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首页> 外文期刊>Journal of Neural Transplantation and Plasticity: Neural Plasticity >A Neurophysiological Study of Musical Pitch Identification in Mandarin-Speaking Cochlear Implant Users
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A Neurophysiological Study of Musical Pitch Identification in Mandarin-Speaking Cochlear Implant Users

机译:讲话耳蜗植入物用户音乐谱识别的神经生理学研究

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Music perception in cochlear implant (CI) users is far from satisfactory, not only because of the technological limitations of current CI devices but also due to the neurophysiological alterations that generally accompany deafness. Early behavioral studies revealed that similar mechanisms underlie musical and lexical pitch perception in CI-based electric hearing. Although neurophysiological studies of the musical pitch perception of English-speaking CI users are actively ongoing, little such research has been conducted with Mandarin-speaking CI users; as Mandarin is a tonal language, these individuals require pitch information to understand speech. The aim of this work was to study the neurophysiological mechanisms accounting for the musical pitch identification abilities of Mandarin-speaking CI users and normal-hearing (NH) listeners. Behavioral and mismatch negativity (MMN) data were analyzed to examine musical pitch processing performance. Moreover, neurophysiological results from CI users with good and bad pitch discrimination performance (according to the just-noticeable differences (JND) and pitch-direction discrimination (PDD) tasks) were compared to identify cortical responses associated with musical pitch perception differences. The MMN experiment was conducted using a passive oddball paradigm, with musical tone C4 (262?Hz) presented as the standard and tones D4 (294?Hz), E4 (330?Hz), G#4 (415?Hz), and C5 (523?Hz) presented as deviants. CI users demonstrated worse musical pitch discrimination ability than did NH listeners, as reflected by larger JND and PDD thresholds for pitch identification, and significantly increased latencies and reduced amplitudes in MMN responses. Good CI performers had better MMN results than did bad performers. Consistent with findings for English-speaking CI users, the results of this work suggest that MMN is a viable marker of cortical pitch perception in Mandarin-speaking CI users.
机译:在耳蜗植入物(CI)用户中的音乐感知远非令人满意,不仅是因为当前CI器件的技术限制,而且由于通常伴随耳聋的神经生理学改变。早期行为研究表明,基于CI的电气听力中的类似机制下划线击败音乐和词汇俯仰感知。虽然对讲英语的CI用户的音乐节目感知的神经生理学研究是积极持续的,但是讲的是讲普通话的CI用户的这种研究;随着普通话是一种色调语言,这些人需要播放信息来了解言语。这项工作的目的是研究神经生理机制核算普通话的CI用户和正常听力(NH)听众的音乐播种识别能力。分析了行为和不匹配的消极性(MMN)数据以检查音乐俯仰处理性能。此外,对具有良好且良好的间距歧视性能的CI用户(根据公正差异(JND)和俯仰方向歧视(PDD)任务)的神经生理结果被比较,以鉴定与音乐间距感知差异相关的皮质反应。 MMN实验使用被动奇怪的范式进行,具有作为标准的音调C4(262〜Hz)和色调D4(294〜Hz),E4(330〜Hz),G#4(415?Hz),和C5(523赫兹)作为偏差呈现。 CI用户显示比NH听众更差的音乐间距歧视能力,如较大的JND和PDD阈值对俯仰识别的较大阈值反映,并且显着增加了延迟和MMN反应中的降低幅度。好的CI表演者比表演者更好的MMN结果。与英语CI用户的调查结果一致,这项工作的结果表明,MMN是讲话中的CI用户在普通话中的一种可行的皮质音高感知标记。

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