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Sensitivity analysis of muscle mechanics-based voice simulator to determine gender-specific speech characteristics

机译:基于肌肉力学语音模拟器的敏感性分析确定性别特定语音特征

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The purpose of this study was to investigate the gender differences in voice simulation using a sensitivity analysis approach. A global, Monte Carlo-based approach was employed, and the relationships between biomechanical inputs (lung pressure and muscle activation levels) and acoustic outputs (fundamental frequency, f(0), and sound pressure level, SPL) were investigated for male and female versions of a voice simulator model. The gender distinction in the model was based on an anatomical scaling of the laryngeal structures. Results showed strong relationships for f(0) and SPL as functions of lung pressure, as well as for f(0) as a function of cricothyroid and thyroarytenoid muscle activity, in agreement with previous literature. Also expected was a systematic shift in f(0) range between the genders. It was found that the female model exhibited greater pitch strength (saliency) than the male model, which might equate to a perceptually more periodic or higher-quality voice for females. In addition, the female model required slightly higher lung pressures than the male model to achieve the same SPL, suggesting a possibly greater phonatory effort and predisposition for fatigue in the female voice. The methods and results of this study lay the groundwork for a complete mapping of simulator sound signal characteristics as a function of simulator input parameters and a better understanding of gender-specific voice production and vocal health.
机译:本研究的目的是使用灵敏度分析方法来研究语音模拟中的性别差异。采用全球性蒙特卡罗的方法,对男女和女性研究了生物力学输入(肺压力和肺部压力和肺部肌肉激活水平)和声输出之间的关系(基本频率,F(0)和声压级,SPL)语音模拟器模型的版本。该模型中的性别区别是基于喉部结构的解剖结构。结果表明,F(0)和SPL作为肺压力的功能,以及F(0)作为克里克替索和甲状腺囊炎肌肉活动的函数,与先前的文献一致。预计也是在性别之间的F(0)范围内的系统偏移。发现女性模型表现出比男性模型更大的俯仰强度(显着性),这可能等同于雌性的感知更周期性或更高质量的女性。此外,雌性模型需要比男性模型略高的肺压力达到相同的解密,暗示了女性声音中疲劳的可能更大的口音努力和易感性。该研究的方法和结果为模拟器输入参数的函数进行了全面映射的基础,是模拟器输入参数的函数,更好地了解性别特异性语音生产和声带。

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