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首页> 外文期刊>Australasian physical & engineering sciences in medicine >The effect of cement on hip stem fixation: a biomechanical study
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The effect of cement on hip stem fixation: a biomechanical study

机译:骨水泥对髋关节固定的作用:一项生物力学研究

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This study presents the numerical analysis of stem fixation in hip surgery using with/without cement methods since the use of cement is still controversial based on the clinical studies in the literature. Many different factors such as stress shielding, aseptic loosening, material properties of the stem, surgeon experiences etc. play an important role in the failure of the stem fixations. The stem fixation methods, cemented and uncemented, were evaluated in terms of mechanical failure aspects using computerized finite element method. For the modeling processes, three dimensional (3D) femur model was generated from computerized tomography (CT) images taken from a patient using the MIMICS Software. The design of the stem was also generated as 3D CAD model using the design parameters taken from the manufacturer catalogue. These 3D CAD models were generated and combined with/without cement considering the surgical procedure using SolidWorks program and then imported into ANSYS Workbench Software. Two different material properties, CoCrMo and Ti6Al4V, for the stem model and Poly Methyl Methacrylate (PMMA) for the cement were assigned. The material properties of the femur were described according to a density calculated from the CT images. Body weight and muscle forces were applied on the femur and the distal femur was fixed for the boundary conditions. The calculations of the stress distributions of the models including cement and relative movements of the contacts examined to evaluate the effects of the cement and different stem material usage on the failure of stem fixation. According to the results, the use of cement for the stem fixation reduces the stress shielding but increases the aseptic loosening depending on the cement crack formations. Additionally, using the stiffer material for the stem reduces the cement stress but increases the stress shielding. Based on the results obtained in the study, even when taking the disadvantages into account, the cement usage is more suitable for the hip fixations.
机译:由于文献中的临床研究仍然存在争议,因此本研究提出了使用/不使用骨水泥方法进行髋关节手术中干固定的数值分析。许多不同的因素,例如应力屏蔽,无菌性松动,茎的材料特性,外科医生的经验等,在茎固定失败中起着重要的作用。使用计算机有限元方法,根据机械破坏方面评估了胶合和非胶合的茎杆固定方法。对于建模过程,使用MIMICS软件从患者的计算机断层扫描(CT)图像生成三维(3D)股骨模型。还使用从制造商目录中获取的设计参数将杆的设计生成为3D CAD模型。使用SolidWorks程序生成了这些3D CAD模型,并考虑了外科手术步骤将其与水泥结合/不结合,然后导入ANSYS Workbench Software。指定了两种不同的材料特性,即杆模型的CoCrMo和Ti6Al4V和水泥的聚甲基丙烯酸甲酯(PMMA)。根据从CT图像计算出的密度来描述股骨的材料特性。将体重和肌肉力施加在股骨上,并在边界条件下固定股骨远端。计算模型的应力分布,包括水泥和检查的接触件的相对运动,以评估水泥和不同杆材料的使用对杆固定失败的影响。根据结果​​,使用水泥进行茎固定可减少应力屏蔽,但根据水泥裂缝的形成会增加无菌松动。另外,对杆使用较硬的材料可减少水泥应力,但会增加应力屏蔽。根据研究结果,即使考虑到不利因素,使用水泥也更适合于髋关节固定。

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