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Evidence of across-channel processing for spectral-ripple discrimination in cochlear implant listeners

机译:耳蜗植入听众跨通道处理频谱波纹鉴别的证据

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摘要

Spectral-ripple discrimination has been used widely for psychoacoustical studies in normal-hearing, hearing-impaired, and cochlear implant listeners. The present study investigated the perceptual mechanism for spectral-ripple discrimination in cochlear implant listeners. The main goal of this study was to determine whether cochlear implant listeners use a local intensity cue or global spectral shape for spectral-ripple discrimination. The effect of electrode separation on spectral-ripple discrimination was also evaluated. Results showed that it is highly unlikely that cochlear implant listeners depend on a local intensity cue for spectral-ripple discrimination. A phenomenological model of spectral-ripple discrimination, as an “ideal observer,” showed that a perceptual mechanism based on discrimination of a single intensity difference cannot account for performance of cochlear implant listeners. Spectral modulation depth and electrode separation were found to significantly affect spectral-ripple discrimination. The evidence supports the hypothesis that spectral-ripple discrimination involves integrating information from multiple channels.
机译:频谱波纹识别已被广泛用于正常听觉,听力障碍和人工耳蜗听者的心理声学研究。本研究调查了耳蜗植入听众的频谱波纹识别的知觉机制。这项研究的主要目的是确定人工耳蜗植入者是否使用局部强度提示或全局频谱形状来进行频谱波纹鉴别。还评估了电极分离对波谱识别的影响。结果表明,人工耳蜗植入者不太可能依靠局部强度提示进行频谱波纹识别。作为“理想观察者”的频谱波纹辨别的现象学模型表明,基于辨别单个强度差异的感知机制无法解释人工耳蜗植入者的表现。发现光谱调制深度和电极间隔会显着影响光谱波纹识别。证据支持这样的假设,即频谱波纹识别涉及整合来自多个通道的信息。

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