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关节内桡骨远端骨折的碎骨块特异性固定与增强型外固定的生物力学比较

A biomechanical comparison of fragment-specific fixation and augmented external fixation for intra-articular distal radius fractures.

作者信息

Dodds Seth D, Cornelissen Simon, Jossan Subir, Wolfe Scott W

机构信息

Hand and Upper Extremity Center, Department of Orthopaedic Surgery and Rehabilitation, Yale School of Medicine, New Haven, CT, USA.

出版信息

J Hand Surg Am. 2002 Nov;27(6):953-64. doi: 10.1053/jhsu.2002.35897.

Abstract

The biomechanical stability of an internal fixation system that uses low-profile modular implants to stabilize individual fracture components was studied in a validated cadaver fracture model that incorporated physiologic muscle forces and wrist motion. Fragment-specific fixation with immediate range of motion was compared with static augmented external fixation in simulated, unstable 3- and 4-part intra-articular distal radius fractures (n = 20). Fixation was applied and specimens were loaded via their major wrist tendons. Because the wrist joint was not constrained in the internal fixation group, full wrist motion occurred during load application in these specimens. A 3-dimensional motion tracking system calculated individual fracture fragment motion in both groups. In the 3-part fracture pattern fragment-specific fixation showed comparable stability to static augmented external fixation despite the full wrist range of motion that occurred during application of load in these specimens. In the 4-part fracture pattern fragment-specific fixation was shown to be significantly more stable when compared with static augmented external fixation in 4 of 6 axes of motion. Our findings confirm the stability of this low-profile plating system and support the consideration of early wrist motion when treating complex, intra-articular distal radius fractures with fragment-specific fixation.

摘要

在一个纳入了生理肌肉力量和腕关节活动的经过验证的尸体骨折模型中,研究了一种使用低轮廓模块化植入物来稳定各个骨折部件的内固定系统的生物力学稳定性。在模拟的不稳定三部分和四部分关节内桡骨远端骨折(n = 20)中,将具有即时活动范围的骨折块特异性固定与静态增强外固定进行比较。进行固定后,通过主要腕部肌腱对标本施加负荷。由于内固定组的腕关节未受限制,这些标本在施加负荷期间出现了全腕关节活动。一个三维运动跟踪系统计算了两组中各个骨折块的运动。在三部分骨折类型中,尽管这些标本在施加负荷期间出现了全腕关节活动范围,但骨折块特异性固定显示出与静态增强外固定相当的稳定性。在四部分骨折类型中,与静态增强外固定相比,骨折块特异性固定在六个运动轴中的四个轴上显示出明显更高的稳定性。我们的研究结果证实了这种低轮廓钢板系统的稳定性,并支持在使用骨折块特异性固定治疗复杂的关节内桡骨远端骨折时考虑早期腕关节活动。

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