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TECHNIQUE FOR THE MEASUREMENT OF SURGICAL SCREW DEFLECTION

机译:手术螺钉偏转的测量技术

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Cyclical loading of surgical plating constructs can lead to screw failure through bending loads. In this research, an analytical beam mechanics model was developed to describe the elastic deflection of a cortical screw under a statically applied load. To test the predictive ability of the analytical model, a synthetic bone substitute was used for experiments. The bone substitute was a composite sandwich, consisting of two 6 mm cortical walls separated by a cancellous region. A novel instrument was developed to measure the bending deflection of screws under a radial load applied by a surgical plate at the screw head. A dial indicator and dowel pin arrangement was utilized to measure screw deflection at the screw head and along the length of the screw in order to determine a deflection curve for the screw axis. The analytical model accurately predicted deflection of the screw head at the location of the applied force, but overestimated deflection of the screw body in the cancellous region of the composite bone. Analytical predictions of location of the maximum bending moment matched the location of observed screw fracture in a clinical setting.
机译:外科手术钢板结构的周期性载荷会因弯曲载荷而导致螺钉损坏。在这项研究中,建立了一个分析梁力学模型来描述在静态施加的载荷下皮质螺钉的弹性挠度。为了测试分析模型的预测能力,将合成的骨替代物用于实验。骨替代物是复合三明治,由两个6毫米的皮质壁(由松质区隔开)组成。开发了一种新颖的仪器来测量在外科手术板在螺钉头施加的径向载荷下螺钉的弯曲挠度。利用百分表和定位销装置来测量螺钉头处以及沿螺钉长度的螺钉挠度,以便确定螺钉轴线的挠度曲线。该分析模型可以准确地预测螺钉头在所施加力的位置处的挠度,但是会高估螺钉体在复合骨的松质区域中的挠度。在临床环境中,最大弯曲力矩的位置的分析预测与观察到的螺钉断裂的位置匹配。

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