Department Speech and Hearing Sciences, College of Arts and Sciences, Indiana University, Bloomington, Indiana 47405, USA.
J Voice. 2013 Jul;27(4):463-72. doi: 10.1016/j.jvoice.2013.03.004.
The aim of the study was to present the development of a miniature structured light laser projection endoscope and to quantify vocal fold length and vibratory features related to impact stress of the pediatric glottis using high-speed imaging.
The custom-developed laser projection system consists of a green laser with a 4-mm diameter optics module at the tip of the endoscope, projecting 20 vertical laser lines on the glottis. Measurements of absolute phonatory vocal fold length, membranous vocal fold length, peak amplitude, amplitude-to-length ratio, average closing velocity, and impact velocity were obtained in five children (6-9 years), two adult male and three adult female participants without voice disorders, and one child (10 years) with bilateral vocal fold nodules during modal phonation.
Independent measurements made on the glottal length of a vocal fold phantom demonstrated a 0.13mm bias error with a standard deviation of 0.23mm, indicating adequate precision and accuracy for measuring vocal fold structures and displacement. First, in vivo measurements of amplitude-to-length ratio, peak closing velocity, and impact velocity during phonation in pediatric population and a child with vocal fold nodules are reported.
The proposed laser projection system can be used to obtain in vivo measurements of absolute length and vibratory features in children and adults. Children have large amplitude-to-length ratio compared with typically developing adults, whereas nodules result in larger peak amplitude, amplitude-to-length ratio, average closing velocity, and impact velocity compared with typically developing children.
本研究旨在介绍一种微型结构光激光投影内窥镜的研制,并使用高速成像技术定量评估儿童声门的冲击应激相关声带长度和振动特征。
定制的激光投影系统由内窥镜尖端的直径为 4mm 的绿光光学模块组成,在声门上投射 20 条垂直激光线。在 5 名(6-9 岁)无嗓音障碍的儿童、2 名成年男性和 3 名成年女性参与者以及 1 名(10 岁)患有双侧声带小结的儿童进行了模态发声时的绝对发音声带长度、膜性声带长度、峰值振幅、振幅与长度比、平均闭合速度和冲击速度的测量。
在声带仿体的声带长度上进行的独立测量显示出 0.13mm 的偏差误差,标准偏差为 0.23mm,表明测量声带结构和位移具有足够的精度和准确性。首先,报告了儿童和声带小结儿童发声时的振幅与长度比、峰值闭合速度和冲击速度的体内测量值。
所提出的激光投影系统可用于获取儿童和成人的体内绝对长度和振动特征测量值。与典型发育的成年人相比,儿童的振幅与长度比较大,而小结会导致峰值振幅、振幅与长度比、平均闭合速度和冲击速度比典型发育的儿童更大。