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首页> 外文期刊>BMC Veterinary Research >Pelvic modelling and the comparison between plate position for double pelvic osteotomy using artificial cancellous bone and finite element analysis
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Pelvic modelling and the comparison between plate position for double pelvic osteotomy using artificial cancellous bone and finite element analysis

机译:骨盆建模以及使用人工松质骨进行双骨盆截骨术的钢板位置与有限元分析的比较

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摘要

Finite element analysis was used to compare fixation methods for double pelvic osteotomy (DPO). Using 3D scanning a stereolithography (stl) image was produced of a canine pelvis and this was subsequently refined in computer aided design (CAD). Using the CAD files, the images were imported in MSC Marc software to produce a working finite element (FE) model with 3 dimensional tetrahedral elements with linear shaped functions. The dimensions of a precontoured pelvic osteotomy plate with eight screws and a twisted seven screw straight plate were used to build the 2 fixations implants for the FE models. An equivalent load of 300?N was applied progressively on all FE models in order to facilitate its convergence. The load was applied in a distributed manner on the femur-hip joint contact area in order to simulate the actual behavior of the joint. The aim of the present study was to analyze the difference in stiffness and behavior under loading between a lateral vs ventral plate fixation, with unlocked screws and different gap scenarios, for stabilization of a pelvic osteotomy using finite element analysis. From both configurations the maximum displacement of the ventral plate with 7 screws without gap had a value of 1.988?mm, while in the DPO plate had a maximum displacement of 2.191?mm. The load applied for each of the different configurations studied when a gap of 1° was considered and also when a condition of no gap was considered. The ventral plate was stiffer than the lateral plate when a gap was not present. When the gap was closed in the ventral plate, the stiffness increased until a point that remained constant. Ventral plate fixation can be as or more stiff as lateral plate fixation and provides flexible fixation. This behavior should reduce screw loosening. Using ventral plate fixation is recommended to reduce screw loosening or failure.
机译:使用有限元分析来比较双骨盆截骨术(DPO)的固定方法。使用3D扫描,可以制作犬骨盆的立体光刻(stl)图像,然后在计算机辅助设计(CAD)中对其进行完善。使用CAD文件,将图像导入MSC Marc软件中,以生成具有线性形状函数的3维四面体元素的工作有限元(FE)模型。使用具有八个螺钉和扭曲的七个螺钉的直形板预先成形的骨盆截骨板的尺寸来构建FE模型的2个固定植入物。为了促进其收敛,在所有有限元模型上逐渐施加了300?N的等效载荷。为了模拟关节的实际行为,将载荷以分布式的方式施加在股骨-髋关节的接触区域上。本研究的目的是利用有限元分析来分析外侧螺钉与腹板螺钉固定时,未锁定螺钉和不同间隙情况下的刚度和负荷下的行为差异,以稳定骨盆截骨术。在这两种配置中,带有7个无间隙螺钉的腹板的最大位移值为1.988?mm,而在DPO板中的最大位移为2.191?mm。当考虑到1°的间隙以及考虑到没有间隙的条件时,研究的每种不同配置所施加的载荷。当不存在间隙时,腹板比侧板坚硬。当腹板中的缝隙闭合时,刚度增加直到保持恒定。腹板固定可以与侧板固定一样坚硬,也可以提供灵活的固定。此行为应减少螺丝松动。建议使用腹板固定以减少螺钉松动或损坏。

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