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Evaluation of Hip Impingement Kinematics on Range of Motion

机译:髋关节冲击运动学对运动范围的评估

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Femoroacetabulare impingement (FAI) is a mechanical mismatch between femur and acetabulum. It would bring abnormal contact stress and potential joint damage. This problem is more common on people with high level of motion activity such as baler dancer and athletics. FAI causes pain in hip joints and consequently would lead to reduction in range of motion. This study investigates whether changing the kinematics parameters of hip joint with impingement can improve range of motion or not. Hip joint model is created in finite element environment, and then the range of motion was detected. The original boundary conditions are applied in the initial hip impingement model. Then gradually the gap between femur and acetabulum in the model was changed to evaluate the changing kinematics factors on range of motion. Mimics (Materialise NV) software was used to generate the surface mesh of three-dimensional (3D) models of the hip joint from computerised tomography (CT) images of the subject patients diagnosed with FAI. The surface mesh models created in Mimics were then exported to Abaqus (Simulia Dassault Systems) to create a finite element (FE) models that will be suitable for mechanical analysis. The surface mesh was converted into a volumetric mesh using Abaqus meshing modules. Material properties of the bones and soft tissues were defined in the FE model. The kinematic values of the joint during a normal sitting stance, which were obtained from motion capture analysis in the gait lab, were used as boundary conditions in the FE model to simulate the motion of the hip joint during a normal sitting stance and find possible contact at the location of the FAI. The centre of rotation for a female hip model with impingement was changed and range of motion was measured in Abaqus. The results were compared to investigate the effect of centre of rotation on range of motion for hip with femoroacetabular impingement. There was a significant change on range of motion with changing the gap between femur and acetabulum. Decreasing the distance between femur and acetabulum decreases the range of motion. When the distance between femur and acetabulum changes the location of impingement shifted. Increasing the distance between femur and acetabulum, there is no noticeable change in the location of impingement. This study concludes that changing the kinematics of hip with impingement changes the range of motion.
机译:髋臼髋臼撞击(FAI)是股骨和髋臼之间的机械失配。这会带来异常的接触应力并可能损坏关节。这个问题在运动频繁的人(如打捆舞者和田径运动员)上更为普遍。 FAI会导致髋关节疼痛,因此会导致活动范围减少。这项研究调查了通过撞击改变髋关节的运动学参数是否可以改善运动范围。在有限元环境中创建髋关节模型,然后检测运动范围。原始边界条件应用于初始髋部撞击模型。然后逐渐改变模型中股骨与髋臼之间的间隙,以评估运动范围内运动学因素的变化。使用Mimics(Materialise NV)软件从诊断为FAI的受试者患者的计算机断层扫描(CT)图像生成髋关节的三维(3D)模型的表面网格。然后将在Mimics中创建的曲面网格模型导出到Abaqus(Simulia Dassault Systems),以创建适用于机械分析的有限元(FE)模型。使用Abaqus网格划分模块将表面网格转换为体积网格。在FE模型中定义了骨骼和软组织的材料属性。从步态实验室的运动捕获分析获得的正常坐姿时关节的运动学值,在FE模型中用作边界条件,以模拟正常坐姿时髋关节的运动并寻找可能的接触在FAI所在地。更改了带有撞击力的女性髋关节模型的旋转中心,并在Abaqus中测量了运动范围。比较结果以研究旋转中心对股骨髋臼撞击髋关节运动范围的影响。随着股骨和髋臼之间间隙的改变,运动范围发生了显着变化。减少股骨和髋臼之间的距离会减少运动范围。当股骨和髋臼之间的距离改变时,撞击的位置也发生了变化。股骨和髋臼之间的距离增加,撞击位置没有明显变化。这项研究得出的结论是,通过撞击改变髋关节的运动学会改变运动范围。

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