Centre for Neuroscience Studies, Queen's University, Ontario, Canada.
J Cogn Neurosci. 2010 Aug;22(8):1770-81. doi: 10.1162/jocn.2009.21324.
The fluency and the reliability of speech production suggest a mechanism that links motor commands and sensory feedback. Here, we examined the neural organization supporting such links by using fMRI to identify regions in which activity during speech production is modulated according to whether auditory feedback matches the predicted outcome or not and by examining the overlap with the network recruited during passive listening to speech sounds. We used real-time signal processing to compare brain activity when participants whispered a consonant-vowel-consonant word ("Ted") and either heard this clearly or heard voice-gated masking noise. We compared this to when they listened to yoked stimuli (identical recordings of "Ted" or noise) without speaking. Activity along the STS and superior temporal gyrus bilaterally was significantly greater if the auditory stimulus was (a) processed as the auditory concomitant of speaking and (b) did not match the predicted outcome (noise). The network exhibiting this Feedback Type x Production/Perception interaction includes a superior temporal gyrus/middle temporal gyrus region that is activated more when listening to speech than to noise. This is consistent with speech production and speech perception being linked in a control system that predicts the sensory outcome of speech acts and that processes an error signal in speech-sensitive regions when this and the sensory data do not match.
言语产生的流畅性和可靠性表明存在一种机制,将运动指令和感觉反馈联系起来。在这里,我们通过使用 fMRI 来检查支持这种联系的神经组织,确定在言语产生过程中,根据听觉反馈是否与预期结果相匹配而活动发生变化的区域,并通过检查与被动聆听言语声音时招募的网络重叠来确定。我们使用实时信号处理来比较参与者在轻声说出辅音-元音-辅音单词(“Ted”)时,听到清晰声音或听到语音门控掩蔽噪声时的大脑活动。我们将其与他们在不说话的情况下聆听配套刺激(“Ted”或噪声的相同录音)进行比较。如果听觉刺激(a)被处理为说话的听觉伴随物,并且(b)与预测结果(噪声)不匹配,则沿着双侧颞上沟和颞上回的活动显著增加。如果言语产生和言语感知在一个控制系统中联系在一起,该系统预测言语行为的感觉结果,并且在感觉数据与预测结果不匹配时,在言语敏感区域处理错误信号,那么这种反馈类型 x 产生/感知交互的网络就会表现出这种情况。