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贯穿钢丝交叉角度对细钢丝外固定刚度的影响:一项生物力学研究。

The effect of transfixion wire crossing angle on the stiffness of fine wire external fixation: a biomechanical study.

作者信息

Roberts Craig S, Antoci Valentin, Antoci Valentin, Voor Michael J

机构信息

Department of Orthopaedic Surgery, University of Louisville School of Medicine, 210 East Gray Street, Suite 1003, Louisville, KY 40202, USA.

出版信息

Injury. 2005 Sep;36(9):1107-12. doi: 10.1016/j.injury.2004.08.018.

Abstract

To analyse the effect of transfixion wire-crossing angle on the stiffness of fine wire external fixation, a laboratory investigation using a fibreglass tibia fixed into an idealised fixator was performed with a servohydraulic test frame. Load-deformation behaviour was compared at the different wire-crossing angles (30 degrees -90 degrees ) under identical conditions of central axial compression, medial compression-bending, posterior compression-bending, posteromedial compression-bending, and torsion. Stiffness values were calculated from the load-deformation and torque-angle curves. The increase in wire-crossing angle led to an overall increase in the stiffness, except medial bending stiffness. The wire-crossing angle of 90 degrees provided significantly greater stiffness than all other angles in all load configurations (p<0.05) except medial bending. In medial bending, the wire-crossing angle of 30 degrees provided significantly greater stiffness than all the other angles (p<0.05). Increasing wire-crossing angle from 30 degrees to 90 degrees contributed to an overall increase of 75% in external fixation stiffness, which included axial, torsional, and bending stiffness, but bending stiffness was a function of the wire positioning with respect to the loading axis. Therefore, using the widest possible wire-crossing angle and placing wires as close to the loading plane as possible can increase the stiffness of external fixation.

摘要

为分析贯穿钢丝交叉角度对细钢丝外固定刚度的影响,使用伺服液压试验框架对固定于理想化固定器中的玻璃纤维胫骨进行了一项实验室研究。在中心轴向压缩、内侧压缩弯曲、后侧压缩弯曲、后内侧压缩弯曲和扭转的相同条件下,比较了不同钢丝交叉角度(30度至90度)下的载荷-变形行为。根据载荷-变形曲线和扭矩-角度曲线计算刚度值。除内侧弯曲刚度外,钢丝交叉角度的增加导致刚度总体增加。在所有载荷配置中,90度的钢丝交叉角度提供的刚度显著高于所有其他角度(p<0.05),内侧弯曲情况除外。在内侧弯曲中,30度的钢丝交叉角度提供的刚度显著高于所有其他角度(p<0.05)。将钢丝交叉角度从30度增加到90度使外固定刚度总体增加了75%,其中包括轴向、扭转和弯曲刚度,但弯曲刚度是钢丝相对于加载轴位置的函数。因此,使用尽可能大的钢丝交叉角度并将钢丝放置得尽可能靠近加载平面可增加外固定的刚度。

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