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首页> 外文期刊>The Journal of the Acoustical Society of America >A comprehensive computational model of sound transmission through the porcine lung
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A comprehensive computational model of sound transmission through the porcine lung

机译:猪肺传声的综合计算模型

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A comprehensive computational simulation model of sound transmission through the porcine lung is introduced and experimentally evaluated. This “subject-specific” model utilizes parenchymal and major airway geometry derived from x-ray CT images. The lung parenchyma is modeled as a poroviscoelastic material using Biot theory. A finite element (FE) mesh of the lung that includes airway detail is created and used in COMSOL FE software to simulate the vibroacoustic response of the lung to sound input at the trachea. The FE simulation model is validated by comparing simulation results to experimental measurements using scanning laser Doppler vibrometry on the surface of an excised, preserved lung. The FE model can also be used to calculate and visualize vibroacoustic pressure and motion inside the lung and its airways caused by the acoustic input. The effect of diffuse lung fibrosis and of a local tumor on the lung acoustic response is simulated and visualized using the FE model. In the future, this type of visualization can be compared and matched with experimentally obtained elastographic images to better quantify regional lung material properties to noninvasively diagnose and stage disease and response to treatment.
机译:介绍了通过猪肺传播声音的综合计算仿真模型,并进行了实验评估。这种“特定对象”模型利用了从X射线CT图像得出的实质和主要气道几何形状。使用比奥理论将肺实质建模为多孔弹性材料。创建了包含气道细节的肺部有限元(FE)网格,并将其用于COMSOL FE软件中,以模拟肺部对气管声音输入的振动响应。通过将模拟结果与实验测量值进行比较,从而验证了有限元模拟模型,该方法使用扫描激光多普勒振动法在切除的,保留的肺表面上进行。 FE模型还可用于计算和可视化由声学输入引起的肺及其气道内部的振动声压力和运动。使用FE模型模拟并可视化了弥漫性肺纤维化和局部肿瘤对肺声学反应的影响。将来,可以将这种类型的可视化与实验获得的弹性成像图像进行比较,并将其匹配,以更好地量化区域肺材料的特性,从而以非侵入性的方式诊断和分期疾病以及对治疗的反应。

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