given different weights suggesting that the streaming percept arises consecutively to initial cue analysis.
机译:在一个声学场景中,整合来自同一来源的声音和分离来自不同来源的声音是听觉系统的基本功能。自然,听觉系统同时利用多种线索。在这里,我们研究了欧洲椋鸟(Sturnus vulgaris)流分离中空间线索和频率线索之间的相互作用,使用了一种客观的感知测量方法。当鸟在执行一项行为任务时,记录了对流动声音的神经反应,该任务导致单流感知比双流感知具有更高的灵敏度。对鸟类进行训练,以检测ABA-三联体序列中B音调的开始时间偏移,其中a和B的频率和/或空间位置可能不同。如果信号源之间或两者之间的频率差或空间间隔增大,则行为时移检测性能恶化。与频率差异相比,空间分离对表现的影响较小,两种线索对表现都有额外的影响。初级听觉前脑的神经反应受频率和空间线索的影响。然而,频率和空间线索差异足够大,足以引发行为效应,并没有揭示相关的神经反应差异。神经元反应模式和行为反应之间的差异与给予鸟类的任务有关。在听觉场景分析中结合不同线索的感知效果表明,这些线索是独立分析的,并赋予不同的权重,这表明流感知是在初始线索分析之后连续出现的。

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