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Psychophysically based site selection coupled with dichotic stimulation improves speech recognition in noise with bilateral cochlear implants

机译:基于心理的部位选择与双耳刺激相结合可改善双侧耳蜗植入物中噪声中的语音识别

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摘要

The ability to perceive important features of electrical stimulation varies across stimulation sites within a multichannel implant. The aim of this study was to optimize speech processor MAPs for bilateral implant users by identifying and removing sites with poor psychophysical performance. The psychophysical assessment involved amplitude-modulation detection with and without a masker, and a channel interaction measure quantified as the elevation in modulation detection thresholds in the presence of the masker. Three experimental MAPs were created on an individual-subject basis using data from one of the three psychophysical measures. These experimental MAPs improved the mean psychophysical acuity across the electrode array and provided additional advantages such as increasing spatial separations between electrodes and/or preserving frequency resolution. All 8 subjects showed improved speech recognition in noise with one or more experimental MAPs over their everyday-use clinical MAP. For most subjects, phoneme and sentence recognition in noise were significantly improved by a dichotic experimental MAP that provided better mean psychophysical acuity, a balanced distribution of selected stimulation sites, and preserved frequency resolution. The site-selection strategies serve as useful tools for evaluating the importance of psychophysical acuities needed for good speech recognition in implant users.
机译:感知电刺激的重要特征的能力在多通道植入物内的各个刺激部位之间变化。这项研究的目的是通过识别和删除心理生理表现较差的部位,为双边植入物使用者优化语音处理器MAP。心理物理评估涉及在有和没有掩蔽器的情况下进行幅度调制检测,以及在存在掩蔽器的情况下,将信道交互作用度量量化为调制检测阈值的升高。使用来自三种心理生理测量方法之一的数据,在个体基础上创建了三个实验性MAP。这些实验性MAP改善了整个电极阵列的平均心理物理敏锐度,并提供了其他优势,例如增加电极之间的空间间隔和/或保持频率分辨率。与他们日常使用的临床MAP相比,使用一个或多个实验MAP可以使所有8位受试者在噪声中的语音识别能力得到改善。对于大多数受试者,通过二分频实验MAP可以显着改善噪声中的音素和句子识别,该MAP提供了更好的平均心理生理敏锐度,选定刺激部位的均衡分布以及保留的频率分辨率。部位选择策略可作为有用的工具,用于评估植入用户良好语音识别所需的心理物理敏锐度的重要性。

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