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首页> 外文期刊>European spine journal >Comparison of the biomechanical 3D efficiency of different brace designs for the treatment of scoliosis using a finite element model
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Comparison of the biomechanical 3D efficiency of different brace designs for the treatment of scoliosis using a finite element model

机译:使用有限元模型比较不同支架设计治疗脊柱侧弯的生物力学3D效率

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The biomechanical influence of thoraco-lumbo-sacral bracing, a commonly employed treatment in scoliosis, is still not fully understood. The aim of this study was to compare the immediate corrections generated by different virtual braces using a patient-specific finite element model (FEM) and to analyze the most influential design factors. The 3D geometry of three patients presenting different types of curves was acquired with a multi-view X-ray technique and surface topography. A personalized FEM of the patients’ trunk and a parametric model of a virtual custom-fit brace were then created. The installation of the braces on the patients was simulated. The influence of 15 design factors on the 3D correction generated by the brace was evaluated following a design of experiments simulation protocol allowing computing the main and two-way interaction effects of the design factors. A total of 12,288 different braces were tested. Results showed a great variability of the braces effectiveness. Of the 15 design factors investigated, according to the 2 modalities chosen for each one, the 5 most influential design factors were the position of the brace opening (posterior vs. anterior), the strap tension, the trochanter extension side, the lordosis design and the rigid shell shape. The position of the brace opening modified the correction mechanism. The trochanter extension position influenced the efficiency of the thoracic and lumbar pads by modifying their lever arm. Increasing the strap tension improved corrections of coronal curves. The lordosis design had an influence in the sagittal plane but not in the coronal plane. This study could help to better understand the brace biomechanics and to rationalize and optimize their design...
机译:胸腰lum撑是脊柱侧弯的一种常用治疗方法,其对生物力学的影响尚不完全清楚。这项研究的目的是比较使用特定于患者的有限元模型(FEM)由不同虚拟牙套产生的即时矫正并分析最有影响力的设计因素。通过多视图X射线技术和表面形貌获得了呈现不同类型曲线的三名患者的3D几何形状。然后,创建了患者躯干的个性化FEM和虚拟的定制支架的参数模型。模拟了在患者身上的牙套的安装。根据实验仿真协议的设计评估了15个设计因素对支架产生的3D校正的影响,该协议允许计算设计因素的主要和双向相互作用。总共测试了12,288个不同的牙套。结果显示了牙套有效性的巨大差异。在研究的15种设计因素中,根据每种选择的2种方式,最有影响力的5种设计因素是支架开口的位置(后部与前部),皮带张力,转子延伸侧,脊柱前凸设计和硬壳形状。撑杆开口的位置修改了校正机构。转子伸展位置通过改变杠杆臂来影响胸垫和腰垫的效率。增加表带张力可改善冠状曲线的矫正。脊柱前凸的设计对矢状面有影响,但对冠状面没有影响。这项研究可以帮助更好地了解支架生物力学,并合理化和优化其设计。

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