首页> 外文期刊>Journal of voice: official journal of the Voice Foundation >Computational study of effects of tension imbalance on phonation in a three-dimensional tubular larynx model
【24h】

Computational study of effects of tension imbalance on phonation in a three-dimensional tubular larynx model

机译:三维管状喉模型中张力不平衡对发声影响的计算研究

获取原文
获取原文并翻译 | 示例
       

摘要

Objectives The present study explores the use of a continuum-based computational model to investigate the effect of left-right tension imbalance on vocal fold (VF) vibrations and glottal aerodynamics, as well as its implication on phonation. The study allows us to gain new insights into the underlying physical mechanism of irregularities induced by VF tension imbalance associated with unilateral cricothyroid muscle paralysis. Methods A three-dimensional simulation of glottal flow and VF dynamics in a tubular laryngeal model with tension imbalance was conducted by using a coupled flow-structure interaction computational model. Tension imbalance was modeled by reducing by 20% the Young's modulus of one of the VFs, while holding VF length constant. Effects of tension imbalance on vibratory characteristic of the VFs and on the time-varying properties of glottal airflow as well as the aerodynamic energy transfer are comprehensively analyzed. Results and Conclusions The analysis demonstrates that the continuum-based biomechanical model can provide a good description of phonatory dynamics in tension imbalance conditions. It is found that although 20% tension imbalance does not have noticeable effects on the fundamental frequency, it does lead to a larger glottal flow leakage and asymmetric vibrations of the two VFs. A detailed analysis of the energy transfer suggests that the majority of the energy is consumed by the lateral motion of the VFs and the net energy transferred to the softer fold is less than the one transferred to the normal fold.
机译:目的本研究探索了一种基于连续谱的计算模型,以研究左右张力不平衡对声带(VF)振动和声门空气动力学的影响,以及其对发声的影响。该研究使我们对由VF张力不平衡引起的单侧环甲亢性肌肉麻痹相关的不规则性的潜在物理机制有了新的认识。方法采用流固耦合计算模型,对具有张力不平衡的管状喉模型的声门血流和VF动力学进行三维模拟。通过将其中一个VF的杨氏模量降低20%,同时保持VF长度恒定来模拟张力不平衡。全面分析了张力不平衡对VFs的振动特性,声门气流的时变特性以及空气动力传递的影响。结果与结论分析表明,基于连续谱的生物力学模型可以很好地描述张力不平衡条件下的发声动力学。已发现,尽管20%的张力不平衡对基频没有明显影响,但确实会导致更大的声门流泄漏和两个VF的不对称振动。对能量转移的详细分析表明,大部分能量被VF的侧向运动消耗,转移到较软褶皱的净能量小于转移到正常褶皱的净能量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号