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Mechanical properties of human lung parenchyma.

机译:人肺实质的机械特性。

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In order to have a detailed analysis of the distribution of stresses in the lung, one needs to understand the mechanical behavior of the lung material. For the stress-strain relationship of human lung, the present state of the art is that the form of the constitutive equations is known, but associated material constants are unknown. In this study, biaxial loading experiments were done on specimens of excised cadaver lung parenchyma without the effects of large blood vessels, bronchi, and pleura. Curves of strain vs. stress were recorded. A non-linear form of strain energy function was used to examine the stress-strain relationship. This relationship fits the experimental data well. The analysis based on data from 11 specimens of excised human lung parenchyma yielded that the physical constants are C/delta = 3.06 +/- 0.84 K x dyn/cm2, alpha = 4.47 +/- 1.94, and beta = -4.20 +/- 2.55.
机译:为了详细分析肺中的压力分布,需要了解肺材料的机械行为。对于人肺的应力-应变关系,现有技术是本构方程的形式是已知的,但是相关的材料常数是未知的。在这项研究中,在切除尸体肺实质的标本上进行了双轴加载实验,没有大血管,支气管和胸膜的影响。记录应变与应力的曲线。使用非线性形式的应变能函数来检查应力-应变关系。这种关系很好地拟合了实验数据。根据来自11个切除的人类肺实质的样本的数据进行的分析得出,物理常数为C /δ= 3.06 +/- 0.84 K x dyn / cm2,α= 4.47 +/- 1.94和beta = -4.20 +/- 2.55。

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