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Objective speech transmission improvements with a binaural cochlear implant sound-coding strategy inspired by the contralateral medial olivocochlear reflex

机译:客观语音传输,通过对侧内侧OlivoChlear反射的启发灵感的双耳耳蜗植入式音响编码策略

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摘要

It has been recently shown that cochlear implant users could enjoy better speech reception in noise and enhanced spatial unmasking with binaural audio processing inspired by the inhibitory effects of the contralateral medial olivocochlear (MOC) reflex on compression [Lopez-Poveda, Eustaquio-Martin, Stohl, Wolford, Schatzer, and Wilson (2016). Ear Hear. 37, e138-e148]. The perceptual evidence supporting those benefits, however, is limited to a few target-interferer spatial configurations and to a particular implementation of contralateral MOC inhibition. Here, the short-term objective intelligibility index is used to (1) objectively demonstrate potential benefits over many more spatial configurations, and (2) investigate if the predicted benefits may be enhanced by using more realistic MOC implementations. Results corroborate the advantages and drawbacks of MOC processing indicated by the previously published perceptual tests. The results also suggest that the benefits may be enhanced and the drawbacks overcome by using longer time constants for the activation and deactivation of inhibition and, to a lesser extent, by using a comparatively greater inhibition in the lower than in the higher frequency channels. Compared to using two functionally independent processors, the better MOC processor improved the signal-to-noise ratio in the two ears between 1 and 6 decibels by enhancing head-shadow effects, and was advantageous for all tested target-interferer spatial configurations. (C) 2018 Acoustical Society of America.
机译:最近据表明,耳蜗植入物用户可以在噪声和增强的空间揭露与双耳音频处理中享受更好的演讲接收,这是由对侧内侧Olivocochlear(MOC)反射对压缩的抑制作用的启发[Lopez-Poveda,Eustaquio-Martin,Stohl ,wolford,schatzer和wilson(2016)。耳朵听到。 37,E138-E148]。然而,支持这些益处的感知证据仅限于少数目标干扰的空间配置以及对侧MOC抑制的特定实施。这里,短期目标可智能性索引用于(1)客观地演示在更多空间配置中的潜在好处,并且(2)通过使用更现实的MOC实现可以提高预测的益处。结果证实了先前公布的感知测试所示的MOC处理的优点和缺点。结果还表明,通过使用较长时间常数来克服抑制的较长时间常数并且在较小程度上,通过在低于更高频率通道中使用相对更大的抑制来克服缺点,克服的效益克服。与使用两个功能独立的处理器相比,通过提高头影效应,更好的MOC处理器通过提高头影效应来提高1至6分贝之间​​的两个耳朵的信噪比,并且对于所有测试的目标干扰的空间配置是有利的。 (c)2018年声学学会。

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