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Biomechanical Flow Amplification Arising From the Variable Deformation of the Subglottic Mucosa

机译:从子粘膜粘膜变形变形产生的生物力学流动扩增

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Summary Objective This study mapped the variation in tissue elasticity of the subglottic mucosa, applied these data to provide initial models of the likely deformation of the mucosa during the myoelastic cycle, and hypothesized as to the impact on the process of phonation. Study Design Six donor human larynges were dissected along the sagittal plane to expose the vocal folds and subglottic mucosa. A linear skin rheometer was used to apply a controlled shear force, and the resultant displacement was measured. These data provided a measure of the stress/strain characteristics of the tissue at each anatomic point. A series of measurements were taken at 2-mm interval inferior of the vocal folds, and the change in elasticity was determined. Results It was found that the elasticity of the mucosa in the subglottic region increased linearly with distance from the vocal folds in all 12 samples. A simple deformation model indicated that under low pressure conditions the subglottic mucosa will deform to form a cone, which could result in a higher velocity, thus amplifying the low pressure effect resulting from the Venturi principle, and could assist in maintaining laminar flow. Conclusions This study indicated that the deformation of the subglottic mucosa could play a significant role in the delivery of a low pressure airflow over the vocal folds. A large scale study will now be undertaken to secure more data to evaluate this hypothesis, and using computational fluid dynamics based on actual three-dimensional structure obtained from computed tomography scans the aerodynamics of this region will be investigated.
机译:摘要目的本研究绘制了声门下粘膜组织弹性的变化,应用这些数据提供了肌弹性周期中粘膜可能变形的初始模型,并假设了对发声过程的影响。研究设计沿矢状面解剖六个供者喉,暴露声带和声门下粘膜。使用线性皮肤流变仪施加受控剪切力,并测量合成位移。这些数据提供了组织在每个解剖点的应力/应变特征的测量值。在声带下方2毫米的间隔处进行一系列测量,并确定弹性的变化。结果12例声门下区粘膜弹性均随声带距离线性增加。一个简单的变形模型表明,在低压条件下,声门下粘膜会变形形成一个圆锥体,这可能导致更高的速度,从而放大文丘里原理产生的低压效应,并有助于维持层流。结论本研究表明,声门下粘膜的变形在声带上低压气流的输送中起重要作用。现在将进行一项大规模研究,以获得更多数据来评估这一假设,并使用基于计算机断层扫描获得的实际三维结构的计算流体动力学来研究该区域的空气动力学。

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