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Physical parameter estimation from porcine ex vivo vocal fold dynamics in an inverse problem framework

机译:从逆问题框架中的猪exvivo声带动态的物理参数估计

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摘要

This study presents a framework for a direct comparison of experimental vocal fold dynamics data to a numerical two-mass-model (2MM) by solving the corresponding inverse problem of which parameters lead to similar model behavior. The introduced 2MM features improvements such as a variable stiffness and a modified collision force. A set of physiologically sensible degrees of freedom is presented, and three optimization algorithms are compared on synthetic vocal fold trajectories. Finally, a total of 288 high-speed video recordings of six excised porcine larynges were optimized to validate the proposed framework. Particular focus lay on the subglottal pressure, as the experimental subglottal pressure is directly comparable to the model subglottal pressure. Fundamental frequency, amplitude and objective function values were also investigated. The employed 2MM is able to replicate the behavior of the porcine vocal folds very well. The model trajectories' fundamental frequency matches the one of the experimental trajectories in of the recordings. The relative error of the model trajectory amplitudes is on average . The experiments feature a mean subglottal pressure of 10.16 (SD) ; in the model, it was on average 7.61 (SD) . A tendency of the model to underestimate the subglottal pressure is found, but the model is capable of inferring trends in the subglottal pressure. The average absolute error between the subglottal pressure in the model and the experiment is 2.90 (SD) or . A detailed analysis of the factors affecting the accuracy in matching the subglottal pressure is presented.
机译:本研究通过解决参数导致类似的模型行为,直接比较实验声带动力学数据与数值二重模型(2mm)的直接比较的框架。介绍的2mm具有可变刚度和改进的碰撞力的改进。提出了一组生理学上可明智的自由度,并在合成声带折叠轨迹上比较了三种优化算法。最后,优化了六个切除的猪喉部的288次高速录像以验证提出的框架。特别重点介绍了脱底压力,因为实验性分泌压力与模型外囊压力直接相当。还研究了基本频率,幅度和目标函数值。所用的2mm能够非常良好地复制猪声折叠的行为。模型轨迹的基础频率与录制的实验轨迹之一匹配。模型轨迹幅度的相对误差平均值。实验特征为10.16(SD)的平均分泌压力;在模型中,它平均为7.61(SD)。发现模型倾向于低估了脱墨压力,但该模型能够推断出脱墨压力的趋势。模型中的子凝块压力与实验之间的平均绝对误差为2.90(SD)或。提出了影响匹配匹配的精度的因素的详细分析。

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  • 作者单位

    Friedrich Alexander Univ Erlangen Nurnberg Div Phoniatr &

    Pediat Audiol Dept Otorhinolaryngol Head &

    Neck Surg Univ Hosp Erlangen Waldstr 1 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Div Phoniatr &

    Pediat Audiol Dept Otorhinolaryngol Head &

    Neck Surg Univ Hosp Erlangen Waldstr 1 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Div Phoniatr &

    Pediat Audiol Dept Otorhinolaryngol Head &

    Neck Surg Univ Hosp Erlangen Waldstr 1 D-91054 Erlangen Germany;

    Univ Regensburg Univ Hosp Regensburg ENT Dept Waldstr 1 D-91054 Erlangen Germany;

    Friedrich Alexander Univ Erlangen Nurnberg Div Phoniatr &

    Pediat Audiol Dept Otorhinolaryngol Head &

    Neck Surg Univ Hosp Erlangen Waldstr 1 D-91054 Erlangen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物力学;
  • 关键词

    Inverse problem; High-speed videoendoscopy; Vocal fold oscillation; Two-mass model;

    机译:逆问题;高速模型镜检查;声带振荡;两群模型;

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