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Vocal Loading and Environmental Humidity Effects in Older Adults

机译:老年人的声带和环境湿度效应

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Objective The goal of this study was to investigate the effects of a vocal loading challenge that combined prolonged speaking, in child-directed voice within a noisy environment, in older adults. An additional goal was to determine whether increased environmental humidity would attenuate the negative effects of this vocal loading challenge. Method Thirteen healthy subjects (five males and eight females; >65 years) completed a vocal loading challenge. The challenge involved 45 minutes of child-directed speech in the presence of 65 dB multitalker babble background noise. Subjects completed this challenge in both low humidity and moderate humidity in counterbalanced order. Vocal function was assessed before and after the challenge using phonation threshold pressure (PTP), cepstral peak prominence (CPP), low/high spectral ratio (LHR), perceived phonatory effort (PPE), and perceived vocal tiredness. Results Negative changes were observed in the aging larynx following the 45-minute vocal loading challenge. Measures of PTP, PPE, and perceived vocal tiredness demonstrated statistically significant loading effects. Increased ambient humidity significantly alleviated the negative changes observed in PPE and perceived vocal tiredness. Increased humidity significantly improved CPP measures both before and after the vocal loading challenge. Conclusions This study furthers our understanding of how older adults respond to a vocal loading challenge of prolonged nonhabitual speech in a noisy environment. Our data suggest that the aging voice is negatively affected by prolonged loud speaking and that humidification may be beneficial in reducing some of these negative effects.
机译:目的本研究的目的是调查声音负荷挑战对老年人的影响,该挑战结合了在嘈杂环境中以儿童为主导的长时间说话。另一个目标是确定环境湿度的增加是否会减弱这种声音负荷挑战的负面影响。方法13名健康受试者(5名男性和8名女性,年龄>65岁)完成了发声负荷测试。这项挑战包括在65分贝的多说话者叽叽喳喳的背景噪音中进行45分钟的儿童指导演讲。受试者以平衡的顺序在低湿度和中等湿度下完成这项挑战。使用发声阈值压力(PTP)、倒谱峰值突出度(CPP)、低/高频谱比(LHR)、发声努力感(PPE)和发声疲劳感来评估挑战前后的发声功能。结果在45分钟的声带负荷训练后,衰老的喉部出现了负性变化。PTP、PPE和感知声音疲劳的测量结果显示了统计上显著的负荷效应。环境湿度的增加显著减轻了PPE中观察到的负面变化和声音疲劳感。在发声负荷挑战前后,湿度的增加显著改善了CPP测量。结论本研究进一步加深了我们对老年人在嘈杂环境中如何应对长时间非习惯性言语的声音负荷挑战的理解。我们的数据表明,长时间大声说话会对声音老化产生负面影响,加湿可能有助于减少这些负面影响。

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