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用于稳定下颌骨髁突骨折的三种接骨装置的实验评估

Experimental evaluation of three osteosynthesis devices used for stabilizing condylar fractures of the mandible.

作者信息

Meyer Christophe, Serhir Leila, Boutemi Philippe

机构信息

Department of Maxillofacial Surgery, University Hospital of Strasbourg, France.

出版信息

J Craniomaxillofac Surg. 2006 Apr;34(3):173-81. doi: 10.1016/j.jcms.2005.09.005. Epub 2006 Mar 14.

Abstract

INTRODUCTION

The purpose of the study is to evaluate experimentally the quality of the primary stability achieved in treating low subcondylar fractures by means of three different osteosynthesis devices.

MATERIAL AND METHODS

The devices, a standard four-hole plate, an axial lag screw and a three-dimensional rectangular plate were tested on fresh isolated human mandibles. Testing was done on a test bench by reproducing static biting exercises between the first molars on the side of the fracture. The quality of the osteosynthesis was assessed by measuring the macroscopic amount of fragment displacement and on the device's ability to diffuse the mechanical strain within the fractured area by photoelastic stress analysis.

RESULTS

The straight plates provided the worst restoration. This was explained by the unfavourable position of the plate along compression lines. The axial lag screws allowed average stability. This was due to the difficulty of intra-medullary positioning of the screw, and by the compression of the fracture line. Rectangular plates allowed good stability associated with rather good restitution of the strains. These good results were assigned to the shape of the plate, one of its arms approximating the tensile strain lines.

CONCLUSION

Positioning and shape of the osteosynthesis device are of prime importance for condylar fracture stabilization. None of the three tested devices was optimal but the three-dimensional plate was the best. There is a need to develop the geometry of new plates.

摘要

引言

本研究的目的是通过实验评估三种不同的接骨装置治疗髁突下低位骨折时所获得的初期稳定性质量。

材料与方法

在新鲜离体的人类下颌骨上测试了标准四孔钢板、轴向拉力螺钉和三维矩形钢板这三种装置。在试验台上通过模拟骨折侧第一磨牙之间的静态咬合运动进行测试。通过测量骨折块移位的宏观量以及利用光弹性应力分析评估装置在骨折区域内分散机械应变的能力,来评估接骨质量。

结果

直板提供的复位效果最差。这是由于钢板沿压力线的位置不利所致。轴向拉力螺钉实现了平均稳定性。这是由于螺钉髓内定位困难以及骨折线的压缩所致。矩形钢板实现了良好的稳定性,并伴有相当好的应变恢复。这些良好结果归因于钢板的形状,其一个臂近似拉伸应变线。

结论

接骨装置的定位和形状对于髁突骨折的稳定至关重要。所测试的三种装置均非最佳,但三维钢板是最好的。有必要改进新型钢板的几何形状。

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