Generalization of Interarticulator Timing Control: Evidence From Tongue-Jaw and Lip-Jaw Kinematics Using Electromagnetic Articulography.

IF 2.2 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Matthew Masapollo, Ana Rodriguez, Rosalie Gendron, Kara Kent, Hannah Thomas, Susan Nittrouer
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引用次数: 0

Abstract

Background: In skilled speech production, the motor system coordinates the movements of distinct sets of articulators to form precise and consistent constrictions in the vocal tract at distinct locations, across contextual variations in movement rate and amplitude. Research efforts have sought to uncover the critical control parameters governing interarticulator coordination during constriction formation, with a focus on two parameters: (a) latency of movement onset of one articulator relative to another (temporal parameters) and (b) phase angle of movement onset for one articulator relative to another (spatiotemporal parameters). Consistent interarticulator timing between jaw and tongue tip movements, during the formation of constrictions at the alveolar ridge, was previously found to scale more reliably than phase angles across variation in production rate and syllable stress. In the present study, we test whether these temporal regularities generalize to another set of articulators, namely, the jaw and lower lip, during the formation of constrictions at the lips.

Method: Eight talkers produced vowel-consonant-vowel (VCV) sequences, recorded using electromagnetic articulography, with variation in production rate and syllable stress. V was /ɑ/-/ɛ/ and C was alveolar /t/-/d/ or bilabial /p/-/b/. Two measures were obtained: (a) the timing of tongue tip/lower lip raising onset for intervocalic C, relative to jaw opening-closing cycles for the flanking vowels, and (b) the angle of tongue tip/lower lip raising onset for intervocalic C, relative to the jaw phase plane.

Results: Across both sets of articulators, consonant-related movement onset latencies scaled more consistently with variation in the jaw opening-closing cycle than phase angles. Furthermore, movement onset latencies were more strongly affiliated with utterance type than phase angles.

Conclusion: Findings demonstrate that precise temporal coordination of articulator movements regulates the formation of precise constrictions, independent of the specific set of articulators involved or where in the vocal tract the constriction is produced.

发音器间定时控制的通用化:使用电磁发音术从舌-颌和唇-颌运动学中获得的证据
背景:在熟练的言语产生中,运动系统协调不同的发音器组的运动,在不同的位置形成精确和一致的声道收缩,跨越运动速率和幅度的上下文变化。研究努力试图揭示收缩形成过程中控制关节间协调的关键控制参数,重点关注两个参数:(a)一个关节相对于另一个关节的运动开始潜伏期(时间参数)和(b)一个关节相对于另一个关节的运动开始相位角(时空参数)。在牙槽嵴收缩形成过程中,下颌和舌尖运动之间一致的发音时间,比在发音速率和音节重音变化中发现的相位角更可靠。在本研究中,我们测试这些时间规律是否推广到另一组关节,即下颌和下唇,在嘴唇收缩的形成过程中。方法:用电磁声谱法记录8位说话者的元音-辅音-元音(VCV)序列,并观察其语速和音节重音的变化。V是/ j /-/ j /, C是/t/-/d/或/p/-/b/。我们得到了两个测量值:(a)舌尖/下唇在发间隔音C时的起跳时间,相对于侧边元音的下颚开闭周期,以及(b)舌尖/下唇在发间隔音C时的起跳角度,相对于下颚相平面。结果:在两组发音器中,与辅音相关的运动潜伏期与下颌开闭周期的变化比相角的变化更一致。此外,动作开始潜伏期与言语类型的关系比与相位角的关系更强。结论:研究结果表明,关节运动的精确时间协调调节了精确收缩的形成,与特定的一组受累的关节或在声道的哪个位置产生收缩无关。
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来源期刊
Journal of Speech Language and Hearing Research
Journal of Speech Language and Hearing Research AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-REHABILITATION
CiteScore
4.10
自引率
19.20%
发文量
538
审稿时长
4-8 weeks
期刊介绍: Mission: JSLHR publishes peer-reviewed research and other scholarly articles on the normal and disordered processes in speech, language, hearing, and related areas such as cognition, oral-motor function, and swallowing. The journal is an international outlet for both basic research on communication processes and clinical research pertaining to screening, diagnosis, and management of communication disorders as well as the etiologies and characteristics of these disorders. JSLHR seeks to advance evidence-based practice by disseminating the results of new studies as well as providing a forum for critical reviews and meta-analyses of previously published work. Scope: The broad field of communication sciences and disorders, including speech production and perception; anatomy and physiology of speech and voice; genetics, biomechanics, and other basic sciences pertaining to human communication; mastication and swallowing; speech disorders; voice disorders; development of speech, language, or hearing in children; normal language processes; language disorders; disorders of hearing and balance; psychoacoustics; and anatomy and physiology of hearing.
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