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The role of glottal surface adhesion on vocal folds biomechanics

机译:声门表面黏附在声带生物力学中的作用

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The airway surface liquid (ASL) is a very thin mucus layer and covers the vocal fold (VF) surface. Adhesion mediated by the ASL occurs during phonation as the VFs separate after collision. Such adhesion is hypothesized to determine voice quality and health. However, biomechanical insights into the adhesive processes during VF oscillation are lacking. Here, a computational study is reported on self-sustained VF vibration involving contact and adhesion. The VF structural model and the glottal airflow are considered fully three-dimensional. The mechanical behavior of the ASL is described through a constitutive traction–separation law where mucosal cohesive strength, cohesive energy, and rupture length enter. Cohesive energy values considered are bound below by the cohesive energy of water at standard temperature and pressure. Cohesive strength values considered are bound above by prior reported data on the adhesive strength of mucosal surface of rat small intestine. This model introduces a mechanical length scale into the analysis. The sensitivity of various aspects of VF dynamics such as flow-declination rate, VF separation under adhesive condition, and formation of multiple local fluid bridges is determined in relation to specific ASL adhesive properties. It is found that for the ASL considered here, the characteristics of the VF separation process are of debond type. Instabilities lead to the breakup of the bond area into several smaller bond patches. Such finding is consistent with in vivo observations.
机译:气道表面液体(ASL)是非常薄的粘液层,覆盖了声带(VF)表面。当碰撞后VF分离时,在发声过程中会发生由ASL介导的粘附。假设这种附着力可以确定语音质量和健康状况。但是,缺乏在VF振荡过程中对粘合过程的生物力学见解。在此,据报道有关涉及接触和粘附的自持VF振动的计算研究。 VF结构模型和声门气流被认为是完全三维的。 ASL的机械行为通过本构牵引分离法来描述,其中粘膜内聚强度,内聚能和断裂长度进入其中。所考虑的内聚能值在下面受到标准温度和压力下水的内聚能的约束。所考虑的内聚强度值在上面受先前报道的大鼠小肠粘膜表面粘附强度的数据的约束。该模型将机械长度刻度引入分析中。根据特定的ASL粘合剂性能,确定了VF动力学各个方面的敏感性,例如流量下降率,粘合剂条件下的VF分离以及形成多个局部流体桥。发现对于这里考虑的ASL,VF分离过程的特征是脱键型的。不稳定性导致键合区域破裂成几个较小的键合斑块。这种发现与体内观察结果一致。

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