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即时听觉反馈调节发音器官间的言语协调性以服务于语音结构。

Immediate auditory feedback regulates inter-articulator speech coordination in service to phonetic structure.

机构信息

Department of Psychology, McGill University, 2001 McGill College, Montreal, Quebec H3A 1G1, Canada.

Department of Speech, Language, and Hearing Sciences, University of Florida, 1225 Center Drive, Room 2150, Gainesville, Florida 32610, USA.

出版信息

J Acoust Soc Am. 2024 Sep 1;156(3):1850-1861. doi: 10.1121/10.0028725.

Abstract

Research has shown that talkers reliably coordinate the timing of articulator movements across variation in production rate and syllable stress, and that this precision of inter-articulator timing instantiates phonetic structure in the resulting acoustic signal. We here tested the hypothesis that immediate auditory feedback helps regulate that consistent articulatory timing control. Talkers with normal hearing recorded 480 /tV#Cat/ utterances using electromagnetic articulography, with alternative V (/ɑ/-/ɛ/) and C (/t/-/d/), across variation in production rate (fast-normal) and stress (first syllable stressed-unstressed). Utterances were split between two listening conditions: unmasked and masked. To quantify the effect of immediate auditory feedback on the coordination between the jaw and tongue-tip, the timing of tongue-tip raising onset for C, relative to the jaw opening-closing cycle for V, was obtained in each listening condition. Across both listening conditions, any manipulation that shortened the jaw opening-closing cycle reduced the latency of tongue-tip movement onset, relative to the onset of jaw opening. Moreover, tongue-tip latencies were strongly affiliated with utterance type. During auditory masking, however, tongue-tip latencies were less strongly affiliated with utterance type, demonstrating that talkers use afferent auditory signals in real-time to regulate the precision of inter-articulator timing in service to phonetic structure.

摘要

研究表明,说话者在生产速度和音节重音的变化中可靠地协调发音器官运动的时间,并且这种发音器官之间的时间精确性在产生的声学信号中体现了语音结构。我们在这里测试了这样一个假设,即即时听觉反馈有助于调节这种一致的发音时间控制。正常听力的说话者使用电磁发音图记录了 480 个 /tV#Cat/ 发音,替代 V (/ɑ/-/ɛ/) 和 C (/t/-/d/),生产速度(快正常)和重音(第一音节重音-非重音)变化。发音被分为两种听力条件:无掩蔽和掩蔽。为了量化即时听觉反馈对下颌和舌尖协调的影响,在每种听力条件下,获得 C 的舌尖抬起起始相对于 V 的下颌开闭周期的时间。在两种听力条件下,任何缩短下颌开闭周期的操作都会减少舌尖运动起始相对于下颌开口的延迟。此外,舌尖延迟与话语类型密切相关。然而,在听觉掩蔽期间,舌尖延迟与话语类型的相关性较弱,这表明说话者在实时使用传入的听觉信号来调节发音器官之间时间的精确性,以服务于语音结构。

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