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Computational Investigation of Eustachian Tube Function

Computational Investigation of Eustachian Tube Function
咽鼓管功能的计算研究
批准号:
6552439
负责人:
SAMIR N GHADIALI
金额:
$6.91万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-08-15 至 2004-07-31

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中文摘要
翻译
描述(由申请人提供):本申请的目的是研究耳咽管(ET)的机械和解剖(几何)结构如何影响其调节中耳(ME)压力的能力。正常情况下,这一功能是通过周围肌肉组织的收缩而间歇性地打开ET来实现的。临床和实验研究表明,这种开放机制的破坏导致了最常见的儿童疾病之一,渗出性中耳炎(OME)和相关的听力障碍。为了获得ET结构-功能关系的基本理解,我们建议创建一个能够模拟机械和解剖变化的计算模型。该模型将用于在各种机械和解剖条件下进行吞咽过程中ET打开现象的详细模拟。因此,这项工作将阐明力学和解剖特性之间的相互作用如何影响ET功能。此外,实验测量的正常成人的结构特性将被纳入模型,以更好地理解“正常”ET的结构-功能关系。该项目的具体目标是:1)建立二维计算模型,研究吞咽过程中结构特性对ET打开现象的影响;2)开发并比较ET的三维重建模型与二维近似模型,以确定三维几何变化的重要性;3)利用计算模型调查和量化正常成人的ET打开现象。提出的工作将阐明ET的力学和解剖性质如何影响打开现象。此外,我们将建立ET的力学和解剖结构的规范性数据。这一信息对于本研究的长期目标至关重要,即根据持久性OME的潜在结构缺陷制定有效的治疗策略。此外,本研究的结果将提供基础数据,作为未来研究的比较数据库,这些研究将量化OME患者的ET结构-功能关系,计算评估各种临床治疗方法,并开发精细的计算和/或实验模型。
英文摘要
DESCRIPTION (provided by applicant): The objective of this application is to investigate how the mechanical and anatomical (geometrical) structure of the Eustachian tube (ET) affects its ability to regulate Middle Ear (ME) pressure. Normally, this function is achieved by the intermittent opening of the ET due to the contraction of the surrounding musculature. Clinical and experimental studies have demonstrated that disruption of this opening mechanism results in one of the most common childhood diseases, otitis media with effusion (OME), and the associated hearing impairment. To obtain a fundamental understanding of the ET structure-function relationship, we propose to create a computational model that is capable of simulating both mechanical and anatomical variations. This model will be used to perform detailed simulations of ET opening phenomena during swallowing under various mechanical and anatomical conditions. As such, this work will elucidate how the interaction between mechanical and anatomical properties affects ET function. In addition, experimentally measured structural properties from normal adults will be incorporated into the model to obtain a better understanding of the "normal" ET structure-function relationship. The specific aims of this project are: 1) Develop a 2D computational model to investigate the influence of structural properties on ET opening phenomena during swallowing; 2) Develop and compare a 3D reconstructed mode of the ET with a 2D approximation to determine the importance of 3D geometrical variations; 3) Utilize the computational model to investigate and quantify ET opening phenomena in normal adults. The proposed work will elucidate how the mechanical and anatomical properties of the ET influence opening phenomena. In addition, we will establish normative data on the ET's mechanical and anatomical structure. This information is vital to the long term goal of this research which is to develop effective treatment strategies based upon the underlying structural deficiencies for persistent OME. Further, the results of the proposed research will provide the basic data which can be used as a comparative database for future studies that will quantify the ET structure-function relationship in OME patients, evaluate computationally various clinical therapies, and develop refined computational and/or experimental models.
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Biomechanical Evaluation of Eustachian Tube Dysfunction
  • 批准号:
    7222701
  • 项目类别:
  • 资助金额:
    $13.66万
  • 财政年份:
    2006
  • 负责人:
    SAMIR N GHADIALI
  • 依托单位:
Patient Specific Modeling of ET Function and ME Pressure Regulation
Biomechanical Evaluation of Eustachian Tube Dysfunction
  • 批准号:
    7625937
  • 项目类别:
  • 资助金额:
    $13.5万
  • 财政年份:
    2006
  • 负责人:
    SAMIR N GHADIALI
  • 依托单位:
Patient Specific Modeling of ET Function and ME Pressure Regulation
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