Qiu Qingjun, Schutte Harm K
Groningen Voice Research Lab, Department of Biomedical Engineering, University Medical Center of Groningen, University of Groningen, Groningen, The Netherlands.
Laryngoscope. 2006 Oct;116(10):1824-8. doi: 10.1097/01.mlg.0000233552.58895.d0.
This study aims to introduce a new-generation videokymographic system, which provides simultaneous laryngoscopic and kymographic image, for routine clinical vocal fold examination.
The authors explored a new imaging method for diagnosis and evaluation of voice disorders.
The new-generation videokymographic system includes two charge-coupled device image sensors, a color area image sensor, and a monochromic high-speed line-scan image sensor. The high-speed line-scan image sensor is used to capture the kymogram, and the color area image sensor is used to obtain the laryngoscopic image. The two images can be displayed simultaneously on a video monitor or stored in a standard video recorder. Three subjects with nonpathologic voice were investigated in detail with the new videokymographic system.
The high-quality laryngoscopic image and kymogram can be used directly for clinical purposes with no further postprocessing. The scan position of the kymogram is always indicated in the laryngoscopic image, which provides feedback for the operator to easily locate the expected scanning position. All varieties of vocal fold vibration, including irregular vibrations, phonation onset and offset, can be observed with the presented method. The continuous kymogram of the vocal fold vibration can be retrieved from a kymographic image sequence for quantitative analysis.
The new-generation videokymography provides a simple, quick means to investigate vocal fold vibration, especially for voice disorders. It can emerge as an important tool for routine clinical vocal fold examination.
本研究旨在引入一种新一代的视频记波系统,该系统可同时提供喉镜图像和记波图像,用于常规临床声带检查。
作者探索了一种用于诊断和评估嗓音障碍的新成像方法。
新一代视频记波系统包括两个电荷耦合器件图像传感器、一个彩色区域图像传感器和一个单色高速线扫描图像传感器。高速线扫描图像传感器用于采集记波图,彩色区域图像传感器用于获取喉镜图像。这两个图像可同时显示在视频监视器上或存储在标准录像机中。使用新的视频记波系统对三名嗓音无病理改变的受试者进行了详细研究。
高质量的喉镜图像和记波图无需进一步后处理即可直接用于临床。记波图的扫描位置总是显示在喉镜图像中,为操作者轻松定位预期扫描位置提供了反馈。使用所提出的方法可以观察到各种声带振动,包括不规则振动、发声起始和终止。可以从记波图像序列中获取声带振动的连续记波图用于定量分析。
新一代视频记波术提供了一种简单、快速的方法来研究声带振动,特别是对于嗓音障碍。它可以成为常规临床声带检查的重要工具。