...
首页> 外文期刊>Orthopedics >Polyaxial Screws in Locked Plating of Tibial Pilon Fractures
【24h】

Polyaxial Screws in Locked Plating of Tibial Pilon Fractures

机译:胫骨Pilon骨折锁定钢板中的多轴螺钉

获取原文
获取原文并翻译 | 示例
           

摘要

This study examined the axial and torsional stiffness of polyaxial locked plating techniques compared with fixed-angle locked plating techniques in a distal tibia pilon fracture model. The effect of using a polyaxial screw to cross the fracture site was examined to determine its ability to control relative fracture site motion. A laboratory experiment was performed to investigate the biomechanical stiffness of distal tibia fracture models repaired with 3.5-mm anterior polyaxial distal tibial plates and locking screws. Sawbones Fourth Generation Composite Tibia models (Pacific Research Laboratories, Inc, Vashon, Washington) were used to model an Orthopaedic Trauma Association 43-A1.3 distal tibia pilon fracture. The polyaxial plates were inserted with 2 central locking screws at a position perpendicular to the cortical surface of the tibia and tested for load as a function of axial displacement and torque as a function of angular displacement. The 2 screws were withdrawn and inserted at an angle 15 degrees from perpendicular, allowing them to span the fracture and insert into the opposing fracture surface. Each tibia was tested again for axial and torsional stiffness. In medial and posterior loading, no statistically significant difference was found between tibiae plated with the polyaxial plate and the central screws placed in the neutral position compared with the central screws placed at a 15 degrees position. In torsional loading, a statistically significant difference was noted, showing greater stiffness in tibiae plated with the polyaxial plate and the central screws placed at a 15 degrees position compared with tibiae plated with the central screws placed at a 0 degrees (or perpendicular) position. This study showed that variable angle constructs show similar stiffness properties between perpendicular and 15 degrees angle insertions in axial loading. The 15 degrees angle construct shows greater stiffness in torsional loading.
机译:这项研究检查了胫骨远侧pilon骨折模型中多轴锁定钢板技术与固定角度锁定钢板技术的轴向和扭转刚度。检查了使用多轴螺钉穿过骨折部位的效果,以确定其控制相对骨折部位运动的能力。进行了一项室内实验,以研究用3.5毫米前多轴远端胫骨远端钢板和锁定螺钉修复的胫骨远端骨折模型的生物力学刚度。 Sawbones第四代复合胫骨模型(Pacific Research Laboratories,Inc,华盛顿州华盛顿州)用于骨科创伤协会43-A1.3胫骨骨远端骨折的建模。将多轴板在垂直于胫骨皮质表面的位置插入2个中心锁定螺钉,并测试其轴向位移和角度位移的载荷。拔出2个螺钉,并与垂直线成15度角插入,以使它们跨过骨折并插入相对的骨折表面。再次测试每个胫骨的轴向和扭转刚度。在内侧和后方负荷中,与放置在15度位置的中央螺钉相比,在装有多轴钢板的胫骨和放置在中性位置的中央螺钉之间没有发现统计学上的显着差异。在扭转载荷中,注意到了统计学上的显着差异,与使用中心螺钉放置在0度(或垂直)位置的​​胫骨相比,在多轴钢板和中心螺钉放置在15度位置的情况下,胫骨的刚度更高。这项研究表明,可变角度的结构在轴向载荷中在垂直和15度角插入之间显示出相似的刚度特性。 15度角结构显示出更大的扭转载荷刚度。

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