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The effects of geometric uncertainties on computational modelling of knee biomechanics

机译:几何不确定性对膝关节生物力学计算建模的影响

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摘要

The geometry of the articular components of the knee is an important factor in predicting joint mechanics in computational models. There are a number of uncertainties in the definition of the geometry of cartilage and meniscus, and evaluating the effects of these uncertainties is fundamental to understanding the level of reliability of the models. In this study, the sensitivity of knee mechanics to geometric uncertainties was investigated by comparing polynomial-based and image-based knee models and varying the size of meniscus. The results suggested that the geometric uncertainties in cartilage and meniscus resulting from the resolution of MRI and the accuracy of segmentation caused considerable effects on the predicted knee mechanics. Moreover, even if the mathematical geometric descriptors can be very close to the imaged-based articular surfaces, the detailed contact pressure distribution produced by the mathematical geometric descriptors was not the same as that of the image-based model. However, the trends predicted by the models based on mathematical geometric descriptors were similar to those of the imaged-based models.
机译:膝关节组件的几何形状是预测计算模型中关节力学的重要因素。软骨和半月板的几何形状定义中存在许多不确定性,评估这些不确定性的影响对于理解模型的可靠性水平至关重要。在这项研究中,通过比较基于多项式和基于图像的膝盖模型并改变弯月面的大小,研究了膝盖力学对几何不确定性的敏感性。结果表明,由于MRI的分辨率和分割的准确性而导致的软骨和半月板的几何不确定性对预测的膝盖力学产生了相当大的影响。此外,即使数学几何描述符可以非常接近基于图像的关节表面,数学几何描述符所产生的详细接触压力分布也不与基于图像的模型相同。但是,基于数学几何描述符的模型预测的趋势与基于成像的模型的趋势相似。

著录项

  • 作者

    Meng Q; Fisher J; Wilcox R;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 en
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