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使用赫兹接触模型从原始喉部高速视频内窥镜检查估计声带接触压力。

Estimating Vocal Fold Contact Pressure from Raw Laryngeal High-Speed Videoendoscopy Using a Hertz Contact Model.

作者信息

Díaz-Cádiz Manuel E, Peterson Sean D, Galindo Gabriel E, Espinoza Víctor M, Motie-Shirazi Mohsen, Erath Byron D, Zañartu Matías

机构信息

Speech, Language & Hearing Department at the Boston University College of Health & Rehabilitation, Sargent College, Boston, MA 02215, USA.

Department of Electronic Engineering at Universidad Técnica Federico Santa María, Valparaiso 2390123, Chile.

出版信息

Appl Sci (Basel). 2019 Jun 1;9(11). doi: 10.3390/app9112384. Epub 2019 Jun 11.

Abstract

The development of trauma-induced lesions of the vocal folds (VFs) has been linked to a high collision pressure on the VF surface. However, there are no direct methods for the clinical assessment of VF collision, thus limiting the objective assessment of these disorders. In this study, we develop a video processing technique to directly quantify the mechanical impact of the VFs using solely laryngeal kinematic data. The technique is based on an edge tracking framework that estimates the kinematic sequence of each VF edge with a Kalman filter approach and a Hertzian impact model to predict the contact force during the collision. The proposed formulation overcomes several limitations of prior efforts since it uses a more relevant VF contact geometry, it does not require calibrated physical dimensions, it is normalized by the tissue properties, and it applies a correction factor for using a superior view only. The proposed approach is validated against numerical models, silicone vocal fold models, and prior studies. A case study with high-speed videoendoscopy recordings provides initial insights between the sound pressure level and contact pressure. Thus, the proposed method has a high potential in clinical practice and could also be adapted to operate with laryngeal stroboscopic systems.

摘要

创伤性声带损伤的发展与声带表面的高碰撞压力有关。然而,目前尚无直接的方法用于临床评估声带碰撞情况,这限制了对这些疾病的客观评估。在本研究中,我们开发了一种视频处理技术,仅使用喉部运动学数据直接量化声带的机械冲击。该技术基于边缘跟踪框架,通过卡尔曼滤波方法估计每个声带边缘的运动序列,并使用赫兹碰撞模型预测碰撞过程中的接触力。所提出的公式克服了先前研究的几个局限性,因为它使用了更相关的声带接触几何形状,不需要校准的物理尺寸,通过组织特性进行归一化,并且仅使用上视图时应用了校正因子。所提出的方法通过数值模型、硅胶声带模型和先前的研究进行了验证。一项使用高速视频内镜记录的案例研究提供了声压级与接触压力之间的初步见解。因此,所提出的方法在临床实践中具有很大的潜力,并且还可以适用于与喉部频闪系统配合使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ea0/8279006/afb658fe0c03/nihms-1068970-f0001.jpg

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