首页> 外文会议>ASME summer bioengineering conference;SBC2010 >PARAMETRIC ANALYSIS OF EUSTACHIAN TUBE FUNCTION USING FULLY COUPLED FLUID- STRURCTURE INTERACTION MODELS
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PARAMETRIC ANALYSIS OF EUSTACHIAN TUBE FUNCTION USING FULLY COUPLED FLUID- STRURCTURE INTERACTION MODELS

机译:基于完全耦合的流固耦合模型的咽鼓管功能参数分析

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摘要

Otitis Media (OM) is the most commonly diagnosed childhood illness and has health care related cost of four billion dollars annually. [1] The onset of OM has been directly related to Eustachian Tube (ET) dysfunction. The ET has three main physiological functions, and when these functions are compromised, middle ear (ME) disorders arise. It is also known that specific populations of patients, such as those with cranio-facial abnormalities, such as a cleft palate, have a 100% onset rate of OM. Even though ET dysfunction has been related to OM, the underlying reasons for ET dysfunction in certain populations remains unknown. To gain an understanding of this system, we use fully coupled fluid-structure interaction (FSI) models of the ET based on geometries reconstructed from histological images. Using these models in systematic parameter variation studies allows us to identify which parameters of the ET can cause dysfunction. Using healthy adult subjects as a model for a well-functioning ET, we determined ET function to be sensitive to changes in TVP muscle force.
机译:中耳炎(OM)是最常被诊断的儿童疾病,每年与医疗保健相关的费用为40亿美元。 [1] OM的发作直接与咽鼓管功能障碍有关。 ET具有三种主要的生理功能,一旦这些功能受损,就会出现中耳(ME)疾病。还已知特定的患者群体,例如具有颅面异常的患者,例如left裂,具有100%的OM发病率。即使ET功能障碍与OM相关,某些人群中ET功能障碍的根本原因仍然未知。为了了解该系统,我们基于从组织学图像重建的几何结构,使用了ET的完全耦合的流固耦合(FSI)模型。在系统的参数变化研究中使用这些模型使我们能够确定ET的哪些参数可能导致功能障碍。使用健康的成人受试者作为功能良好的ET的模型,我们确定ET功能对TVP肌肉力量的变化敏感。

著录项

  • 来源
  • 会议地点 Naples FL(US);Naples FL(US)
  • 作者单位

    Department of Mechanical Engineering The Ohio State University Columbus, OH, USA;

    rnDepartment of Biomedical Engineering The Ohio State University Columbus, OH, USA Davis Heart and Lung Research Institute The Ohio State University Columbus, OH, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体工程学;
  • 关键词

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