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Modulation of Auditory Responses to Speech vs. Nonspeech Stimuli during Speech Movement Planning

机译:语音和听觉响应的调制。言语运动计划中的非言语刺激

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摘要

Previously, we showed that the N100 amplitude in long latency auditory evoked potentials (LLAEPs) elicited by pure tone probe stimuli is modulated when the stimuli are delivered during speech movement planning as compared with no-speaking control conditions. Given that we probed the auditory system only with pure tones, it remained unknown whether the nature and magnitude of this pre-speech auditory modulation depends on the type of auditory stimulus. Thus, here, we asked whether the effect of speech movement planning on auditory processing varies depending on the type of auditory stimulus. In an experiment with nine adult subjects, we recorded LLAEPs that were elicited by either pure tones or speech syllables when these stimuli were presented prior to speech onset in a delayed-response speaking condition vs. a silent reading control condition. Results showed no statistically significant difference in pre-speech modulation of the N100 amplitude (early stages of auditory processing) for the speech stimuli as compared with the nonspeech stimuli. However, the amplitude of the P200 component (later stages of auditory processing) showed a statistically significant pre-speech modulation that was specific to the speech stimuli only. Hence, the overall results from this study indicate that, immediately prior to speech onset, modulation of the auditory system has a general effect on early processing stages but a speech-specific effect on later processing stages. This finding is consistent with the hypothesis that pre-speech auditory modulation may play a role in priming the auditory system for its role in monitoring auditory feedback during speech production.
机译:以前,我们表明,与没有说话的控制条件相比,在语音移动计划中传递纯刺激时,由纯音探针刺激引起的长潜伏期听觉诱发电位(LLAEP)中的N100振幅会受到调节。鉴于我们仅使用纯音来探测听觉系统,因此尚不清楚这种语音前听觉调制的性质和大小是否取决于听觉刺激的类型。因此,在这里,我们询问语音移动计划对听觉处理的影响是否根据听觉刺激的类型而有所不同。在一项针对9名成年受试者的实验中,我们记录了LLAEP,它们是由纯音或语音音节引起的,这些语音是在延迟发作的说话条件与无声的阅读控制条件下出现在语音发作之前出现的。结果显示,与非语音刺激相比,语音刺激的N100幅度的语音预调制(听觉处理的早期)没有统计学上的显着差异。但是,P200分量的幅度(听觉处理的后期)显示了统计上显着的语音前调制,该调制仅特定于语音刺激。因此,这项研究的总体结果表明,在语音发作之前,听觉系统的调制会对早期处理阶段产生总体影响,而对后期处理阶段则具有特定于语音的影响。这一发现与这样的假设是一致的,即语音前听觉调制可能在启动听觉系统中发挥作用,因为它在语音产生过程中监视听觉反馈中的作用。

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