Park Yeonggwang, Wang Feng, Díaz-Cádiz Manuel, Vojtech Jennifer M, Groll Matti D, Stepp Cara E
Department of Speech, Language, and Hearing Sciences, Boston University, 635 Commonwealth Avenue, Boston, Massachusetts 02215, USA.
Department of Biomedical Engineering, Boston University, 44 Cummington Mall, Boston, Massachusetts 02215, USA.
J Acoust Soc Am. 2021 Apr;149(4):2189. doi: 10.1121/10.0003961.
The acoustic measure, relative fundamental frequency (RFF), has been proposed as an objective metric for assessing vocal hyperfunction; however, its underlying physiological mechanisms have not yet been fully characterized. This study aimed to characterize the relationship between RFF and vocal fold kinematics. Simultaneous acoustic and high-speed videoendoscopic (HSV) recordings were collected as younger and older speakers repeated the utterances /ifi/ and /iti/. RFF values at voicing offsets and onsets surrounding the obstruents were estimated from acoustic recordings, whereas glottal angles, durations of voicing offset and onset, and a kinematic estimate of laryngeal stiffness (KS) were obtained from HSV images. No differences were found between younger and older speakers for any measure. RFF did not differ between the two obstruents at voicing offset; however, fricatives necessitated larger glottal angles and longer durations to devoice. RFF values were lower and glottal angles were greater for stops relative to fricatives at voicing onset. KS values were greater in stops relative to fricatives. The less adducted vocal folds with greater KS and lower RFF at voicing onset for stops relative to fricatives in this study were in accordance with prior speculations that decreased vocal fold contact area and increased laryngeal stiffness may decrease RFF.
声学指标相对基频(RFF)已被提议作为评估嗓音功能亢进的客观指标;然而,其潜在的生理机制尚未完全明确。本研究旨在明确RFF与声带运动学之间的关系。在年轻和年长的受试者重复发出/ifi/和/iti/时,同步采集声学和高速视频内镜(HSV)记录。从声学记录中估计出阻塞音周围发声起始和终止时的RFF值,而从HSV图像中获取声门角度、发声起始和终止的持续时间以及喉部僵硬度(KS)的运动学估计值。在任何测量指标上,年轻和年长的受试者之间均未发现差异。在发声终止时,两个阻塞音之间的RFF没有差异;然而,擦音需要更大的声门角度和更长的持续时间来终止发声。在发声起始时,塞音的RFF值低于擦音,且声门角度更大。塞音的KS值相对于擦音更大。在本研究中,相对于擦音,塞音在发声起始时声带内收程度较小,KS较大且RFF较低,这与之前的推测一致,即声带接触面积减小和喉部僵硬度增加可能会降低RFF。