首页> 外文会议>ASME international mechanical engineering congress and exposition >DEPENDENCE OF ELASTIC PROPERTIES OF HUMAN FEMORAL CORTICAL BONE ON POROSITY
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DEPENDENCE OF ELASTIC PROPERTIES OF HUMAN FEMORAL CORTICAL BONE ON POROSITY

机译:人体股骨骨的弹性特性与孔隙率的关系

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Hip fracture is one of the most serious and common health problems among elderly which may lead to permanent disability or death. Hip fracture commonly occurs in the femoral bone, the major bone in the hip joint. Microscopic age-related changes in the structure of cortical bone is one of the factors that is considered to be partially responsible for the increase of fracture risk in elderly. It is of great interest to develop a predictable model of such fractures for the aging population in preparation of a suitable therapy. These micro structural changes influence mechanical properties and, therefore, behavior of bone and are critical to understand risk and mechanics of fracture of bone. Correlation between cortical bone strength and porosity, as a microscopic structural factor, has been examined frequently as a function of age and/or porosity. These studies have investigated the effect of porosity experimentally and have not studied the effect of porosity independently from other structural factors such as bone mineral density. In this study effect of porosity on elastic properties of human femoral cortical bone was studied independently using finite element analysis assuming transversely isotropic behavior in terms of elastic properties with the axis of elastic properties along the longitudinal axis of femur shaft. In this study, published standard mechanical tests for transversely isotropic materials were simulated using finite element computer simulation on models with different porosities. The developed finite element model utilized material properties based on the best fit regression in previously published articles. Pores' size, shape and distribution were also modeled based on previous experimental studies. The finite element model, in general, predicted behavior of five independent elastic mechanical properties, namely, longitudinal Young's modulus, transverse poisson's ratio, transverse shear modulus, transverse Young's modulus and longitudinal poisson's ratio, as a junction of porosity. Furthermore, effect of porosity on the elastic properties across various age groups was investigated using published data on age-related changes in bone porosity. Mathematical models based on Finite Element Analysis results have been developed using linear least square regression. These models show negative linear relationship between studied elastic properties of human femoral cortical bone and porosity. The Finite Element Analysis results compared well with the previously published experimental data. Furthermore, the results obtained show the elastic properties as functions of age for females and males. The predicted values for elastic properties are lower for men compared to women of age 20 to 40 years old. However, after the age of 44, elastic properties of femoral cortical bone for men are higher than women. The Finite Element Model developed in this study will help to create a clinical bone model for the prediction of fracture risk or the selection of suitable therapy in orthopedic surgery.
机译:髋部骨折是老年人中最严重,最常见的健康问题之一,可能导致永久性残疾或死亡。髋部骨折通常发生在股骨中,股骨主要位于髋关节中。年龄相关的皮质骨微观结构变化是导致老年人骨折风险增加的部分原因之一。为了准备合适的治疗方法,开发针对老年人群的这种骨折的可预测模型是非常令人感兴趣的。这些微观结构的变化会影响机械性能,因此会影响骨骼的行为,对于理解骨骼断裂的风险和力学机制至关重要。作为年龄结构和/或孔隙率的函数,经常检查皮质骨强度和孔隙率之间的相关性(作为微观结构因素)。这些研究已经通过实验研究了孔隙率的影响,没有独立于其他结构因素(例如骨矿物质密度)来研究孔隙率的影响。在这项研究中,孔隙率对人股骨皮质骨弹性特性的影响是使用有限元分析方法进行独立研究的,其中假设在弹性特性方面具有横向各向同性行为,其中弹性特性轴沿股骨干的纵轴。在这项研究中,使用有限元计算机模拟在不同孔隙度的模型上模拟了已发布的横观各向同性材料的标准力学测试。开发的有限元模型在先前发表的文章中基于最佳拟合回归利用了材料特性。毛孔的大小,形状和分布也基于先前的实验研究进行了建模。通常,有限元模型预测了五个独立的弹性力学性能,即纵向杨氏模量,横向泊松比,横向剪切模量,横向杨氏模量和纵向泊松比作为孔隙的交汇点。此外,使用与年龄相关的骨孔隙度变化的公开数据,研究了孔隙度对各个年龄组弹性特性的影响。使用线性最小二乘回归法开发了基于有限元分析结果的数学模型。这些模型显示出人类股骨皮质骨的弹性特性与孔隙率之间呈负线性关系。有限元分析的结果与以前发表的实验数据进行了很好的比较。此外,所获得的结果显示出女性和男性的弹性特性随年龄的变化。与20至40岁的女性相比,男性的弹性性能预测值较低。但是,在44岁以后,男性的股骨皮质骨的弹性高于女性。这项研究中开发的有限元模型将有助于创建临床骨模型,以预测骨折风险或在整形外科手术中选择合适的治疗方法。

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