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Dual-carrier processing to convey temporal fine structure cues: Implications for cochlear implants

机译:双载体处理传达时间精细结构线索:对人工耳蜗的影响

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摘要

Speech intelligibility in noise can be degraded by using vocoder processing to alter the temporal fine structure (TFS). Here it is argued that this degradation is not attributable to the loss of speech information potentially present in the TFS. Instead it is proposed that the degradation results from the loss of sound-source segregation information when two or more carriers (i.e., TFS) are substituted with only one as a consequence of vocoder processing. To demonstrate this segregation role, vocoder processing involving two carriers, one for the target and one for the background, was implemented. Because this approach does not preserve the speech TFS, it may be assumed that any improvement in intelligibility can only be a consequence of the preserved carrier duality and associated segregation cues. Three experiments were conducted using this “dual-carrier” approach. All experiments showed substantial sentence intelligibility in noise improvements compared to traditional single-carrier conditions. In several conditions, the improvement was so substantial that intelligibility approximated that for unprocessed speech in noise. A foreseeable and potentially promising implication for the dual-carrier approach involves implementation into cochlear implant speech processors, where it may provide the TFS cues necessary to segregate speech from noise.
机译:通过使用声码器处理来更改时间精细结构(TFS),可以降低语音中的语音清晰度。在此认为这种降级不归因于可能存在于TFS中的语音信息的丢失。取而代之的是,由于声码器处理的结果,当两个或多个载波(即,TFS)仅被一个或多个载波替换时,该劣化是由声源隔离信息的丢失引起的。为了证明这种隔离作用,实施了涉及两个载波的声码器处理,一个为目标,一个为背景。因为这种方法不能保留语音TFS,所以可以假定,清晰度的任何提高只能是保留的载波对偶性和相关的隔离提示的结果。使用这种“双载波”方法进行了三个实验。与传统的单载波条件相比,所有实验均显示出句子在噪声改善方面的可理解性。在几种情况下,这种改进是如此之大,以致于清晰度接近未处理的语音噪声。对于双载波方法,可预见的和潜在有希望的含义涉及在耳蜗植入语音处理器中的实现,在该处理器中,它可以提供将语音与噪声隔离所需的TFS提示。

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