Headless Compression Screw Fixation of Vertical Medial Malleolus Fractures is Superior to Unicortical Screw Fixation.

Adam M Wegner, Philip R Wolinsky, Michael A Robbins, Tanya C Garcia, Sukanta Maitra, Derek F Amanatullah
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引用次数: 6

Abstract

This study is the first biomechanical research of headless compression screws for fixation of vertical shear fractures of the medial malleolus, a promising alternative that potentially offers several advantages for fixation. Vertical shear fractures were simulated by osteotomies in 20 synthetic distal tibiae. Models were randomly assigned to fixation with either 2 parallel cancellous screws or 2 parallel Acutrak 2 headless compression screws (Acumed). Specimens were subjected to offset axial loading to simulate supination-adduction loading and tracked using high-resolution video. The headless compression screw construct was significantly stiffer (P < .0001) (360 ± 131 N/mm) than the partially threaded cancellous screws (180 ± 48 N/mm) and demonstrated a significantly increased (P < .0001) mean load to clinical failure (719 ± 91 N vs 343 ± 83 N). When specimens were displaced to 6 mm and allowed to relax, the headless compression screw constructs demonstrated an elastic recoil and were reduced to the pretesting fragment alignment, whereas the parallel cancellous screw constructs remained displaced. Along with the headless design that may decrease soft tissue irritation, the increased stiffness and elastic recoil of the headless compression screw construct offers improved fixation of medial malleolus vertical shear fractures over the traditional methods.

无头加压螺钉固定垂直内踝骨折优于单皮质螺钉固定。
这项研究是首次对无头加压螺钉固定内踝垂直剪切骨折的生物力学研究,这是一种很有前景的替代方法,具有潜在的固定优势。采用截骨术模拟20例人工胫骨远端垂直剪切骨折。模型随机分配使用2枚平行松质螺钉或2枚平行Acutrak 2无头加压螺钉(Acumed)进行固定。样品受到偏移轴向加载以模拟旋后内收加载,并使用高分辨率视频进行跟踪。与部分螺纹松质螺钉(180±48 N/mm)相比,无头压缩螺钉结构明显更硬(360±131 N/mm) (P < 0.0001),并且临床失败的平均载荷显著增加(P < 0.0001)(719±91 N vs 343±83 N)。当标本移位至6 mm并允许放松时,无头压缩螺钉结构表现出弹性后坐力,并减少到测试前碎片对准。而平行松质螺钉结构仍然移位。无头加压螺钉的设计可以减少对软组织的刺激,与传统方法相比,无头加压螺钉结构增加的刚度和弹性后坐力可以改善内踝垂直剪切骨折的固定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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