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Neural mechanisms underlying auditory feedback control of speech.

机译:听觉反馈控制语音的神经机制。

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摘要

The neural substrates underlying auditory feedback control of speech were investigated using a combination of functional magnetic resonance imaging (fMRI) and computational modeling. Neural responses were measured while subjects spoke monosyllabic words under two conditions: (i) normal auditory feedback of their speech and (ii) auditory feedback in which the first formant frequency of their speech was unexpectedly shifted in real time. Acoustic measurements showed compensation to the shift within approximately 136 ms of onset. Neuroimaging revealed increased activity in bilateral superior temporal cortex during shifted feedback, indicative of neurons coding mismatches between expected and actual auditory signals, as well as right prefrontal and Rolandic cortical activity. Structural equation modeling revealed increased influence of bilateral auditory cortical areas on right frontal areas during shifted speech, indicating that projections from auditory error cells in posterior superior temporal cortex to motor correction cells in right frontal cortex mediate auditory feedback control of speech.
机译:使用功能磁共振成像(fMRI)和计算模型的组合研究了语音的听觉反馈控制的神经基质。在以下两种情况下,当受试者讲单音节单词时,测量神经反应:(i)他们语音的正常听觉反馈和(ii)听觉反馈,其中他们语音的第一共振峰频率实时发生意外变化。声学测量显示,在开始发作的大约136毫秒内补偿了位移。神经影像学揭示了在移位反馈期间双侧颞上皮的活动增加,表明神经元编码预期和实际听觉信号之间的失配,以及右前额叶和罗兰迪奇皮质活动。结构方程模型揭示了在转移的语音过程中,双侧听觉皮层区域对右额叶区域的影响增加,表明从后颞上皮层的听觉错误细胞到右额叶皮层的运动矫正细胞的投射介导了听觉反馈控制。

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