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首页> 外文期刊>Journal of Biomechanics >Bone density and anisotropy affect periprosthetic cement and bone stresses after anatomical glenoid replacement: A micro finite element analysis
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Bone density and anisotropy affect periprosthetic cement and bone stresses after anatomical glenoid replacement: A micro finite element analysis

机译:骨密度和各向异性影响解剖视网型更换后的百粒细胞和骨胁迫:微型有限元分析

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摘要

Glenoid loosening is still a main complication for shoulder arthroplasty. We hypothesize that cement and bone stresses potentially leading to fixation failure are related not only to glenohumeral conformity, fixation design or eccentric loading, but also to bone volume fraction, cortical thickness and degree of anisotropy in the glenoid. In this study, periprosthetic bone and cement stresses were computed with micro finite element models of the replaced glenoid depicting realistic bone microstructure. These models were used to quantify potential effects of bone microstructural parameters under loading conditions simulating different levels of glenohumeral conformity and eccentric loading simulating glenohumeral instability. Results show that peak cement stresses were achieved near the cement-bone interface in all loading schemes. Higher stresses within trabecular bone tissue and cement mantle were obtained within specimens of lower bone volume fraction and in regions of low anisotropy, increasing with decreasing glenohumeral conformity and reaching their maxima below the keeled design when the load is shifted superiorly. Our analyses confirm the combined influences of eccentric load shifts with reduced bone volume fraction and anisotropy on increasing periprosthetic stresses. They finally suggest that improving fixation of glenoid replacements must reduce internal cement and bone tissue stresses, in particular in glenoids of low bone density and heterogeneity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:眼盂松弛仍然是肩部关节造身术的主要复杂性。我们假设可能导致固定失败的水泥和骨胁迫不仅与Glenohumeral符合性,固定设计或偏心载荷相关,而且还与骨骼体积分数,皮质厚度和关节盂的各向异性程度相关。在本研究中,用替代的关节盂的微型有限元模型计算百骨骨骨和水泥应力,所述替代的关节盂描绘逼真的骨微观结构。这些模型用于量化骨微观结构参数在模拟不同水平的胶质形符合性和偏心载荷模拟Glenohumer无稳定性下的潜在效应。结果表明,在所有装载方案中,在水泥骨界面附近实现了峰值水泥应力。在较低骨体积分数和低各向异性区域中,在低各向异性区域中获得较高的骨组织和水泥地幔的应力,随着胶质形状符合性的降低而增加,当负载更高时,随着胶质形状符合性的降低,达到龙骨设计下方的最大值。我们的分析证实了偏心载荷移位与降低的骨体积分数和各向异性增加了颅骨损伤的各向异性的组合影响。他们终于表明改善关节骨替换的固定必须减少内部水泥和骨组织应力,特别是在低骨密度和异质性的关节盂中。 (c)2016 Elsevier Ltd.保留所有权利。

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