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Aerodynamic, acoustic, and vibratory comparison of arytenoid adduction and adduction arytenopexy.

机译:空气动力学,声学和振动比较类人猿内收和内收性膝关节狭窄。

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HYPOTHESIS: Adduction arytenopexy (AP) with thyroplasty provides improved physiologic placement of the vocal fold and therefore provides improved acoustic, aerodynamic, and vibratory function as compared with arytenoid adduction (AA) with thyroplasty. METHODS: Five cadaveric human larynges were prepared by removing supraglottic tissues and fixing the nontest vocal fold medially on the cricoid facet with a needle in a physiologic phonating position. Each test vocal fold was then sequentially tested using an excised larynx phonation system, first with AA with silastic medialization and then converted to AP without changing the contralateral fold position or silastic wedge. The excised larynx setup allowed for simultaneous collection of data, specifically subglottic pressure (including measurement of phonation threshold pressure [PTP]), mean airflow, acoustic output, and full-frame high-speed digital video. RESULTS: Aerodynamic evaluation was similar for each group with similar subglottic pressure versus output curves. Conditions involving AP typically had PTP values that were 80% of that for comparable AA conditions. Acoustic evaluation revealed differences between the two groups. Each AA was found to be vibrating with two dominant frequencies with their associated harmonics. Each AP vibrated at a single dominant frequency with its harmonics. CONCLUSION: AP provides improved vocal outcomes by decreasing system noise and decreasing PTP, which may lead to a stronger glottal signal with decreased vocal effort.
机译:假设:甲状腺成形术的内收性椎管扩张术(AP)与人甲状腺成形术的类固醇内收术(AA)相比,能改善声带的生理位置,因此具有更好的声学,空气动力学和振动功能。方法:通过摘除声门上组织,并用生理性发声的针头将非测试声带内侧固定在环状小突上,制备出五个尸体人喉。然后,使用切除的喉部发声系统依次测试每个测试的声带,首先使用具有硅弹性介质的AA,然后在不改变对侧褶皱位置或硅橡胶楔形的情况下转换为AP。切除的喉部设置允许同时收集数据,特别是声门下压力(包括声门限压力[PTP]的测量),平均气流,声音输出和全帧高速数字视频。结果:各组的气动力评估相似,声门下压力与输出曲线相似。涉及AP的条件的PTP值通常为可比AA条件的PTP值的80%。声学评估显示两组之间存在差异。发现每个AA都以两个主频及其相关的谐波振动。每个AP都以其谐波在一个主频率上振动。结论:AP可通过降低系统噪音和降低PTP来改善嗓音效果,这可能会导致声门信号增强,同时降低嗓音。

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