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Discrimination of speech and non-speech sounds following theta-burst stimulation of the motor cortex.

机译:运动皮层的theta-burst刺激后对语音和非语音的区分。

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摘要

Perceiving speech engages parts of the motor system involved in speech production. The role of the motor cortex in speech perception has been demonstrated using low-frequency repetitive transcranial magnetic stimulation (rTMS) to suppress motor excitability in the lip representation and disrupt discrimination of lip-articulated speech sounds (Möttönen and Watkins, 2009). Another form of rTMS, continuous theta-burst stimulation (cTBS), can produce longer-lasting disruptive effects following a brief train of stimulation. We investigated the effects of cTBS on motor excitability and discrimination of speech and non-speech sounds. cTBS was applied for 40 s over either the hand or the lip representation of motor cortex. Motor-evoked potentials recorded from the lip and hand muscles in response to single pulses of TMS revealed no measurable change in motor excitability due to cTBS. This failure to replicate previous findings may reflect the unreliability of measurements of motor excitability related to inter-individual variability. We also measured the effects of cTBS on a listener's ability to discriminate: (1) lip-articulated speech sounds from sounds not articulated by the lips ("ba" vs. "da"); (2) two speech sounds not articulated by the lips ("ga" vs. "da"); and (3) non-speech sounds produced by the hands ("claps" vs. "clicks"). Discrimination of lip-articulated speech sounds was impaired between 20 and 35 min after cTBS over the lip motor representation. Specifically, discrimination of across-category ba-da sounds presented with an 800-ms inter-stimulus interval was reduced to chance level performance. This effect was absent for speech sounds that do not require the lips for articulation and non-speech sounds. Stimulation over the hand motor representation did not affect discrimination of speech or non-speech sounds. These findings show that stimulation of the lip motor representation disrupts discrimination of speech sounds in an articulatory feature-specific way.
机译:感知语音使参与语音产生的运动系统的一部分参与其中。运动皮层在语音感知中的作用已通过低频重复经颅磁刺激(rTMS)来证明,以抑制嘴唇代表中的运动兴奋性并打断嘴唇发音语音的辨别力(Möttönen和Watkins,2009)。 rTMS的另一种形式,连续的θ爆发刺激(cTBS),在短暂的刺激过程中会产生更持久的破坏作用。我们研究了cTBS对运动兴奋性以及语音和非语音声音辨别的影响。 cTBS在运动皮层的手部或嘴唇上施加40 s。从唇部和手部肌肉记录到的响应于TMS单脉冲的运动诱发电位显示,由于cTBS,运动兴奋性没有可测量的变化。未能复制先前的发现可能反映了与个体间变异性相关的运动性兴奋性测量值的不可靠性。我们还测量了cTBS对听众区分能力的影响:(1)嘴唇发音的语音与嘴唇未发音的语音(“ ba”对“ da”); (2)嘴唇没有发音的两种语音(“ ga”和“ da”); (3)双手产生的非语音声音(“拍手”与“喀哒”声)。 cTBS后20到35分钟之间,对唇部运动表现的口头表达语音的辨别力受损。具体来说,以800毫秒的刺激间隔显示的跨类别ba-da声音的辨别力降低到机会级性能。对于不需要嘴唇进行发音和非语音的语音,则没有这种效果。对手部运动表现的刺激不会影响语音或非语音的辨别力。这些发现表明,对唇部运动表现的刺激以特定的发音特征方式干扰了语音的辨别力。

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