Suppr超能文献

在骨质疏松症计算模型上使用有限元方法对三种肱骨远端关节外骨折内固定模型的比较研究

Comparative study of three models of extra-articular distal humerus fracture osteosynthesis using the finite element method on an osteoporotic computational model.

作者信息

Sabalic Srecko, Kodvanj Janos, Pavic Arsen

机构信息

Trauma and General Surgeon, Sestre Milosrdnice University Hospital Center, University Hospital for Traumatology, Zagreb, Croatia.

出版信息

Injury. 2013 Sep;44 Suppl 3:S56-61. doi: 10.1016/S0020-1383(13)70200-6.

Abstract

INTRODUCTION

The biomechanical properties of extra-articular fractures of the distal humerus have not been researched sufficiently. The aim of the study was to examine three different models of osteosynthesis for extra-articular distal humerus fractures. Osteosynthesis with two parallel or perpendicular plates is a common method of osteosynthesis for those fractures. We wanted to examine the biomechanical performance of a newly designed Y plate, and compare it to the previously used osteosynthesis methods.

MATERIALS AND METHODS

On an osteoporotic computational model of the distal humerus, a 10 mm gap was made, 25 mm above the olecranon fossa, and osteosynthesis was performed with the newly designed Y-shaped plate and with 3.5 reconstruction plates in parallel and perpendicular configuration. The numerical simulations in axial compression, bending and varus loading were conducted using the finite element method.

RESULTS

On all models the largest displacements in the area of the fracture gap appear around the lower anterior edge. The parallel plate construct had the highest stiffness among the three plating techniques in axial compression. In bending and varus loading the construct with the newly designed plate had the highest stiffness, but in axial compression demonstrated the lowest. The parallel plate configurations had higher stiffness than the perpendicular ones in all three loading directions and the difference is most pronounced in axial compression.

CONCLUSION

The displacements that appeared in all three plating systems are minimal and within the limits that meet the requirements of sufficient biomechanical stability in the usual time for the healing of fractures in that region. The newly designed Y-shaped plate for extra-articular fractures of the distal humerus is a possible alternative to the usual method of osteosynthesis with two plates in the case of an extra-articular fracture of the distal humerus. Further biomechanical studies are needed for a decisive conclusion.

摘要

引言

肱骨远端关节外骨折的生物力学特性尚未得到充分研究。本研究的目的是检验三种不同的肱骨远端关节外骨折内固定模型。使用两块平行或垂直的钢板进行内固定是治疗这些骨折的常用方法。我们想检验一种新设计的Y形钢板的生物力学性能,并将其与先前使用的内固定方法进行比较。

材料与方法

在一个骨质疏松的肱骨远端计算模型上,在鹰嘴窝上方25毫米处制造一个10毫米的间隙,并用新设计的Y形钢板以及3.5重建钢板以平行和垂直配置进行内固定。使用有限元方法进行轴向压缩、弯曲和内翻加载的数值模拟。

结果

在所有模型中,骨折间隙区域的最大位移出现在下前缘周围。在轴向压缩时,平行钢板结构在三种钢板固定技术中具有最高的刚度。在弯曲和内翻加载时,使用新设计钢板的结构具有最高的刚度,但在轴向压缩时刚度最低。在所有三个加载方向上,平行钢板配置的刚度都高于垂直配置,且在轴向压缩时差异最为明显。

结论

在所有三种钢板固定系统中出现的位移都很小,且在该区域骨折愈合的正常时间内满足足够生物力学稳定性要求的限度内。对于肱骨远端关节外骨折,新设计的Y形钢板是在肱骨远端关节外骨折情况下使用两块钢板的常规内固定方法的一种可能替代方案。需要进一步的生物力学研究才能得出决定性结论。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验