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采用带节段性骨缺损的骨干骨折固定术:锁定钢板与传统钢板固定技术的生物力学比较

Fixation of diaphyseal fractures with a segmental defect: a biomechanical comparison of locked and conventional plating techniques.

作者信息

Fulkerson Eric, Egol Kenneth A, Kubiak Erik N, Liporace Frank, Kummer Frederick J, Koval Kenneth J

机构信息

Department of Orthopaedic Surgery, Hospital for Joint Diseases, New York, NY 10003, USA.

出版信息

J Trauma. 2006 Apr;60(4):830-5. doi: 10.1097/01.ta.0000195462.53525.0c.

DOI:10.1097/01.ta.0000195462.53525.0c
PMID:16612304
Abstract

BACKGROUND

Locking plates are an alternative to conventional compression plate fixation for diaphyseal fractures. The objective of this study was to compare the stability of various plating with locked screw constructs to conventional nonlocked screws for fixation of a comminuted diaphyseal fracture model using a uniform, synthetic ulna. Locked screw construct variables were the use of unicortical or bicortical screws, and increasing bone to plate distance.

METHODS

This biomechanical study compared various construct groups after cyclic axial loading and three-point bending. Results were analyzed via one-way analysis of variance. Displacements after cyclical axial loading and number of cycles to failure in cyclic bending were used to assess construct stability.

RESULTS

The constructs fixed by plates with bicortical locked screws withstood significantly more cycles to failure than the other constructs (p < 0.001). Significantly less displacement occurred after axial loading with bicortical locked screws than with bicortical nonlocked screws. Increased distance of the plate from the bone surface, and use of unicortical locked screws led to early failure with cyclic loading for constructs with locked screws.

CONCLUSIONS

These results support the use of plating with bicortical locked screws as an alternative to conventional plating for comminuted diaphyseal fractures in osteoporotic bone. Bicortical locked screws with minimal displacement from the bone surface provide the most stable construct in the tested synthetic comminuted diaphyseal fracture model. The results of this study suggest use of plates with unicortical screws for the described fracture is not recommended.

摘要

背景

锁定钢板是治疗骨干骨折时替代传统加压钢板固定的一种选择。本研究的目的是使用统一的合成尺骨,比较各种带锁定螺钉结构的钢板与传统非锁定螺钉在固定粉碎性骨干骨折模型时的稳定性。锁定螺钉结构的变量包括使用单皮质或双皮质螺钉,以及增加骨与钢板的距离。

方法

本生物力学研究在循环轴向加载和三点弯曲后比较了各种结构组。通过单向方差分析对结果进行分析。循环轴向加载后的位移和循环弯曲至失效的循环次数用于评估结构稳定性。

结果

双皮质锁定螺钉固定的结构比其他结构承受了显著更多的失效循环次数(p < 0.001)。双皮质锁定螺钉轴向加载后的位移明显小于双皮质非锁定螺钉。对于带锁定螺钉的结构,钢板与骨表面距离的增加以及单皮质锁定螺钉的使用导致循环加载时早期失效。

结论

这些结果支持使用双皮质锁定螺钉钢板作为骨质疏松性骨中粉碎性骨干骨折传统钢板固定的替代方法。在测试的合成粉碎性骨干骨折模型中,与骨表面位移最小的双皮质锁定螺钉提供了最稳定的结构。本研究结果表明,不推荐使用带单皮质螺钉的钢板治疗所述骨折。

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