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Vocal pitch discrimination in the motor system.

机译:电机系统中的人声识别。

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摘要

Speech production can be broadly separated into two distinct components: Phonation and Articulation. These two aspects require the efficient control of several phono-articulatory effectors. Speech is indeed generated by the vibration of the vocal-folds in the larynx (F0) followed by ''filtering" by articulators, to select certain resonant frequencies out of that wave (F1, F2, F3, etc.). Recently it has been demonstrated that the motor representation of articulators (lips and tongue) participates in the discrimination of articulatory sounds (lips- and tongue-related speech sounds). Here we investigate whether the results obtained on articulatory sounds discrimination could be extended to phonation by applying a dual-pulse TMS protocol while subjects had to discriminate F0-shifted vocal utterances [a]. Stimulation over the larynx motor representation, compared to the control site (tongue/lips motor cortex), induced a reduction in RT for stimuli including a subtle pitch shift. We demonstrate that vocal pitch discrimination, in analogy with the articulatory component, requires the contribution of the motor system and that this effect is somatotopically organized.
机译:语音产生可以大致分为两个不同的部分:语音和发音。这两个方面需要有效控制几个语音发音器。语音确实是由喉部的声带振动(F0)产生,然后由咬合架“过滤”,以从该波中选择某些共振频率(F1,F2,F3等)而产生的。证明了发音器(嘴唇和舌头)的运动表现参与了发音声音(与嘴唇和舌头有关的语音)的辨别。在这里,我们研究通过应用语音识别器获得的发音结果是否可以扩展到发声。双脉冲TMS协议,而受试者必须辨别F0移位的语音[a]。与对照部位(舌/唇部运动皮层)相比,对喉部运动表现的刺激导致RT降低,包括细微音高的刺激我们证明,与发音成分类似,人声音高辨别需要运动系统的贡献,并且这种影响是在体位上组织的。

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