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首页> 外文期刊>Journal of the Association for Research in Otolaryngology: JARO >Vocoder Simulations Explain Complex Pitch Perception Limitations Experienced by Cochlear Implant Users
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Vocoder Simulations Explain Complex Pitch Perception Limitations Experienced by Cochlear Implant Users

机译:Vocoder模拟解释了耳蜗植入用户经历的复杂音调感知局限

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摘要

Abstract Pitch plays a crucial role in speech and music, but is highly degraded for people with cochlear implants, leading to severe communication challenges in noisy environments. Pitch is determined primarily by the first few spectrally resolved harmonics of a tone. In implants, access to this pitch is limited by poor spectral resolution, due to the limited number of channels and interactions between adjacent channels. Here we used noise-vocoder simulations to explore how many channels, and how little channel interaction, are required to elicit pitch. Results suggest that two to four times the number of channels are needed, along with interactions reduced by an order of magnitude, than available in current devices. These new constraints not only provide insights into the basic mechanisms of pitch coding in normal hearing but also suggest that spectrally based complex pitch is unlikely to be generated in implant users without significant changes in the method or site of stimulation.
机译:摘要音高在言语和音乐中起着至关重要的作用,但对耳蜗植入物的人感到高度退化,导致嘈杂环境中的严重沟通挑战。 间距主要由音调的前几个光谱分辨的谐波确定。 在植入物中,由于相邻通道之间的通道数量和相互作用,对该间距的访问受到差的频谱分辨率的限制。 在这里,我们使用噪声声探测器探讨了引发音高需要多少通道和频道交互程度。 结果表明,需要两到四倍的通道,以及相互作用,其数量级减少,而不是在当前设备中提供。 这些新的约束不仅为正常听力中的音调编码的基本机制提供了深度,而且还表明,在植入用户中不太可能产生基于光谱的复杂间距,而不会在刺激的方法或部位进行显着变化。

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