首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >A comparison of the speech understanding provided by acoustic models of fixed-channel and channel-picking signal processors for cochlear implants.
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A comparison of the speech understanding provided by acoustic models of fixed-channel and channel-picking signal processors for cochlear implants.

机译:耳蜗植入物的固定通道和通道拾取信号处理器的声学模型提供的语音理解的比较。

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摘要

Vowels, consonants, and sentences were processed by two cochlear-implant signal-processing strategies-a fixed-channel strategy and a channel-picking strategy-and the resulting signals were presented to listeners with normal hearing for identification. At issue was the number of channels of stimulation needed in each strategy to achieve an equivalent level of speech recognition in quiet and in noise. In quiet, 8 fixed channels allowed a performance maximum for the most difficult stimulus material. A similar level of performance was reached with a 6-of-20 channel-picking strategy. In noise, 10 fixed channels allowed a performance maximum for the most difficult stimulus material. A similar level of performance was reached with a 9-of-20 strategy. Both strategies are capable of providing a very high level of speech recognition. Choosing between the two strategies may, ultimately, depend on issues that are independent of speech recognition-such as ease of device programming.
机译:元音,辅音和句子通过两种人工耳蜗信号处理策略(固定通道策略和通道选择策略)进行处理,然后将结果信号提供给听力正常的听众进行识别。争论的焦点是每种策略需要的刺激通道数,以在安静和嘈杂的环境中达到同等水平的语音识别。在安静的情况下,8个固定通道允许最困难的刺激材料发挥最大性能。 20个频道中的6个频道选择策略达到了类似的性能水平。在噪声中,10个固定通道允许最困难的刺激材料发挥最大性能。 20分之9的策略达到了类似的性能水平。两种策略都能够提供很高水平的语音识别。最终,这两种策略之间的选择可能取决于与语音识别无关的问题,例如设备编程的简便性。

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