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首页> 外文期刊>The Journal of the Acoustical Society of America >Cochlear implant speech intelligibility outcomes with structured and unstructured binary mask errors
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Cochlear implant speech intelligibility outcomes with structured and unstructured binary mask errors

机译:具有结构化和非结构化二进制掩码错误的人工耳蜗语音清晰度结果

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It has been shown that intelligibility can be improved for cochlear implant (CI) recipients with the ideal binary mask (IBM). In realistic scenarios where prior information is unavailable, however, the IBM must be estimated, and these estimations will inevitably contain errors. Although the effects of both unstructured and structured binary mask errors have been investigated with normal-hearing (NH) listeners, they have not been investigated with CI recipients. This study assesses these effects with CI recipients using masks that have been generated systematically with a statistical model. The results demonstrate that clustering of mask errors substantially decreases the tolerance of errors, that incorrectly removing target-dominated regions can be as detrimental to intelligibility as incorrectly adding interferer-dominated regions, and that the individual tolerances of the different types of errors can change when both are present. These trends follow those of NH listeners. However, analysis with a mixed effects model suggests that CI recipients tend to be less tolerant than NH listeners to mask errors in most conditions, at least with respect to the testing methods in each of the studies. This study clearly demonstrates that structure influences the tolerance of errors and therefore should be considered when analyzing binary-masking algorithms. (C) 2016 Acoustical Society of America.
机译:研究表明,使用理想的二元面罩(IBM)可以改善人工耳蜗(CI)接受者的清晰度。但是,在没有先验信息的现实情况下,必须对IBM进行估算,并且这些估算不可避免地会包含错误。尽管非结构化和结构化二进制掩码错误的影响都已通过正常听力(NH)侦听器进行了调查,但尚未与CI接收者进行了调查。这项研究使用统计模型系统生成的蒙版评估了CI接受者的这些影响。结果表明,掩膜错误的聚类大大降低了错误的容忍度,错误地删除目标占主导地位的区域可能会与错误地添加干扰源占主导地位的区域一样,对清晰度造成不利影响,并且不同类型错误的个体容忍度会在两者都存在。这些趋势遵循NH听众的趋势。但是,使用混合效应模型进行的分析表明,CI接收者在大多数情况下(至少在每项研究中的测试方法方面)在掩盖错误方面的容忍度均比NH听者低。这项研究清楚地表明,结构会影响错误的容忍度,因此在分析二进制屏蔽算法时应考虑到这一点。 (C)2016年美国声学学会。

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