首页> 美国卫生研究院文献>Yonago Acta Medica >Analysis of Direct Simultaneous Measurement of Glottal Airflow Velocity Subglottal Pressure and High-Speed Imaging Using Flexible Transnasal Endoscope in a Human Subject
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Analysis of Direct Simultaneous Measurement of Glottal Airflow Velocity Subglottal Pressure and High-Speed Imaging Using Flexible Transnasal Endoscope in a Human Subject

机译:使用柔性鼻内窥镜直接同步测量人的声门气流速度声门下压力和高速成像

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摘要

It is difficult to directly observe glottal airflow velocity just above the glottis due to sensor size requirements and limited accessibility. We developed a miniature hot-wire probe and flexible fiberscopic high-speed imaging system for human examinations. Simultaneous direct measurement of glottal airflow velocity, subglottal pressure, and vocal fold vibration was achieved in a patient who was treated with a T-tube for tracheal stenosis. Airflow velocity changes at the anterior midline of the vocal folds were synchronized with subglottal pressure changes during each phonation cycle. The velocity at the anterior midline of the vocal folds showed a rhythmic pattern of sharp, high peaks. The result of fast Fourier transform analysis indicated that glottal velocity at the anterior midline of the vocal folds had abundant high-frequency components that were not affected by resonance of the vocal tract. Airflow velocity was variable and diminished except at the anterior midline of the vocal folds.
机译:由于传感器尺寸要求和可接近性的限制,很难直接观察到声门正上方的声门气流速度。我们开发了用于人体检查的微型热线探针和柔性纤维高速成像系统。在使用T管治疗气管狭窄的患者中,可以同时直接测量声门气流速度,声门下压力和声带振动。在每个发声周期中,声带前中线处的气流速度变化与声门下压力变化同步。声带前中线处的速度表现出尖锐,高峰的节奏模式。快速傅里叶变换分析的结果表明,声带前中线的声门速度具有丰富的高频成分,不受声带共振的影响。除了在声带的前中线处,气流速度是可变的并且减小了。

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