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Mechanics of musculoskeletal repair devices

机译:肌肉骨骼修复装置的力学

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摘要

This paper applies the mechanics of engineering science and materials to the understanding of clinical devices used in Orthopaedics and Trauma. The rigidity of devices is described to be a function of material stiffness and its geometry relative to the loading axes. Structures are more rigid under loads that are applied along their long axes and are more flexible under bending and torsion, which increases with length. This may be applied to an individual plate, screw or bone and to the entire construct. Increasing the thickness of a plate greatly increases rigidity as a third power relationship exists between these variables. Similarly, increasing the diameter of a rod increases its rigidity by a fourth power relationship. A hollow cylindrical cross-section, as found in long bones, provides the most effective rigidity to weight ratio when complex stresses are applied. This paper provides examples to reinforce basic structural mechanics applied to medical devices.
机译:本文将工程科学和材料的力学应用于对骨科和创伤用临床设备的了解。设备的刚度被描述为材料刚度及其相对于加载轴的几何形状的函数。结构在沿其长轴施加的载荷下更坚硬,在弯曲和扭转(随长度增加)的弯曲下更灵活。这可以应用于单独的板,螺钉或骨头以及整个结构。由于这些变量之间存在三次幂关系,因此增加板的厚度会大大提高刚度。类似地,增加杆的直径通过第四幂关系来增加其刚度。长骨中发现的空心圆柱形横截面在施加复杂应力时提供了最有效的刚度与重量之比。本文提供了一些示例,以加强应用于医疗设备的基本结构力学。

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  • 作者

    Harwood PJ; Stewart TD;

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  • 年度 2016
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