首页> 外文期刊>Journal of Orthopaedic Surgery Research >Effect of elbow flexion angles on stress distribution of the proximal ulnar and radius bones under a vertical load: measurement using resistance strain gauges
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Effect of elbow flexion angles on stress distribution of the proximal ulnar and radius bones under a vertical load: measurement using resistance strain gauges

机译:肘关节屈曲角度对垂直载荷下尺骨和radius骨近端应力分布的影响:使用电阻应变仪进行测量

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Objectives This study aimed to explore the surface stress at the proximal ends of the ulna and radius at different elbow flexion angles using the resistance strain method. Methods Eight fresh adult cadaveric elbows were tested. The forearms were fixed in a neutral position. Axial load increment experiments were conducted at four different elbow flexion angles (0°, 15°, 30°, and 45°). Surface stain was measured at six sites (tip, middle, and base of the coronoid process; back ulnar notch; olecranon; and anterolateral margin of the radial head). Results With the exception of the ulnar olecranon, the load-stress curves at each measurement site showed an approximately linear relationship under the four working conditions studied. At a vertical load of 500?N, the greatest stress occurred at the middle of the coronoid process when the elbow flexion angles were 0° and 15°. When the flexion angles were 30° and 45°, the greatest stress occurred at the base of the coronoid process. The stress on the radial head was higher than those at the measurement sites of the proximal end of the ulna. Conclusion The resistance strain method for measuring elbow joint surface stress benefits biomechanics research on the elbow joint. Elbow joint surface stress distributions vary according to different elbow flexion angles.
机译:目的本研究旨在采用阻力应变方法探讨不同肘屈曲角度下尺骨近端和radius骨的表面应力。方法对八只新鲜的成人尸体肘进行测试。前臂固定在中立位置。在四个不同的肘部弯曲角度(0°,15°,30°和45°)下进行了轴向载荷增量实验。在六个部位(冠状突的尖端,中部和底部;尺骨后凹口;鹰嘴;;骨头的前外侧边缘)测量表面污点。结果除尺骨鹰嘴外,在所研究的四种工作条件下,每个测量部位的负荷应力曲线均显示出近似线性关系。在500?N的垂直载荷下,当肘部弯曲角度分别为0°和15°时,最大应力发生在冠突过程的中间。当屈角分别为30°和45°时,最大应力发生在冠突的根部。 head骨头上的应力高于尺骨近端测量部位的应力。结论电阻应变法测量肘关节表面应力有利于肘关节的生物力学研究。肘关节表面应力分布根据肘弯曲角度的不同而变化。

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