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首页> 外文期刊>The Cleft palate-craniofacial journal: official publication of the American Cleft Palate-Craniofacial Association >Single motor unit activity in levator veli palatini during speech and nonspeech tasks.
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Single motor unit activity in levator veli palatini during speech and nonspeech tasks.

机译:在演讲和非演讲任务中,提肌veli palatini中的单个运动单元活动。

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OBJECTIVE: This article assesses the control of velar movement by relating observed recruitment patterns of single motor unit activity in levator veli palatini observed during speech and nonspeech tasks in a single subject to intraoral pressure demands. METHODS: Electromyographic activity was recorded from a single motor unit in levator veli palatini during repetitions of "Say (----) again" with selected consonant-vowel-consonant and consonant-vowel syllables, sustained high pressure consonants, and blowing tasks. Single motor unit firing characteristics (e.g., frequency of occurrence, firing frequency) were related to intraoral air pressures recorded during the sustained consonant and blowing tasks. RESULTS: Levator single motor unit activity was always present during the /s/ in say consistently during the production of the /s/ in /sus/, the /p/ in /p Lambda/, and the /g/ in "again." Single motor unit firing frequency ranged from 16.1 Hz to 22 Hz during phrase productions. Recruitment was observed during sustained productions of high-pressure consonants when intraoral pressures exceeded 15 cm H(2)O. Increases in intraoral air pressure were associated with 25% to 85% increases in single motor unit firing frequencies. During nonspeech blowing tasks, single motor unit activity was observed when intraoral air pressure exceeded approximately 12 cm H(2)O. Increases in intraoral air pressure were again associated with increased single motor unit firing rates. CONCLUSIONS: Results showed evidence of both preprogrammed and feedback-controlled responses by levator veli palatini to changes in task intraoral pressure demands.
机译:目的:本文通过对在口内压力需求下单个对象的语音和非语音任务中观察到的提肌veli palatini中单个运动单位活动的观察到的募集模式进行关联,从而评估了对膜运动的控制。方法:在重复说“ Say(----)”的过程中,用选定的辅音-元音-辅音和辅音-元音节,持续的高压辅音和吹奏任务记录了提肌veli palatini中单个运动单元的肌电活动。单个马达单元的点火特性(例如发生频率,点火频率)与在持续的辅音和吹气任务期间记录的口内气压有关。结果:在/ s /期间,/ sus /中的/ s /,Lambda /中的/ p /和“ /”中的/ g /产生期间,提速器单动车活动始终存在。 ”在乐句制作过程中,单个电机的点火频率范围为16.1 Hz至22 Hz。当口内压力超过15 cm H(2)O时,在持续产生高压辅音期间观察到了招募。口腔内气压的增加与单个电机单元点火频率的增加25%至85%有关。在非语音吹气任务中,当口内气压超过大约12 cm H(2)O时,观察到单个运动单元活动。口腔内气压的增加又与单发单位发声率的增加有关。结论:结果显示提肌veli palatini对任务口内压力需求变化的预编程和反馈控制响应的证据。

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