Maguluri Gopi, Mehta Daryush, Kobler James, Park Jesung, Iftimia Nicusor
Physical Sciences Inc., Andover, MA 01810, USA.
Center for Laryngeal Surgery and Voice Rehabilitation, Massachusetts General Hospital, Boston, MA 02114, USA.
Biomed Opt Express. 2019 Aug 6;10(9):4450-4461. doi: 10.1364/BOE.10.004450. eCollection 2019 Sep 1.
Voice disorders affect a large number of adults in the United States, and their clinical evaluation heavily relies on laryngeal videostroboscopy, which captures the medial-lateral and anterior-posterior motion of the vocal folds using stroboscopic sampling. However, videostroboscopy does not provide direct visualization of the superior-inferior movement of the vocal folds, which yields important clinical insight. In this paper, we present a novel technology that complements videostroboscopic findings by adding the ability to image the coronal plane and visualize the superior-inferior movement of the vocal folds. The technology is based on optical coherence tomography, which is combined with videostroboscopy within the same endoscopic probe to provide spatially and temporally co-registered images of the mucosal wave motion, as well as vocal folds subsurface morphology. We demonstrate the capability of the rigid endoscopic probe, in a benchtop setting, to characterize the complex movement and subsurface structure of the aerodynamically driven excised larynx models within the 50 to 200 Hz phonation range. Our preliminary results encourage future development of this technology with the goal of its use for laryngeal imaging.
在美国,嗓音障碍影响着大量成年人,其临床评估严重依赖于喉动态镜检查,该检查通过频闪采样捕捉声带的内外侧和前后运动。然而,动态镜检查无法直接观察到声带的上下运动,而这能提供重要的临床见解。在本文中,我们提出了一种新技术,通过增加对冠状面成像以及可视化声带上下运动的能力来补充动态镜检查的结果。该技术基于光学相干断层扫描,它与动态镜检查结合在同一个内窥探头内,以提供黏膜波运动以及声带表面下形态的空间和时间上配准的图像。我们在台式环境中展示了刚性内窥探头在50至200赫兹发声范围内表征气动驱动的离体喉模型的复杂运动和表面下结构的能力。我们的初步结果鼓励了该技术未来的发展,目标是将其用于喉部成像。