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Measurements of deformations in osseous structures and implants by digital speckle interferometry (DSPI)

机译:通过数字散斑干涉术(DSPI)测量骨结构和植入物的变形

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Knowledge of how osseous structures and implants behave under deforming stress is an interesting point when evaluating the response of an implanted prosthesis. The failure of an implant is not always due to the great stress a structure may be subjected to at a particular moment, but rather to the effects of deterioration associated with lesser stress but which is continuously applied. Therefore it is helpful to know how bones and implants respond to this lesser stress. Digital speckle interferometry (DSPI) is suitable for this type of determination, as it is a highly sensitive, non-invasive optical technique.rnIn this study we present the results we obtained when determining the elasticity of a sample of a macerated human radius, a titanium implant and a titanium screw used to treat the fractures of this bone. The correlation ratios we obtained in determining Young's modulus were in the order of r = 0.994. Models were made of these structures using the finite elements method (FEM) with the aid of the ANSYS 10.0 program, applying Young's modulus values determined by DSPI.rnWith a view to monitoring the accuracy of the FEM models of the bone and the implant elements we designed a flexion experiment to obtain the DSPI values in and out of plane. The high degree of concordance between the results of both methods makes it possible to continue studying osseous samples with a fixed implant, and also other implants made of different alloys.
机译:当评估植入的假体的响应时,了解骨结构和植入物在变形应力下的行为方式是一个有趣的观点。植入物的失败并不总是由于结构在特定时刻可能承受的巨大应力,而是由于与较小应力相关的退化效果,但这种效果会持续施加。因此,了解骨骼和植入物如何应对这种较小的压力很有帮助。数字散斑干涉测量法(DSPI)适用于这种类型的测定,因为它是一种高度灵敏,非侵入性的光学技术。在本研究中,我们介绍了在确定浸软的人类radius骨样品的弹性时获得的结果。钛植入物和钛螺钉用于治疗该骨的骨折。我们在确定杨氏模量时获得的相关比约为r = 0.994。利用有限元方法(FEM)在ANSYS 10.0程序的帮助下对这些结构进行建模,应用DSPI确定的杨氏模量值。rn为了监测骨骼和植入物元素的FEM模型的准确性,我们设计了屈曲实验以获取平面内和平面外的DSPI值。两种方法的结果之间高度一致,使得有可能继续研究具有固定植入物的骨样品,以及由不同合金制成的其他植入物。

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