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Modelling of Human Vocal Folds and Systematic Investigation of their Vibrations from Kymogram

机译:人声折叠的建模与脑电图振动系统

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The systematic investigation of the vocal folds’ physical phenomenon and corresponding kymographic vibratory patterns can establish clinically important relationships which are vital in the diagnosis of laryngeal disorders. The routine investigation is often done clinically through the in-vivo examination of human vocal folds using laryngoscopes. Physical modelling of human vocal folds overcomes the accessibility limitations of the laryngoscopes in imaging the medial and coronal parts of the vocal folds in-vivo, thus allowing investigation of mucosal wave propagation for different geometrical configurations of the vocal folds. Here, the modelled vocal folds are fabricated using flexible silicone compounds, which can closely reproduce the vibratory characteristics of human vocal folds. The kymogram, generated by recording the vibration pattern of the vocal folds, is useful in the analysis of its functional characteristics. The systematic investigation involves quantification of the vibratory parameters from the kymogram of the modelled vocal folds and establishing its relationship with the physical phenomenon. From the quantification, the important parameters: amplitude, open quotient, closed quotient, speed quotient and skewness are analysed. The quantified parameters reflect the influence of physical parameters on the vibratory characteristics of the vocal folds.
机译:声带物理现象和相应的攻击性振动模式的系统调查可以建立临床重要的关系,这在喉部疾病的诊断中至关重要。常规调查通常通过使用喉镜的人类声学折叠的体内检查临床进行。人声折叠的物理建模克服了喉镜对体内声带的内侧和冠状部分成像中的喉镜的可访问性限制,从而允许对声带不同几何配置的粘膜波传播研究。这里,使用柔性硅氧烷化合物制造建模的声带,其可以密切地再现人声折叠的振动特性。通过记录声带的振动模式而产生的kym码,可用于分析其功能特性。系统调查涉及从模拟的声带折叠的Kymogars的振动参数定量振动参数,并与物理现象建立其关系。从量化,分析了重要参数:分析了幅度,打开商,封闭商,速度商和歪斜。量化参数反映了物理参数对声带振动特性的影响。

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