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首页> 外文期刊>The Journal of the Acoustical Society of America >Variability in muscle activation of simple speech motions: A biomechanical modeling approach
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Variability in muscle activation of simple speech motions: A biomechanical modeling approach

机译:简单语音运动的肌肉激活的可变性:生物力学建模方法

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摘要

Biomechanical models of the oropharynx facilitate the study of speech function by providing information that cannot be directly derived from imaging data, such as internal muscle forces and muscle activation patterns. Such models, when constructed and simulated based on anatomy and motion captured from individual speakers, enable the exploration of inter-subject variability of speech biomechanics. These models also allow one to answer questions, such as whether speakers produce similar sounds using essentially the same motor patterns with subtle differences, or vastly different motor equivalent patterns. Following this direction, this study uses speaker-specific modeling tools to investigate the muscle activation variability in two simple speech tasks that move the tongue forward (/partial derivative-gis/) vs backward (/partial derivative-suk/). Three dimensional tagged magnetic resonance imaging data were used to inversely drive the biomechanical models in four English speakers. Results show that the genioglossus is the workhorse muscle of the tongue, with activity levels of 10% in different subdivisions at different times. Jaw and hyoid positioners (inferior pterygoid and digastric) also show high activation during specific phonemes. Other muscles may be more involved in fine tuning the shapes. For example, slightly more activation of the anterior portion of the transverse is found during apical than laminal /s/, which would protrude the tongue tip to a greater extent for the apical /s/. (C) 2017 Acoustical Society of America.
机译:oropharynx的生物力学模型通过提供不能直接导出的成像数据,例如内部肌肉力和肌肉激活模式来促进语音功能的研究。这种模型,当基于从单独扬声器捕获的解剖和运动构造和模拟时,可以探索语音生物力学的互受对象变异性。这些模型还允许一个人回答问题,例如扬声器是否产生类似的声音,使用基本上与具有微妙差异的电动机模式,或众多不同的电动机等效图案。在此方向之后,本研究使用扬声器特定的建模工具来研究两个简单的语音任务中的肌肉激活可变性,其移动舌头向前(/部分导数-GIS /)VS向后(/部分导数 - SUK /)。三维标记的磁共振成像数据用于在四个英语扬声器中反转生物力学模型。结果表明,Genioglossus是舌头的挥发性肌肉,在不同时间的不同细分中的活动水平为10%。钳口和杂有翼状定位器(近翼形和数字)也在特定音素期间显示出高激活。其他肌肉可能更多地参与微调形状。例如,在顶端略微比Laminal / S /横向的横向部分的稍微激活,这将在更大程度上将舌尖突出到顶端/ s /。 (c)2017年声学社会。

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