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Electro-haptic enhancement of speech-in-noise performance in cochlear implant users

机译:耳蜗植入物用户中的噪声对语音性能的电触觉

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Cochlear implant (CI) users receive only limited sound information through their implant, which means that they struggle to understand speech in noisy environments. Recent work has suggested that combining the electrical signal from the CI with a haptic signal that provides crucial missing sound information ("electro-haptic stimulation"; EHS) could improve speech-in-noise performance. The aim of the current study was to test whether EHS could enhance speech-in-noise performance in CI users using: (1) a tactile signal derived using an algorithm that could be applied in real time, (2) a stimulation site appropriate for a real-world application, and (3) a tactile signal that could readily be produced by a compact, portable device. We measured speech intelligibility in multi-talker noise with and without vibro-tactile stimulation of the wrist in CI users, before and after a short training regime. No effect of EHS was found before training, but after training EHS was found to improve the number of words correctly identified by an average of 8.3%-points, with some users improving by more than 20%-points. Our approach could offer an inexpensive and non-invasive means of improving speech-in-noise performance in CI users.
机译:科学植入物(CI)用户通过植入物仅接收有限的声音信息,这意味着他们努力了解在嘈杂的环境中的语音。最近的工作表明,将来自CI的电信号与提供至关重要的声音信息(“电触觉刺激”; EHS)的触觉信号组合,可以提高语音性能。目前的研究的目的是测试EHS是否可以使用:(1)使用可实时应用的算法导出的触觉信号(1)触觉信号,(2)适当的刺激站点真实世界应用,(3)可以通过紧凑的便携式设备容易地生产的触觉信号。我们在短期培训制度之前和之后,在多讲车噪声中测量了多讲车噪音的语音清晰度,没有vibro-tactive刺激手腕。在训练前没有发现EHS的影响,但发现ehs后发现ehs在平均识别的单词数量上提高了8.3%,但有些用户的增加超过20%。我们的方法可以为提高CI用户中的语音性能提供廉价和非侵入性手段。

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