锁定加压钢板在胫骨斜骨折固定中的钉位效果

R. Izaham, M. A. Abdul Kadir, D. Muslim
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引用次数: 7

摘要

内固定的基本原则之一是实现稳定的结构,以实现适当的骨愈合。锁紧加压板(LCP)通过锁紧螺钉,形成固定角度结构,提供角度稳定性。钢板和螺钉的组合以建立稳定的固定取决于骨折类型和手术偏好等因素。最佳的组合可以提供最佳的效果,以实现骨愈合。在本研究中,通过有限元方法分析了使用LCP的骨折固定结构的三种螺钉放置组合,每个骨碎片只有一颗螺钉。利用计算机断层成像数据集重建胫骨和腓骨的三维模型,并模拟胫骨中轴处的斜向骨折。将八孔LCP放置在骨折线上,并模拟三颗螺钉的放置。骨的刚度为17GPa,泊松比为0.3,韧带建模为刚性连接,胫骨平台平均施加相当于体重三倍的载荷。结果表明,在离骨折侧最近的位置放置螺钉可以提供更稳定的植入物和骨折结构本身更小的应力。该结果仅适用于模拟的斜裂缝,其他类型的裂缝也可以采用相同的方法进行分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Screws placement effect on locking compression plate (LCP) for tibial oblique fracture fixation
One of the basic principles for internal fixation is the achievement of stable construct for proper bone healing. Locking compression plate (LCP) achieved it through locking screws that create a fixed-angle construct providing angular stability. The plate and screws combination to construct a stable fixation depends on factors such as the type of fracture and surgical preference. The optimum combination can provide optimum result in terms of achieving boney union. In this study, three combinations of screw placement with only one screw for each bone fragment for a fracture fixation construct using LCP were analysed via finite element method. Three dimensional model of a tibia and fibula were reconstructed from computed tomography image datasets, and an oblique fracture was simulated at the midshaft of the tibia. Eight-hole LCP was placed across the fractured line and three screws placement were simulated. The properties of bone were assigned with a stiffness of 17GPa and Poisson's ratio of 0.3, ligaments were modelled as rigid links, and load equivalent to three times the body weight was applied equally to the tibial plateau. Results showed that there placement of screws the closest to the fracture side will provide more stabiliy and less stress to the implant and the fracture construct itself. The results are unique to the simulated oblique fracture, and other types of fracture could also be analysed using the same method.
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