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Auditory cortical deactivation during speech production and following speech perception: an EEG investigation of the temporal dynamics of the auditory alpha rhythm

机译:语音产生和语音感知后听觉皮层失活:听觉α节奏的时间动态的脑电图调查。

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摘要

Sensorimotor integration (SMI) across the dorsal stream enables online monitoring of speech. Jenson et al. () used independent component analysis (ICA) and event related spectral perturbation (ERSP) analysis of electroencephalography (EEG) data to describe anterior sensorimotor (e.g., premotor cortex, PMC) activity during speech perception and production. The purpose of the current study was to identify and temporally map neural activity from posterior (i.e., auditory) regions of the dorsal stream in the same tasks. Perception tasks required “active” discrimination of syllable pairs (/ba/ and /da/) in quiet and noisy conditions. Production conditions required overt production of syllable pairs and nouns. ICA performed on concatenated raw 68 channel EEG data from all tasks identified bilateral “auditory” alpha (α) components in 15 of 29 participants localized to pSTG (left) and pMTG (right). ERSP analyses were performed to reveal fluctuations in the spectral power of the α rhythm clusters across time. Production conditions were characterized by significant α event related synchronization (ERS; pFDR < 0.05) concurrent with EMG activity from speech production, consistent with speech-induced auditory inhibition. Discrimination conditions were also characterized by α ERS following stimulus offset. Auditory α ERS in all conditions temporally aligned with PMC activity reported in Jenson et al. (). These findings are indicative of speech-induced suppression of auditory regions, possibly via efference copy. The presence of the same pattern following stimulus offset in discrimination conditions suggests that sensorimotor contributions following speech perception reflect covert replay, and that covert replay provides one source of the motor activity previously observed in some speech perception tasks. To our knowledge, this is the first time that inhibition of auditory regions by speech has been observed in real-time with the ICA/ERSP technique.
机译:跨背流的感觉运动集成(SMI)可以在线监视语音。詹森等。 ()使用脑电图(EEG)数据的独立成分分析(ICA)和事件相关频谱扰动(ERSP)分析来描述语音感知和产生过程中的前感觉运动(例如运动前皮层,PMC)活动。本研究的目的是在同一任务中从背流的后部(即听觉)区域识别并暂时绘制神经活动图。感知任务需要在安静和嘈杂的条件下“主动”区分音节对(/ ba /和/ da /)。生产条件要求公开生产音节对和名词。 ICA对来自所有任务的串联原始68通道EEG数据执行,在29个参与者中的15个参与者中确定了双边的“听觉”α(α)成分,这些参与者分别位于pSTG(左)和pMTG(右)。进行了ERSP分析以揭示α节奏簇的频谱功率随时间的波动。产生条件的特征在于明显的α事件相关同步(ERS; pFDR <0.05)与语音产生的EMG活动同时发生,与语音引起的听觉抑制相一致。鉴别条件也以刺激抵消后的αERS为特征。在Jenson等人报告的所有条件下,听觉αERS在时间上与PMC活性保持一致。 ()。这些发现表明语音诱导的听觉区域的抑制,可能是通过efefcopy。歧视条件下刺激抵消后出现的相同模式表明,语音感知后的感觉运动贡献反映了秘密重放,而秘密重放提供了先前在某些语音感知任务中观察到的运动活动的一种来源。据我们所知,这是首次使用ICA / ERSP技术实时观察到语音对听觉区域的抑制作用。

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