拇外翻足三维有限元模型构建及其 第1、2跖列生物力学分析
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1.河北工业大学;2.天津医科大学朱宪彝纪念医院普通外科

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Construction of three-dimensional finite element model of hallux valgus foot and its biomechanical analysis of the first and second rays
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    摘要:

    目的:建立拇外翻足的有限元模型,研究不同拉力作用下第1、2跖列的应力及位移变化情况,为拇外翻矫形器的设计提供理论支撑。 方法:首先,将采集的拇外翻病人足部CT图像导入Mimics软件,重建足部三维骨骼模型;其次,利用3-matic软件对重建出的模型进行网格划分与体网格生成;最后,将优化处理过的模型导入Ansys中进行有限元分析,通过改变拉力的大小、方向验证拉力与第1、2跖列的应力、位移之间的关联关系。 结果:对第一近节趾骨施加不同大小、方向的拉力,当力小于12N时,第一趾骨发生的位移与施加拉力的大小成正相关;而当力的大小保持不变,改变力的方向时,第1、2跖列的应力大小及分布随方向的变化而改变,同时位移也会产生微小的变化。 结论:有限元分析技术可以形象、准确地分析第1、2跖列在不同拉力下的应力及位移变化情况,为拇外翻矫形器的设计奠定了基础。

    Abstract:

    Objective: The finite element model of hallux valgus foot was established to study the stress and displacement changes of the first and second rays of hallux valgus under different tensile forces. It provides theoretical support for the design of hallux valgus orthosis. Methods: Firstly, the collected CT images of the foot of the patient with hallux valgus were imported into Mimics software to reconstruct the three-dimensional skeletal model of the foot. Secondly, the 3-matic software is used to mesh the reconstructed model and generate the volume mesh. Finally, the optimized model is imported into Ansys for finite element analysis, and the relationship between the tension and the stress and displacement of the first and second rays of hallux valgus is verified by changing the size and direction of the tension. Results: When the force is less than 12 N, the displacement of the first phalanx is positively correlated with the magnitude of the applied tension. When the magnitude of the force remains unchanged and the direction of the force is changed, the stress magnitude and distribution of the first and second rays of hallux valgus change with the direction, and the displacement will also change slightly. Conclusions: The finite element analysis technology can analyze the stress and displacement changes of the first and second rays of hallux valgus under different tensions vividly and accurately, which lays a foundation for the design of hallux valgus orthosis.

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  • 收稿日期:2023-08-01
  • 最后修改日期:2023-10-04
  • 录用日期:2023-10-24
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