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Cortico-cerebellar Networks Drive Sensorimotor Learning in Speech

机译:皮质小脑网络驱动语音感知运动

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摘要

The motor cortex and cerebellum are thought to be critical for learning and maintaining motor behaviors. Here we use transcranial direct current stimulation (tDCS) to test the role of the motor cortex and cerebellum in sensorimotor learning in speech. During productions of head, bed, and dead, the first formant of the vowel sound was altered in real time toward the first formant of the vowel sound in had, bad, and dad. Compensatory changes in first and second formant production were used as a measure of motor adaptation. tDCS to either the motor cortex or the cerebellum improved sensorimotor learning in speech compared with sham stimulation (n = 20 in each group). However, in the case of cerebellar tDCS, production changes were restricted to the source of the acoustical error (i.e., the first formant). Motor cortex tDCS drove production changes that offset errors in the first formant, but unlike cerebellar tDCS, adaptive changes in the second formant also occurred. The results suggest that motor cortex and cerebellar tDCS have both shared and dissociable effects on motor adaptation. The study provides initial causal evidence in speech production that the motor cortex and the cerebellum support different aspects of sensorimotor learning. We propose that motor cortex tDCS drives sensorimotor learning toward previously learned patterns of movement, whereas cerebellar tDCS focuses sensorimotor learning on error correction.
机译:运动皮层和小脑被认为对于学习和维持运动行为至关重要。在这里,我们使用经颅直流电刺激(tDCS)来测试运动皮层和小脑在言语感觉运动学习中的作用。在产生头,床和死者的过程中,元音的第一个共振峰实时更改为有,坏和爸爸的元音的第一个共振峰。第一和第二共振峰生产中的补偿性变化被用作运动适应性的量度。与假刺激相比,对运动皮层或小脑的tDCS改善了语音中的感觉运动学习(每组n = 20)。但是,对于小脑tDCS,生产变化仅限于声学误差的来源(即第一共振峰)。运动皮层tDCS推动了生产变化,从而抵消了第一个共振峰中的误差,但与小脑tDCS不同,第二个共振峰中也发生了适应性变化。结果表明运动皮层和小脑tDCS对运动适应具有共同和可分离的影响。该研究提供了言语产生的初步因果证据,即运动皮层和小脑支持感觉运动学习的不同方面。我们建议运动皮层tDCS驱动感觉运动学习向以前学习的运动模式,而小脑tDCS将感觉运动学习集中在纠错上。

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