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骨折间隙对钢板固定稳定性的影响:有限元研究。

Effect of fracture gap on stability of compression plate fixation: a finite element study.

机构信息

Department of Orthopaedic Surgery, Korea University Medical Center, 80 Guro-dong, Guro-ku, Seoul 152-703, Korea.

出版信息

J Orthop Res. 2010 Apr;28(4):462-7. doi: 10.1002/jor.20990.

Abstract

In compression plating, anatomical reduction and compression across the fracture site are the basic principles necessary to achieve primary bone healing. However, varying amounts of gap at the fracture site frequently occur due to technical pitfalls, such as overbending of the plate and inaccurate reduction, and due to the fracture configuration itself. Little is known as to how fracture gap affects stability of the bone-plate construct. We analyzed the effects of fracture gap size (1 and 4 mm) and bone defect (25%, 50%, 75%, 100%) on the biomechanical stability of the compression plate-bone construct through validated finite element analysis. The stiffnesses of eight different models were compared with the stiffness of an ideally compressed model (0 mm/0%). Stress concentration in form of peak von Mises stress (PVMS) was also evaluated. The decrease in stiffness depended mainly on the depth of bone defect. The decrease in stiffness was similar in models with the same defect and different gap size. Considerably more stress was concentrated around the central hole of the plate in gap models with the depth of bone defects of 75% and 100% than with smaller defects. We concluded that even a thin fracture gap (1 mm) with no contact between the fracture after plating decreases stiffness exponentially; contact at the fracture surfaces of > or =50% was necessary to avoid undue stress concentration in the plate.

摘要

在压缩接骨板固定术中,解剖复位和在骨折部位加压是实现骨折一期愈合的基本原则。然而,由于技术缺陷,如钢板过度弯曲和复位不准确,以及骨折本身的特点,骨折部位经常会出现不同程度的间隙。对于骨折间隙如何影响钢板-骨结构的稳定性,目前知之甚少。我们通过验证的有限元分析,分析了骨折间隙大小(1mm 和 4mm)和骨缺损(25%、50%、75%、100%)对压缩钢板-骨结构生物力学稳定性的影响。比较了 8 种不同模型的刚度与理想压缩模型(0mm/0%)的刚度。还评估了以峰值 von Mises 应力(PVMS)形式的应力集中。刚度的降低主要取决于骨缺损的深度。具有相同缺损但间隙大小不同的模型,其刚度降低相似。与较小的缺损相比,骨缺损深度为 75%和 100%的间隙模型中,围绕钢板中央孔的应力集中明显更多。我们的结论是,即使是没有钢板固定后骨折面接触的微小骨折间隙(1mm),也会使刚度呈指数级下降;骨折面接触>或=50%是避免钢板过度应力集中所必需的。

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