...
首页> 外文期刊>Journal of Applied Biomechanics >Elastically Suspending the Screw Holes of a Locked Osteosynthesis Plate Can Dampen Impact Loads
【24h】

Elastically Suspending the Screw Holes of a Locked Osteosynthesis Plate Can Dampen Impact Loads

机译:弹性悬挂锁定的骨固定板的螺丝孔可以减轻冲击载荷

获取原文
获取原文并翻译 | 示例

摘要

Impact damping by elastic fixation is a principal engineering strategy to increase the durability of load-bearing structures exposed to prolonged dynamic loading. This biomechanical study evaluated axial impact damping provided by a novel dynamic locking plate. In this design, locking screw holes are elastically suspended within a silicone envelope inside the locking plate. Axial impact damping was assessed for 3 distinct fixation constructs applied to bridge a 10-mm fracture gap of a femoral diaphysis surrogate: a standard locking plate, a dynamic locking plate, and an Ilizarov ring fixator. First, the 3 fixation constructs were characterized by determining their axial stiffness. Subsequently, constructs were subjected to a range of axial impact loads to quantify damping of force transmission. Compared with standard locked plating constructs, dynamic plating constructs were 58% less stiff (P < .01) and Ilizarov constructs were 88% less stiff (P < .01). Impact damping correlated inversely with construct stiffness. Compared with standard plating, dynamic plating constructs and Ilizarov constructs dampened the transmission of impact loads by up to 48% (P < .01) and 74% (P < .01), respectively. In conclusion, lower construct stiffness correlated with superior damping of axial impact loads. Dynamic locking plates provide significantly greater impact damping compared with standard locking plates.
机译:通过弹性固定的冲击阻尼是一种主要的工程策略,可以提高承受长期动态载荷的承重结构的耐久性。这项生物力学研究评估了新型动态锁定板提供的轴向冲击阻尼。在这种设计中,锁紧螺丝孔弹性地悬挂在锁紧板内部的硅胶外壳内。针对3种不同的固定结构(用于桥接股骨干bridge端的10 mm骨折间隙)评估了轴向冲击阻尼:标准锁定板,动态锁定板和Ilizarov环固定器。首先,通过确定其轴向刚度来表征3种固定结构。随后,使结构承受一定范围的轴向冲击载荷,以量化力传递的阻尼。与标准的锁定板结构相比,动态板结构的刚度降低了58%(P <.01),而Ilizarov板结构的刚度降低了88%(P <.01)。冲击阻尼与构造刚度成反比。与标准电镀相比,动态电镀构造和Ilizarov构造分别将冲击载荷的传递抑制了多达48%(P <.01)和74%(P <.01)。总之,较低的结构刚度与轴向冲击载荷的卓越阻尼相关。与标准锁定板相比,动态锁定板可提供更大的冲击阻尼。

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