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对于内踝水平骨折,微型接骨板固定等同于双皮质螺钉固定。

Mini-Fragment Fixation Is Equivalent to Bicortical Screw Fixation for Horizontal Medial Malleolus Fractures.

作者信息

Wegner Adam M, Wolinsky Philip R, Robbins Michael A, Garcia Tanya C, Amanatullah Derek F

出版信息

Orthopedics. 2018 May 1;41(3):e395-e399. doi: 10.3928/01477447-20180409-03. Epub 2018 Apr 16.

Abstract

Horizontal fractures of the medial malleolus occur through application of valgus or abduction force through the ankle that creates a tension failure of the medial malleolus. The authors hypothesize that mini-fragment T-plates may offer improved fixation, but the optimal fixation construct for these fractures remains unclear. Forty synthetic distal tibiae with identical osteotomies were randomized into 4 fixation constructs: (1) two parallel unicortical cancellous screws; (2) two parallel bicortical cortical screws; (3) a contoured mini-fragment T-plate with 2 unicortical screws in the fragment and 2 bicortical screws in the shaft; and (4) a contoured mini-fragment T-plate with 2 bicortical screws in the fragment and 2 unicortical screws in the shaft. Specimens were subjected to offset axial tension loading on a servohydraulic testing system and tracked using high-resolution video. Failure was defined as 2 mm of articular displacement. Analysis of variance followed by a Tukey-Kramer post hoc test was used to assess for differences between groups, with significance defined as P<.05. The mean stiffness (±SD) values of both mini-fragment T-plate constructs (239±83 N/mm and 190±37 N/mm) and the bicortical screw construct (240±17 N/mm) were not statistically different. The mean stiffness values of both mini-fragment T-plate constructs and the bicortical screw construct were higher than that of a parallel unicortical screw construct (102±20 N/mm). Contoured T-plate constructs provide stiffer initial fixation than a unicortical cancellous screw construct. The T-plate is biomechanically equivalent to a bicortical screw construct, but may be superior in capturing small fragments of bone. [Orthopedics. 2018; 41(3):e395-e399.].

摘要

内踝水平骨折是由于通过踝关节施加外翻或外展力,导致内踝出现张力性骨折。作者推测微型T形钢板可能提供更好的固定效果,但这些骨折的最佳固定结构仍不明确。40个具有相同截骨术的合成胫骨远端被随机分为4种固定结构:(1) 两枚平行的单皮质松质骨螺钉;(2) 两枚平行的双皮质皮质骨螺钉;(3) 一个塑形微型T形钢板,骨折块中有2枚单皮质螺钉,骨干中有2枚双皮质螺钉;(4) 一个塑形微型T形钢板,骨折块中有2枚双皮质螺钉,骨干中有2枚单皮质螺钉。标本在伺服液压测试系统上进行偏心轴向拉伸加载,并使用高分辨率视频进行跟踪。失败定义为关节移位2毫米。采用方差分析和Tukey-Kramer事后检验来评估组间差异,显著性定义为P<0.05。两种微型T形钢板结构(239±83 N/mm和190±37 N/mm)和双皮质螺钉结构(240±17 N/mm)的平均刚度(±标准差)值在统计学上无差异。两种微型T形钢板结构和双皮质螺钉结构的平均刚度值均高于平行单皮质螺钉结构(102±20 N/mm)。塑形T形钢板结构比单皮质松质骨螺钉结构提供更坚固的初始固定。T形钢板在生物力学上等同于双皮质螺钉结构,但在固定小骨块方面可能更具优势。[《骨科》。2018年;41(3):e395-e399。]

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