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第四代复合材料股骨杂交锁定板构建的力学评估。

Mechanical evaluation of fourth-generation composite femur hybrid locking plate constructs.

机构信息

Department of Biomedical, Industrial and Human Factor Engineering, Wright State University, Dayton, USA.

出版信息

J Mater Sci Mater Med. 2011 Sep;22(9):2139-46. doi: 10.1007/s10856-011-4388-2. Epub 2011 Jul 17.

Abstract

Locking compression plates are routinely used for open reduction and internal fixation of fractures. Such plates allow for locking or non-locking screw placement in each hole. A combined use of both types of screw application for stabilization of a fracture is commonly applied and referred to as hybrid internal fixation. Locking screws improve the stability of the fixation construct but at the expense of significant additional cost. This study experimentally analyzes various combinations of locking and non-locking screws under simultaneous axial and torsional loading to determine the optimal hybrid locking plate-screw construct in a fourth generation composite femur. Clinically it is necessary to ensure adequate fixation stability in a worse case fracture-bone quality scenario. A locking screw near the fracture gap increased the axial and torsional strength of the locked plate system. Greater removal torque remained in non-locked screws adjacent to locked screws compared to an all non-locking screws control group.

摘要

锁定加压钢板通常用于开放性骨折切开复位内固定。此类钢板允许在每个孔中锁定或非锁定螺钉固定。为了稳定骨折,通常会联合使用这两种类型的螺钉应用,这被称为混合内固定。锁定螺钉可提高固定结构的稳定性,但代价是显著增加成本。本研究通过实验分析了在同时轴向和扭转加载下,各种锁定和非锁定螺钉的组合,以确定第四代复合材料股骨中最佳的混合锁定钢板-螺钉结构。在临床情况下,必须确保在更差的骨折-骨质量情况下有足够的固定稳定性。骨折间隙附近的锁定螺钉增加了锁定钢板系统的轴向和扭转强度。与所有非锁定螺钉对照组相比,锁定螺钉附近的非锁定螺钉保留了更大的去除扭矩。

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