首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Validation of FE micromotions and strains around a press-fit cup: Introducing a new micromotion measuring technique
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Validation of FE micromotions and strains around a press-fit cup: Introducing a new micromotion measuring technique

机译:验证压配合杯周围的FE微动和应变:引入新的微动测量技术

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摘要

Finite element (FE) analysis provides an useful tool with which to analyze the potential performance of implantations in a variety of surgical, patient and design scenarios. To enable the use of FE analysis in the investigation of such implants, models must be experimentally validated. Validation of a pelvic model with an implanted press-fit cup in terms of micromotion and strain is presented here. A new method of micromotion has been introduced to better describe the overall movement of the cup within the pelvis. The method uses a digitizing arm to monitor the relative movement between markers on the cup and the surrounding acetabulum. FE analysis was used to replicate an experimental set up using a synthetic hemi-pelvis with a press-fitted all-metal cup, subject to the maximum loading observed during normal walking. The work presented here has confirmed the ability of FE models to accurately describe the mechanical performance of the press-fitted acetabulum and surrounding bone under typical loading conditions in terms of micromotion and strain distribution, but has demonstrated limitations in its ability to predict numerical micromotion values. A promising digitizing technique for measuring acetabular micromotions has also been introduced.
机译:有限元(FE)分析提供了一种有用的工具,可用来分析各种手术,患者和设计方案中植入物的潜在性能。为了能够在此类植入物的研究中使用有限元分析,必须对模型进行实验验证。这里介绍了在微动和应变方面对植入式压接杯的骨盆模型的验证。引入了一种新的微动方法,以更好地描述杯子在骨盆内的整体运动。该方法使用一个数字化臂来监视杯子上的标记和周围的髋臼之间的相对运动。有限元分析用于复制实验设置,该实验设置为使用带有半压装全金属杯的合成半骨盆,承受正常行走过程中观察到的最大负荷。此处介绍的工作已经证实了有限元模型具有在微观运动和应变分布方面准确描述压装髋臼和周围骨骼在典型载荷条件下的力学性能的能力,但是在预测数值微观运动值的能力方面存在局限性。还介绍了一种用于测量髋臼微动的有希望的数字化技术。

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