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首页> 外文期刊>Neuropsychologia >Detecting our own vocal errors: An event-related study of the thresholds for perceiving and compensating for vocal pitch errors
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Detecting our own vocal errors: An event-related study of the thresholds for perceiving and compensating for vocal pitch errors

机译:检测自己的声音错误:对感知和补偿声音间距误差的阈值的事件相关研究

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摘要

Previous studies suggest that a perception-action dissociation exists for the cortical processing of vocal pitch, because speakers compensate for small vocal errors without awareness. In this event-related potential (ERP) study, participants vocalized while hearing their productions either altered or unaltered in pitch, and reported whether their auditory feedback was altered. Pitch alterations as small as 10 cents resulted in compensatory vocal responses, while participants reported hearing perturbations that were 15 cents and larger. Similarly, P1 ERP responses were elicited by perturbations 15 cents and larger, while N1 responses followed a linear trend with increasing perturbation magnitudes, and P2 responses were elicited by perturbations 30 cents and larger. Although their thresholds differed, both motor and perceptual responses were elicited by small frequency altered feedback (FAF) perturbations. Previous reports of a perception-action dissociation may reflect differences in the magnitude of vocal error required to elicit a motor response, and for an individual to report a pitch change, rather than to detect a pitch change (as reflected by ERP responses).
机译:以前的研究表明,具有声音间距的皮质处理的感知 - 动作解离,因为扬声器在没有意识的情况下补偿小的声音误差。在该事件相关的潜在(ERP)的研究中,参与者在听到其制作的同时发声,无论是改变还是未被突出,并报告了他们的听觉反馈是否被改变。节距改变为10美分,导致补偿声学响应,而参与者报告过15美分和更大的听力扰动。类似地,P1 ERP反应由扰动15美分引起,而N1响应随后随着扰动幅度的增加而导致线性趋势,并且通过扰动30美分引发P2响应。虽然它们的阈值不同,但是通过小频率改变的反馈(FAF)扰动引发了电机和感知响应。对感知 - 动作解离的先前报告可以反映引出电机响应所需的声音误差幅度的差异,以及用于报告音高变化的个人,而不是检测音高变化(由ERP响应反映)。

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