不同材料赋值属性下髋部有限元分析
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1.南京医科大学附属无锡人民医院骨科;2.南京医科大学附属无锡人民医院医学工程处;3.北京中诺恒康生物科技有限公司

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Finite element analysis of the hip with different material assignment properties
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    摘要:

    摘要: 目的 探讨3种不同建模方式对髋关节有限元模型生物力学特性的影响,研究出更符合实际的髋关节的材料属性赋值方法。 方法 对髋关节模型进行三维重建,分别采用的皮-松质骨赋值法、均一赋值法和灰度赋值法完成材料参数赋值,设定相同的边界条件和载荷,模拟单腿站立位状态下髋关节受力情况,对比3组模型的髋关节应力和应变情况。 结果 3种不同建模方式应力均集中于股骨颈内侧,皮-松质骨赋值法、均一赋值法、灰度值赋值法Von Mises 应力峰值分别为11.04Mpa、3.91Mpa、4.25MPa。髋关节皮-松质骨赋值模型最大应变位于股骨大粗隆上部,髋臼与股骨头处应变峰值为0.27mm。均一材料赋值模型及灰度赋值模型最大应变位于髋臼与股骨头处,应变峰值分别为为0.11mm、0.12mm。 结论 根据髋关节CT数据灰度值进行梯度赋值,使得髋关节模型材料属性分布更接近骨骼真实的材料属性。 关键词:髋关节;皮-松质骨赋值法;均一赋值法;灰度值赋值法;有限元

    Abstract:

    Finite element analysis of the hip with different material assignment properties Guo Sutong1,Feng Dehong1 , Guo Yu1, Wang Ling1, Ding Yujian1, Liu Yi1, Qian Zhengying2,Li Mingyang3 (1 Department of Orthopaedics, Wuxi People's Hospital, Nanjing Medical University, Wuxi 214000, Jiangsu Province; 2 Medical Engineering Division, Wuxi People's Hospital, Nanjing Medical University, Wuxi 214000, Jiangsu Province; 3 Beijing Zhongnuo Hengkang Biotechnology Company Limited, Changping District, Beijing 102299, China) Abstract Objective To investigate the effects of three different modelling approaches on the biomechanical properties of the finite element model of the hip joint and to investigate a more realistic method of assigning material properties to the hip joint. Methods A three-dimensional reconstruction of the hip joint model was carried out, and the material parameters were assigned using the dermal- cancellous bone assignment method, the homogeneous assignment method and the gray value assignment method respectively, and the same boundary conditions and loads were set to compare the hip joint stresses and strains in the 3 groups of models. Results The stresses in the three different modelling approaches were concentrated in the medial femoral neck, with peak Von Mises stresses of 11.04 MPa, 3.91 MPa and 4.25 MPa for the cortical bone and cancellous bone assignment method, the homogeneous assignment method and the gray value assignment method, respectively. The maximum strain in the hip joint cortical bone and cancellous assignment model is at the upper part of the greater trochanter, with a peak strain of 0.27 mm at the acetabulum and femoral head. the maximum strain in the homogeneous material assignment model and the gray value assignment model is at the acetabulum and femoral head, with peak strains of 0.11 mm and 0.12 mm respectively. Conclusion The gradient assignment based on the gray value of the hip CT data makes the material property distribution of the hip model closer to the real material properties of the bone. Keywords: hip joint; cortical bone and cancellous bone assignment method; homogeneous assignment method; gray value assignment method

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  • 收稿日期:2023-01-16
  • 最后修改日期:2023-04-13
  • 录用日期:2023-04-14
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