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Toward Development of a Vocal Fold Contact Pressure Probe: Sensor Characterization and Validation Using Synthetic Vocal Fold Models

机译:发展声带接触压力探头的发展:使用合成声带模型的传感器表征和验证

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摘要

Excessive vocal fold collision pressures during phonation are considered to play a primary role in the formation of benign vocal fold lesions, such as nodules. The ability to accurately and reliably acquire intraglottal pressure has the potential to provide unique insights into the pathophysiology of phonotrauma. Difficulties arise, however, in directly measuring vocal fold contact pressures due to physical intrusion from the sensor that may disrupt the contact mechanics, as well as difficulty in determining probe/sensor position relative to the contact location. These issues are quantified and addressed through the implementation of a novel approach for identifying the timing and location of vocal fold contact, and measuring intraglottal and vocal fold contact pressures via a pressure probe embedded in the wall of a hemi-laryngeal flow facility. The accuracy and sensitivity of the pressure measurements are validated against ground truth values. Application to in vivo approaches are assessed by acquiring intraglottal and VF contact pressures using a synthetic, self-oscillating vocal fold model in a hemi-laryngeal configuration, where the sensitivity of the measured intraglottal and vocal fold contact pressure relative to the sensor position is explored.
机译:声音期间的过度声带碰撞压力被认为是在良性声带病变的形成中发挥主要作用,例如结节。准确且可靠地获得内部压力的能力有可能提供对Phonotrauma病理生理学的独特见解。然而,由于来自传感器的物理侵入而导致的声音折叠接触压力直接测量可能会破坏接触机械,以及难以确定相对于接触位置的探针/传感器位置。这些问题是通过实施一种新方法来定量和解决,以确定声音折叠接触的时序和位置,并通过嵌入半喉流动设施的墙壁中的压力探针测量内部探测器和声带接触压力。压力测量的准确性和灵敏度验证了对实际值的验证。通过使用合成的自振荡的声带模型在Hemi-Laryngeal配置中获得Intracklottal和VF接触压力来评估用于体内方法的应用,其中探讨了测量的内部和声折叠接触压力相对于传感器位置的感觉性。

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