首页> 外文期刊>Veterinary and Comparative Orthopaedics and Traumatology >A biomechanical comparison of 3.5 locking compression plate fixation to 3.5 limited contact dynamic compression plate fixation in a canine cadaveric distal humeral metaphyseal gap model.
【24h】

A biomechanical comparison of 3.5 locking compression plate fixation to 3.5 limited contact dynamic compression plate fixation in a canine cadaveric distal humeral metaphyseal gap model.

机译:在犬尸体肱骨远端干phy端间隙模型中3.5锁定加压板固定与3.5有限接触动态加压板固定的生物力学比较。

获取原文
获取原文并翻译 | 示例
           

摘要

3.5 locking compression plate (LCP) fixation was compared to 3.5 limited contact dynamic compression plate (LC-DCP) fixation in a canine cadaveric, distal humeral metaphyseal gap model. Thirty paired humeri from adult, large breed dogs were separated into equal groups based on testing: static compression, cyclic compression, and cyclic torsion. Humeral constructs stabilised with LCP were significantly stiffer than those plated with LC-DCP when loaded in static axial compression (P = 0.0004). When cyclically loaded in axial compression, the LCP constructs were significantly less stiff than the LC-DCP constructs (P = 0.0029). Constructs plated with LCP were significantly less resistant to torsion over 500 cycles than those plated with LC-DCP (P<0.0001). The increased stiffness of LCP constructs in monotonic loading compared to constructs stabilised with non-locking plates may be attributed to the stability afforded by the plate-screw interface of locking plates. The LCP constructs demonstrated less stiffness in dynamic testing in this model, likely due to plate-bone offset secondary to non-anatomic contouring and occasional incomplete seating of the locking screws when using the torque-limiting screw driver. Resolution of these aspects of LCP application may help improve the stiffness of fixation in fractures modeled by the experimental set-up of this investigation.
机译:在犬尸体,肱骨远端干phy端间隙模型中,将3.5锁定加压钢板(LCP)固定与3.5有限接触动态加压钢板(LC-DCP)固定进行了比较。根据测试,将成年大型犬的30对成对的肱骨分为相等的组:静态压缩,循环压缩和循环扭转。当承受静态轴向压力时,用LCP稳定的肱骨结构比用LC-DCP固定的肱骨结构坚硬(P = 0.0004)。当在轴向压缩中循环加载时,LCP结构的刚度明显低于LC-DCP结构(P = 0.0029)。镀有LCP的构建体在500次循环中的抗扭转能力明显低于镀有LC-DCP的构建体(P <0.0001)。与用非锁定板稳定的结构相比,LCP结构在单调加载中增加的刚度可以归因于锁定板的板螺钉界面所提供的稳定性。在此模型中,LCP结构在动态测试中显示出较小的刚度,这可能是由于使用非扭矩轮廓的螺丝刀导致的非解剖轮廓引起的板骨偏移以及偶尔的不完全固定螺钉所致。解决LCP应用这些方面的问题可能有助于提高本研究实验设置所模拟的骨折固定的刚度。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号