...
首页> 外文期刊>Foot and ankle international >Biomechanical evaluation of plate osteosynthesis of distal fibula fractures with biodegradable devices.
【24h】

Biomechanical evaluation of plate osteosynthesis of distal fibula fractures with biodegradable devices.

机译:用可生物降解装置评估腓骨远端骨折的骨接骨板的生物力学评估。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

BACKGROUND: This study compared fixation with a titanium one-third tubular plate and one lag-screw vs. fixation with biodegradable plates with one lag-screw applied with two different plate-screw patterns. MATERIALS AND METHODS: Ten pairs of fibulas were osteotomied, plated (titanium plate with one lag screw vs. absorbable 2/8 plate-screws crossing vs. 0/8 plate-screws crossing the osteotomy gap). and tested in torsion and bending to obtain stiffness and neutral-zone (NZ) data. Tests were performed using 5 load cycles. No load to failure was performed. Biodegradation was simulated by 6 week immersion in phosphate-buffered saline after which the testing protocol was repeated. The specimens were then loaded with 100 N in bending. RESULTS: Post-implantation, there were no significant differences, in torsion and bending, regarding the NZ or the stiffness, between the 2/8 biodegradable plate and the titanium plate. The 0/8 pattern performed significantly less well in terms of stiffness and NZ in the initialtorsion test, and significantly less well in terms of stiffness in the initial bending test. After 6 weeks' immersion, all biodegradable constructs showed a significantly larger NZ and significantly reduced bending and torsional stiffness. When loaded with 100 N, four of the six 0/8 osteosyntheses failed. There were no significant differences between the 2/8 pattern and the titanium plates. CONCLUSION: In a model of a Weber-B fracture, the use of a 2/8 biodegradable plate construct initially did not differ statistically to that obtained with a one-third tubular titanium plate. After immersion the 2/8 construct withstood some physiological load. CLINICAL RELEVANCE: For the fixation of ankle fractures with a biodegradable plate of the type employed in this study, the use of fracture-gap-crossing screws is recommended.
机译:背景:这项研究比较了用钛制三分之一管状板和一个滞后螺钉固定与使用可生物降解板的固定,其中一个滞后螺钉施加了两种不同的板螺钉模式。材料与方法:将十对腓骨切骨,切开(带一个方头螺钉的钛板与可吸收的2/8板螺钉交叉vs. 0/8板螺钉穿过截骨间隙)。并经过扭转和弯曲测试,以获得刚度和中性区(NZ)数据。使用5个负载周期进行测试。没有加载失败。通过在磷酸盐缓冲液中浸泡6周来模拟生物降解,然后重复测试方案。然后向样品加载100 N的弯曲强度。结果:植入后,在2/8生物可降解板和钛板之间,在NZ和刚度方面,扭转和弯曲没有显着差异。 0/8图案在初始扭转测试中的刚度和NZ方面表现不佳,而在初始弯曲测试中的刚度方面则表现不佳。浸泡6周后,所有可生物降解的构造物均显示出明显更大的NZ,并显着降低了弯曲和扭转刚度。当加载100 N时,六个0/8骨合成中有四个失败。 2/8图案和钛板之间没有显着差异。结论:在Weber-B骨折模型中,使用2/8可生物降解的钢板结构最初与使用三分之一管状钛板获得的统计学差异无统计学意义。浸泡后,2/8构建体承受了一定的生理负荷。临床相关性:对于本研究中使用的可生物降解板固定踝部骨折,建议使用跨缝螺钉。

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