Speech Neuroscience Lab, Department of Communication Sciences and Disorders, University of South Carolina, 915 Greene Street, Columbia, SC, 29208, USA.
Department of Psychology, University of South Carolina, 915 Greene Street, Columbia, SC, 29208, USA.
Exp Brain Res. 2020 Jun;238(6):1525-1535. doi: 10.1007/s00221-020-05832-9. Epub 2020 May 23.
Neural interactions between sensorimotor integration mechanisms play critical roles in voice motor control. We investigated how high-definition transcranial direct current stimulation (HD-tDCS) of the left ventral motor cortex modulates neural mechanisms of sensorimotor integration during voice motor control. HD-tDCS was performed during speech vowel production in an altered auditory feedback (AAF) paradigm in response to upward and downward pitch-shift stimuli. In one experiment, two groups received either anodal or cathodal 2 milliamp (mA) HD-tDCS to the left ventral motor cortex while a third group received sham (placebo) stimulation. In a second experiment, two groups received either 1 mA or 2 mA cathodal HD-tDCS to the left ventral motor cortex. Results of the first experiment indicated that the magnitude of vocal compensation was significantly reduced following anodal and cathodal HD-tDCS only in responses to downward pitch-shift AAF stimuli, with stronger effects associated with cathodal HD-tDCS. However, no such effect was observed following sham stimulation. Results of the second experiment indicate that there is not a differential effect of modulation from 1 mA versus 2 mA. Further, these results replicate the directional finding of the first experiment for vocal compensation in response to downward pitch-shift only. These findings suggest that neurostimulation of the left ventral motor cortex modulates sensorimotor mechanisms underlying voice motor control. We speculate that this effect is associated with the increased contribution of feedforward motor mechanisms, leading to reduced compensatory speech responses to AAF.
感觉运动整合机制的神经相互作用在声音运动控制中起着关键作用。我们研究了左腹侧运动皮层的高清晰度经颅直流电刺激 (HD-tDCS) 如何调节声音运动控制期间感觉运动整合的神经机制。HD-tDCS 在改变的听觉反馈 (AAF) 范式中进行,以响应向上和向下音高移位刺激进行语音元音产生。在一项实验中,两组接受左腹侧运动皮层的 2 毫安 (mA) 阳极或阴极 HD-tDCS,而第三组接受假刺激 (安慰剂)。在第二项实验中,两组接受左腹侧运动皮层的 1 mA 或 2 mA 阴极 HD-tDCS。第一项实验的结果表明,仅在响应向下音高移位 AAF 刺激时,阳极和阴极 HD-tDCS 后,声音补偿的幅度显着降低,阴极 HD-tDCS 与更强的效果相关。然而,假刺激后没有观察到这种效果。第二项实验的结果表明,调制作用没有 1 mA 与 2 mA 的差异。此外,这些结果复制了第一项实验的方向性发现,仅对向下音高移位的声音补偿有影响。这些发现表明,左腹侧运动皮层的神经刺激调节了声音运动控制的感觉运动机制。我们推测这种效应与前馈运动机制的增加贡献有关,导致 AAF 对补偿性言语反应减少。