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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Analysis and validation of femur bone data using finite element method under static load condition
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Analysis and validation of femur bone data using finite element method under static load condition

机译:静电负载条件下有限元方法股骨数据的分析与验证

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摘要

Humans face bone fracture when they unfortunately met an accident, which requires timely medical attention for healing and repairing the fractured bone; otherwise that paralyzes their life. 3D modeling technique with computational method is very helpful at the side of doctors for healing and repairing the damaged bones. Fractional bone healing is one of the natural processes, which regain the mechanical reliability of the bone to a limited level of failures. The relationship between the biology and mechanics has introduced a new branch namely biomechanics. Various biomechanics models were used to identify the fracture for different patients and helps in the fracture treatment. The aim of this work is to find out the high stress concentration area of the femur bone, which has been extracted as image from computer tomography scanner. The retrieved noise-free femur bone image is tested by the static load condition with the help of the finite element analysis. The result obtained from the testing of different loads has been compared with the existing literature. It is found that the femur bone has tensile and compressive stress, and the neck area of the femur is at a very high stress concentration. The outcome of this work is much supportive to orthopedic surgeons in femur surgery and bone prosthesis by avoiding experiments on femur bone.
机译:当他们不幸遇到事故时,人类面对骨折,这需要及时医疗治疗和修复骨折骨;否则瘫痪他们的生活。 3D使用计算方法的建模技术在医生的一侧非常有用,以治愈和修复受损骨骼。分数骨愈合是自然过程之一,可将骨骼的机械可靠性重新获得到有限的故障水平。生物学与力学之间的关系引入了新的分支即生物力学。各种生物力学模型用于鉴定不同患者的骨折,并有助于断裂处理。这项工作的目的是找出股骨骨的高应力集中区域,这已被提取为来自计算机断层扫描扫描仪的图像。通过有限元分析,通过静电负载条件测试检索到的无辐射股骨图像。与现有文献进行了比较了从不同载荷测试获得的结果。结果发现股骨骨具有拉伸和压缩应力,并且股骨的颈部面积处于非常高的应力集中。通过避免对股骨骨骼的实验,这项工作的结果与股骨外科和骨假肢的骨科外科医生有很多支持。

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