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霍夫曼外固定架十种构型的稳定性

Stability of ten configurations of the Hoffmann external-fixation frame.

作者信息

Finlay J B, Moroz T K, Rorabeck C H, Davey J R, Bourne R B

出版信息

J Bone Joint Surg Am. 1987 Jun;69(5):734-44.

PMID:3597473
Abstract

The rigidity, load to yield, and load to failure of ten configurations of the Hoffmann external fixator were investigated using a model of wooden pylons with a simulated fracture that consisted of either a reduced transverse cut or a ten-millimeter gap. The axial compressive, torsional, anterior-posterior bending, and medial-lateral bending characteristics of four forms of the single half-frame (half-pinned), four double half-frame, and two full-frame (transfixion-pinned) configurations were examined. Of the single half-frame configurations, a system with a second stacked connecting-rod proved to be superior; however, the system yielded at a mean axial compressive load of only 199 newtons and failed totally at 355 newtons. The delta frame (two rods connecting or triangulating two half-frames set at an angle of 45 degrees to one another) was as rigid as the quadrilateral full frame in axial compression; however, it exhibited low loads to yield and to failure, with means around 200 and 350 newtons, respectively. The use of only two pins in each pin-cluster did not significantly affect the performance of the delta frame. The two full-frame systems performed poorly in torsion and particularly poorly in anterior-posterior bending. The loads that caused a one-millimeter movement within the fracture gap in axial compression were notably low: for the stacked half-frames the load did not exceed a mean value of 174 newtons; for the double half-frame, 190 newtons; and for the quadrilateral frame, 412 newtons. We concluded that no frame had a good over-all performance with regard to rigidity.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用带有模拟骨折的木制支架模型,研究了霍夫曼外固定器十种构型的刚度、屈服载荷和破坏载荷,该模型的模拟骨折由横向切口减小或十毫米间隙组成。研究了四种单半框架(半针固定)、四种双半框架和两种全框架(贯穿针固定)构型的轴向压缩、扭转、前后弯曲和内外侧弯曲特性。在单半框架构型中,带有第二个堆叠连杆的系统表现更优;然而,该系统在平均轴向压缩载荷仅为199牛顿时屈服,并在355牛顿时完全失效。三角形框架(两根杆连接或以45度角相互三角化两个半框架)在轴向压缩方面与四边形全框架一样刚硬;然而,它的屈服载荷和破坏载荷较低,平均值分别约为200牛顿和350牛顿。每个针组仅使用两根针并不会显著影响三角形框架的性能。两种全框架系统在扭转方面表现不佳,在前后弯曲方面尤其差。在轴向压缩中使骨折间隙内产生一毫米位移的载荷明显较低:对于堆叠半框架,载荷不超过174牛顿的平均值;对于双半框架,为190牛顿;对于四边形框架,为412牛顿。我们得出结论,就刚度而言,没有一种框架具有良好的整体性能。(摘要截于250字)

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