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首页> 外文期刊>Journal of speech, language, and hearing research: JSLHR >Mandibular motor control during the early development of speech and nonspeech behaviors.
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Mandibular motor control during the early development of speech and nonspeech behaviors.

机译:言语和非言语行为的早期发展过程中的下颌运动控制。

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PURPOSE: The mandible is often portrayed as a primary structure of early babble production, but empiricists still need to specify (a) how mandibular motor control and kinematics vary among different types of multisyllabic babble, (b) whether chewing or jaw oscillation relies on a coordinative infrastructure that can be exploited for early types of multisyllables, and (c) whether the organization of motor control and associated kinematics varies across the nonspeech behaviors that are candidate motor stereotypies for speech. METHOD: Electromyographic signals were obtained from mandibular muscle groups, and associated kinematics were measured longitudinally from a typically developing infant from 9 to 22 months during jaw oscillation, chewing, and several types of early multisyllabic babble. RESULTS: Measures of early motor control and mandibular kinematics for multisyllabic productions indicated task-dependent changes across syllable types and significant differences across babble and nonspeech behaviors. Differences in motor control were also observed across nonspeech behaviors. CONCLUSIONS: Motor control for babble appears to be influenced by the balanced interaction between developing motor and linguistic systems, such that variation in linguistic complexity systematically evinces changes in motor organization apparently to meet these demands. This same effect was noted among chewing and jaw oscillation; task-dependent changes in mandibular control were noted across behaviors.
机译:目的:下颌骨通常被描述为早期ba骨产生的主要结构,但经验主义者仍需指明(a)下颌运动控制和运动学在不同类型的多节ba骨中如何变化,(b)咀嚼或颌骨摆动是否依赖于可以用于早期类型的多音节的协调基础设施,以及(c)运动控制和相关运动学的组织是否在非语音行为(作为语音的候选运动定型观念)之间有所不同。方法:从下颌骨肌肉群获取肌电信号,并在9至22个月的典型发育中婴儿的下颌振动,咀嚼和几种早期的多节ba音中纵向测量相关运动学。结果:对多音节作品的早期运动控制和下颌运动学的测量表明,音节类型的任务依赖型变化以及bble语和非语音行为的显着差异。跨非语音行为也观察到了运动控制方面的差异。结论:ba语的电机控制似乎受到发展中的电机与语言系统之间平衡相互作用的影响,因此,语言复杂性的变化显然会系统地改变电机组织,从而满足这些要求。在咀嚼和下颌摆动之间也观察到了相同的效果。跨行为注意到下颌控制中任务相关的变化。

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