首页> 外文期刊>Journal of Hand Surgery. American Volume >Volar Versus Dorsal Locking Plates With and Without Radial Styloid Locking Plates for the Fixation of Dorsally Comminuted Distal Radius Fractures: A Biomechanical Study in Cadavers
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Volar Versus Dorsal Locking Plates With and Without Radial Styloid Locking Plates for the Fixation of Dorsally Comminuted Distal Radius Fractures: A Biomechanical Study in Cadavers

机译:掌侧与背侧锁定板带或不带Rad骨茎突锁定板固定远端粉碎性远端Rad骨骨折:在尸体中的生物力学研究

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Purpose: To compare the stability and stiffness of dorsal and volar fixed-angle distal radius constructs in a cadaveric model.Methods: A locking distal radius system was used in a combination of a dorsal and styloid plate (group 1), a single volar plate (group 2), and a combination of a volar and styloid plate (group 3) configuration. In addition a single volar 3.5-mm steel locking plate was used in group 4. Each construct was tested on 6 fresh-frozen radii with simulated unstable dorsally comminuted extra-articular distal radius fractures. Specimens were tested on a material testing machine with an extensometer and subjected to axial compression fatigue and load-to-failure testing.Results: No construct failed in fatigue testing of 250 N for 5,000 cycles. Two specimens in each group were tested for 20,000 cycles without failure. The plastic deformation in the double-plate groups was lower compared with the single-plate groups, although the difference was not statistically significant. Group 1 had the highest and group 4 the lowest failure load and stiffness, respectively. The differences between group 1 and the other groups, except failure load compared with group 3, were statistically significant. Groups 2 and 3 had a significantly higher load to failure and group 3 had a significantly higher stiffness compared with group 4.Conclusions: All constructs offer adequate stability with minimal deformation on fatigue testing under physiologic conditions. Dorsa! fixed-angle constructs are stiffer and stronger than volar constructs. The addition of a styloid plate to a volar plate did not significantly improve stability in this model of simulated extra-articular dorsa! comminution loaded in axial compression.
机译:目的:在尸体模型中比较背侧和掌侧固定角远端radius骨结构的稳定性和刚度方法:将锁骨远端radius骨系统用于背骨和茎突板(第1组),单个掌侧板(第2组),以及手掌和茎突板的组合(第3组)配置。此外,在第4组中使用了一块单侧掌的3.5 mm钢锁定板。在6个新鲜冷冻的半径上测试了每种构造物,模拟了不稳定的背侧粉碎性关节远端distal骨远端骨折。在带有引伸计的材料试验机上对试样进行了测试,并进行了轴向压缩疲劳和载荷至失效测试。结果:在250 N的疲劳测试中,没有任何结构在5,000个循环中失败。每组中的两个样本进行了20,000个循环的测试,没有失败。双板组的塑性变形低于单板组,但差异无统计学意义。第一组的失效载荷和刚度分别最高,第四组的失效载荷和刚度最低。除失败负荷与第3组相比,第1组与其他各组之间的差异具有统计学意义。与第4组相比,第2组和第3组的破坏载荷明显更高,第3组的刚性明显更高。结论:在生理条件下的疲劳测试中,所有结构均具有足够的稳定性,且变形最小。多尔莎!固定角度构造比手掌构造更坚固,更坚固。在此模拟关节外后背模型中,将茎突板添加到掌侧板并不能显着提高稳定性!粉碎物承受轴向压缩。

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