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首页> 外文期刊>Journal of voice: official journal of the Voice Foundation >Phonation threshold power in ex vivo laryngeal models.
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Phonation threshold power in ex vivo laryngeal models.

机译:离体喉模型中的语音阈值功率。

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摘要

This study hypothesized that phonation threshold power is measureable and sensitive to changes in the biomechanical properties of the vocal folds. Phonation threshold power was measured in three sample populations of 10 excised canine larynges treated with variable posterior glottal gap, variable bilateral vocal fold elongation, and variable vocal fold lesioning. Posterior glottal gap varied from 0 to 4mm in 0.5 mm intervals. Bilateral vocal fold elongation varied from 0% to 20% in 5% intervals. Vocal fold lesion treatments included unilateral and bilateral vocal fold lesion groups. Each treatment was investigated independently in a sample population of 10 excised canine larynges. Linear regression analysis indicated that phonation threshold power was sensitive to posterior glottal gap (R2=0.298, P<0.001) and weakly to vocal fold elongation (R2=0.052, P=0.003). A one-way repeated measures analysis of variance indicated that phonation threshold power was sensitive to the presence of lesions (P<0.001). Theoretical and experimental evidence presented here suggests that phonation threshold power could be used as a broad screening parameter sensitive to certain changes in the biomechanical properties of the larynx. It has not yet been measured in humans, but because it has the potential to represent the airflow-tissue energy transfer more completely than the phonation threshold pressure or flow alone, it may be a more useful parameter than these and could be used to indicate that laryngeal health is likely abnormal.
机译:该研究假设发声阈值功率是可测量的,并且对声带生物力学特性的变化敏感。在三个可变的声门后间隙,可变的双侧声带伸长和可变的声带损伤处理的10个切除的犬喉的三个样本群体中,测量了语音阈值功率。声门后间隙从0.5毫米到4毫米不等。双边声带伸长率以5%的间隔从0%到20%不等。声带病变治疗包括单侧和双侧声带病变组。每种治疗方法均在10个切除的犬喉样本中进行独立研究。线性回归分析表明,发声阈值功率对声门后间隙敏感(R2 = 0.298,P <0.001),对声带伸长敏感(R2 = 0.052,P = 0.003)。单向重复测量方差分析表明,发声阈值功率对病变的存在敏感(P <0.001)。本文提供的理论和实验证据表明,发声阈值功率可以用作对喉头生物力学特性的某些变化敏感的广泛筛选参数。它尚未在人体中进行测量,但是因为它比单独的发声阈值压力或流量更有可能代表气流组织能量传递,所以它可能是比这些更为有用的参数,可用于指示喉健康可能异常。

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