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EFFECT OF GRAVITY ON HUMAN LUNG DEFORMATION

机译:重力对人肺变形的影响

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摘要

The effect of gravity is considered on biomechanical modeling of human lung deformation for radiotherapy application. The lung is assumed to behave as a poro-elastic medium with spatially dependent property. Finite element simulation is performed on a three-dimensional (3D) lung geometry reconstructed from four-dimensional computed tomography (4DCT) scan dataset of real human patient. The spatially-dependent Young's modulus (YM) values are estimated using inverse analysis from a linear elastic deformation model. First, the gravity-generated deformation in the lung is calculated. Next, inlet pressure loading is applied at the hilium from an initial stress-free resting volume. Then, the lung model is preloaded by its weight, followed by prescription of the inlet pressure. In each case the maximum and minimum deformation of selected landmarks are monitored with and without gravity. The results show that gravity indeed significantly affects the magnitude and distribution of lung deformation. The maximum displacement increases by 54% in the direction of gravity when it is considered in the model.
机译:考虑重力对放射治疗应用中人肺变形的生物力学建模的影响。假定肺表现为具有空间依赖性的孔隙弹性介质。对从真实人类患者的三维计算机断层扫描(4DCT)扫描数据集重建的三维(3D)肺部几何结构进行了有限元模拟。使用线性弹性变形模型的逆分析来估计空间相关的杨氏模量(YM)值。首先,计算由重力产生的肺部变形。接下来,从初始无应力的静止体积开始,在入口处施加入口压力载荷。然后,通过其重量预加载肺部模型,然后指定入口压力。在每种情况下,在有或没有重力的情况下,都监视选定地标的最大和最小变形。结果表明,重力确实显着影响了肺变形的大小和分布。在模型中考虑时,最大位移沿重力方向增加了54%。

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