University of Tennessee Health Science Center, Dept. of Audiology and Speech Pathology, United States.
University of Tennessee Health Science Center, Dept. of Audiology and Speech Pathology, United States.
Neuroimage Clin. 2018 May 21;19:690-702. doi: 10.1016/j.nicl.2018.05.026. eCollection 2018.
Stuttering is associated with compromised sensorimotor control (i.e., internal modeling) across the dorsal stream and oscillations of EEG mu () rhythms have been proposed as reliable indices of anterior dorsal stream processing. The purpose of this study was to compare rhythm oscillatory activity between (PWS) and matched typically fluent speakers (TFS) during spontaneously fluent overt and covert speech production tasks. Independent component analysis identified bilateral components from 24/27 PWS and matched TFS that localized over premotor cortex. Time-frequency analysis of the left hemisphere clusters demonstrated significantly reduced and ERD ( < 0.05) in PWS across the time course of overt and covert speech production, while no group differences were found in the right hemisphere in any condition. Results were interpreted through the framework of State Feedback Control. They suggest that weak forward modeling and evaluation of sensory feedback across the time course of speech production characterizes the trait related sensorimotor impairment in PWS. This weakness is proposed to represent an underlying sensorimotor instability that may predispose the speech of PWS to breakdown.
口吃与背侧流的感觉运动控制受损(即内部建模)有关,脑电图 μ(mu)节律的振荡被认为是前背侧流处理的可靠指标。本研究的目的是比较(PWS)和匹配的典型流利说话者(TFS)在自发流畅的显性和隐性言语产生任务期间的 节律振荡活动。独立成分分析从 24/27 名 PWS 和匹配的 TFS 中识别出双侧 成分,这些成分定位于运动前皮质。左半球 簇的时频分析表明,在显性和隐性言语产生过程中,PWS 的 和 ERD(<0.05)显著减少,而在任何条件下,右半球均未发现组间差异。结果通过状态反馈控制框架进行了解释。它们表明,在言语产生过程中,弱的前向建模和对感觉反馈的评估是 PWS 与特质相关的感觉运动损伤的特征。这种弱点被认为代表了一种潜在的感觉运动不稳定性,可能使 PWS 的言语容易出现故障。