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首页> 外文期刊>Orthopaedic surgery >Reconstruction of type II+III pelvic resection with a modular hemipelvic endoprosthesis: a finite element analysis study
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Reconstruction of type II+III pelvic resection with a modular hemipelvic endoprosthesis: a finite element analysis study

机译:模块化半骨盆假体重建II + III型骨盆切除术:有限元分析研究

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Objective: To conduct a biomechanical study of the whole reconstructed pelvic ring using a modular hemipelvic endoprosthesis.Methods: A subject-specific finite-element (FE) model of the whole pelvic ring, including the pelvis, sacrum and main ligaments, was constructed. Type II+III pelvic resection was simulated on the FE model. Then a three-dimensional model of a reconstructed pelvic ring with a modular hemipelvic endoprosthesis was developed, and FE analysis performed to compare the stresses along the bilateral arcuate lines of the reconstructed and normal pelvis in the bipedal standing position. Comparison between bilateral stress distributions along the sciatic notch was also performed. The characteristics of load transmission within the endoprosthesis were also studied.Results: No significant difference in the stresses along the bilateral arcuate lines was observed between the reconstructed and normal pelvis. The stress distribution on the prosthesis along the sciatic notch paths was significantly greater than that on the unaffected side in the same position. The peak stress of the implant on the S1 vertebral body was 182.9 MPa under a load of 600N. Study of load transfer on the implant showed that the posterior side of the column between the point of iliac fixation and the acetabulum was subject to the greatest stress.Conclusion: This FE study showed that a modular hemipelvic endoprosthesis can restore load transfer between the sacrum and acetabulum on simple standing. Future implant design should aim to decrease the stress concentration and make the biomechanical performance more balanced.
机译:目的:利用模块化半盆腔内假体对整个重建的盆腔环进行生物力学研究。方法:构建包括骨盆,骨和主韧带在内的整个盆腔环的特定于受试者的有限元(FE)模型。在FE模型上模拟了II + III型骨盆切除术。然后,开发了具有模块化半盆腔假体的重建骨盆环的三维模型,并进行了有限元分析以比较在两足站立时沿重建骨盆和正常骨盆的双侧弓形线的应力。还进行了沿坐骨神经切口的双侧应力分布之间的比较。结果:在重建骨盆和正常骨盆之间,在双侧弓形线上的应力没有显着差异。在相同位置,沿着坐骨切迹路径的假体上的应力分布明显大于未受影响侧的假体。在600N的载荷下,S1椎体上植入物的峰值应力为182.9 MPa。对植入物的载荷转移的研究表明,在骨固定点和髋臼之间的柱后侧承受最大应力。髋臼的简单站立。未来的植入物设计应旨在降低应力集中并使生物力学性能更加平衡。

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