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首页> 外文期刊>Injury >Evaluation of a polyaxial angle-stable volar plate in a distal radius C-fracture model--a biomechanical study.
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Evaluation of a polyaxial angle-stable volar plate in a distal radius C-fracture model--a biomechanical study.

机译:在远端radius骨C型骨折模型中评估多轴角度稳定掌侧钢板-生物力学研究。

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INTRODUCTION: Polyaxial angle-stable plating is thought to be particularly beneficial in the management of complex intra-articular fractures of the distal radius. The purpose of the present study was to investigate whether the technique provides stability to match that of conventional (fixed-angle) angle-stable constructs. MATERIAL AND METHODS: In seven pairs of human cadaver radii, an Arbeitsgemeinschaft fur Osteosynthese (AO) 23 C2.1 intra-articular fracture was created. One radius of each pair received a juxta-articular 2.4-mm locking compression plate (LCP) Volar Distal Radius Plate, whilst the contralateral one received a 2.4-mm Variable Angle Locking Compression Plate (LCP) Two-Column Volar Distal Radius Plate (both plates: Synthes, Oberdorf, Switzerland). Parameters tested were construct stiffness (static axial loading with 150 N), range of motion and secondary loss of reduction (dynamic 150 N axial loading over 5000 cycles). Stiffness and range of motion were measured both pre- and post-cycling. RESULTS: The polyaxial constructs were significantly stiffer, both before and after cyclic testing. However, the two-column plates showed a significant loss of stiffness during cyclic testing. The range of motion was significantly greater, both initially and at the end of cyclic testing, in the fixed-angle constructs. The conventional constructs had significantly greater secondary loss of reduction. CONCLUSION: The polyaxial two-column plate tested in this study provides a biomechanically sound construct for the management of intra-articular fractures of the distal radius.
机译:简介:多轴角度稳定钢板被认为在处理远端radius骨的复杂关节内骨折方面特别有益。本研究的目的是研究该技术是否提供与传统(固定角度)角度稳定结构相匹配的稳定性。材料与方法:在7对人体尸体半径中,创建了Arbeitsgemeinschaft皮骨合成(AO)23 C2.1关节内骨折。每对中的一个半径接受一个近关节的2.4 mm锁定加压钢板(LCP)掌远端半径板,而对侧则接受一个2.4 mm可变角度的锁定加压板(LCP)两列髋臼远端半径板(两者均板块:瑞士奥伯多夫的Synthes)。测试的参数为构造刚度(150 N的静态轴向载荷),运动范围和减少的二次损失(5000个循环内的动态150 N轴向载荷)。在骑自行车前和骑自行车后都测量其刚度和运动范围。结果:在循环测试之前和之后,多轴构造都明显更坚硬。但是,两柱板在循环测试期间显示出明显的刚度损失。在固定角度构造中,无论是在初始测试还是在循环测试结束时,运动范围都明显更大。常规构建物具有更大的二次还原损失。结论:本研究中测试的多轴两柱钢板为a骨远端关节内骨折的治疗提供了生物力学上合理的构造。

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