首页> 外文期刊>Journal of biomechanical engineering. >The Effect of Boundary Condition on the Biomechanics of a Human Pelvic Joint Under an Axial Compressive Load: A Three-Dimensional Finite Element Model
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The Effect of Boundary Condition on the Biomechanics of a Human Pelvic Joint Under an Axial Compressive Load: A Three-Dimensional Finite Element Model

机译:轴向条件下边界条件对人体骨盆关节生物力学的影响:三维有限元模型

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The finite element (FE) model of the pelvic joint is helpful for clinical diagnosis and treatment of pelvic injuries. However, the effect of an FE model boundary condition on the biomechanical behavior of a pelvic joint has not been well studied. The objective of this study was to study the effect of boundary condition on the pelvic biomechanics predictions. A 3D FE model of a pelvis using subject-specific estimates of intact bone structures, main ligaments and bone material anisotropy by computed tomography (CT) gray value was developed and validated by bone surface strains obtained from rosette strain gauges in an in vitro pelvic experiment. Then three FE pelvic models were constructed to analyze the effect of boundary condition, corresponding to an intact pelvic joint, a pelvic joint without sacroiliac ligaments and a pelvic joint without proximal femurs, respectively. Vertical load was applied to the same pelvis with a fixed prosthetic femoral stem and the same load was simulated in the FE model. A strong correlation coefficient (R~2 = 0.9657) was calculated, which indicated a strong correlation between the FE analysis and experimental results. The effect of boundary condition changes on the biomechanical response depended on the anatomical location and structure of the pelvic joint. It was found that acetabulum fixed in all directions with the femur removed can increase the stress distribution on the acetabular inner plate (approximately double the original values) and decrease that on the superior of pubis (from 7MPa to 0.6 MPa). Taking sacrum and ilium as a whole, instead of sacroiliac and iliolumber ligaments, can influence the stress distribution on ilium and pubis bone vastly. These findings suggest pelvic biomechanics is very dependent on the boundary condition in the FE model.
机译:骨盆关节的有限元(FE)模型有助于骨盆损伤的临床诊断和治疗。但是,有限元模型边界条件对骨盆关节生物力学行为的影响尚未得到很好的研究。这项研究的目的是研究边界条件对骨盆生物力学预测的影响。建立了骨盆的3D FE模型,该模型使用受试者特定的完整骨结构,主韧带和骨材料各向异性的估计值,通过计算机断层扫描(CT)灰度值进行了开发,并通过体外盆腔实验中从玫瑰花形应变仪获得的骨表面应变来验证。然后,构建三个有限元骨盆模型以分析边界条件的影响,分别对应于完整的骨盆关节,不具有sa韧带的骨盆关节和不具有股骨近端的骨盆关节。将垂直载荷施加到具有固定假体股骨柄的同一骨盆上,并在FE模型中模拟相同载荷。计算出强相关系数(R〜2 = 0.9657),表明有限元分析与实验结果之间具有很强的相关性。边界条件变化对生物力学反应的影响取决于盆腔关节的解剖位置和结构。已发现在去除股骨的情况下在各个方向固定的髋臼可以增加髋臼内板上的应力分布(约为原始值的两倍),并降低耻骨上板上的应力分布(从7MPa降至0.6 MPa)。以骨和i骨为整体,而不是sa韧带和i骨韧带,可以极大地影响i骨和耻骨上的应力分布。这些发现表明骨盆生物力学非常依赖于有限元模型中的边界条件。

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