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Stress and strain patterns in normal and osteoarthritic femur using finite element analysis

机译:正常和骨关节炎股骨的应力和应变模式的有限元分析

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摘要

Bone tissue stress and strain levels play a crucial role in bone remodeling. In fact, abnormal remodeling is documented in pathological conditions, such as in subject affected by osteoarthritis, even if this aspect seems to be poorly explored. We used FE analysis to investigate how the stress and strain distributions can be correlated with the loading conditions of the osteoarthritic femur and how a weird stimulation of trabecular tissue could lead to anomalous rearrangements of its pattern. For our analysis we developed, from X- ray images, 2D isotropic, homogeneous and linearly elastic models. The results show that stress and strain for the healthy femur are consistent with literature, whereas in osteoarthritic hips the physiological distribution of strain results altered and, consequently, anomalous remodeling processes take place: zones with very low (geodes) and/or very high (eburnation) bone density could appear, due to an unbalance in the activity of osteoblasts and osteoclasts.
机译:骨组织应力和应变水平在骨重塑中起关键作用。实际上,在病理情况下,例如在受骨关节炎影响的受试者中,记录了异常的重塑,即使这方面的探索性很差。我们使用有限元分析来研究应力和应变分布如何与骨关节炎股骨的负荷状况相关,以及对小梁组织的怪异刺激如何导致其模式异常重排。为了进行分析,我们从X射线图像开发了2D各向同性,均质和线性弹性模型。结果表明,健康股骨的应力和应变与文献一致,而在骨关节炎髋部中,应变结果的生理分布发生了变化,因此发生了异常的重塑过程:极低的区域(大结)和/或极高的区域(由于成骨细胞和破骨细胞的活性不平衡,可能会出现骨密度升高。

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  • 会议地点 Rome(IT)
  • 作者单位

    'Sapienza ' University of Rome, Faculty of Engineering, Department of Mechanical and Aerospace Engineering, Mechanical Thermal Measurement Lab. Eudossiana, Rome, Italy;

    'Sapienza ' University of Rome, Faculty of Engineering, Department of Mechanical and Aerospace Engineering, Mechanical Thermal Measurement Lab. Eudossiana, Rome, Italy;

    'Sapienza ' University of Rome, Faculty of Engineering, Department of Mechanical and Aerospace Engineering, Mechanical Thermal Measurement Lab. Eudossiana, Rome, Italy;

    'Sapienza ' University of Rome, Faculty of Engineering, Department of Mechanical and Aerospace Engineering, Mechanical Thermal Measurement Lab. Eudossiana, Rome, Italy;

    Department ofTechnology and Health oflstituto Superiore di Sanita, Rome, Italy;

    Orthopaedics and Traumatology Area, University 'Campus Bio-Medico ', Rome, Italy;

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