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首页> 外文期刊>Journal of orthopaedic research >Effect of anatomical variability on stress‐shielding induced by short calcar‐guided stems: Automated finite element analysis of 90 femora
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Effect of anatomical variability on stress‐shielding induced by short calcar‐guided stems: Automated finite element analysis of 90 femora

机译:解剖变异性对短路式茎诱导应力屏蔽的影响:90股的自动化有限元分析

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ABSTRACT Short stem hip implants are becoming increasingly popular since they preserve bone stock and presumably reduce stress‐shielding. However, concerns remain whether they are suitable for a wide range of patients with varying anatomy. The aim of this study was to investigate how femoral anatomy influences stress‐shielding induced by a short calcar‐guided stem across a set of 90 CT‐based femur models. A computational tool was developed that automatically selected the optimal size and position of the stem. Finite element models of the intact and implanted femurs were constructed and subjected to walking loads. Stress‐shielding was evaluated in relevant volumes of interest of the proximal femur. After a detailed anatomical analysis, linear regression was performed to find potential correlations between anatomy and stress‐shielding. Stress‐shielding was found to be highest in the proximal regions on the medial and posterior side. A highly significant negative relationship was observed between stress‐shielding and bone density; a strong positive relationship was observed with stem size and the valgus orientation of the stem with respect to the femur. The results reveal how anatomy influences stress‐shielding, and they highlight the importance of evaluating new implant designs across a large population taking into account the anatomical variability. The study demonstrates that such large population studies can be conducted in an efficient way using an automated workflow. ? 2019 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 9999:1–8, 2019.
机译:摘要短茎臀部植入物越来越受欢迎,因为它们保持骨头库存,并且可能会减少压力屏蔽。然而,担心它们是否适合各种不同解剖结构的患者。本研究的目的是调查股骨解剖学如何影响由一组90 CT基股骨模型的短钙导向茎引起的应力屏蔽。开发了一种计算工具,其自动选择杆的最佳尺寸和位置。完整和植入股骨的有限元模型被构造并进行行走载荷。在近端股骨的相关体积中评估应力屏蔽。在详细解剖分析之后,进行线性回归以找到解剖和应力屏蔽之间的潜在相关性。在内侧和后侧的近侧区域发现应力屏蔽是最高的。在应力屏蔽和骨密度之间观察到强度显着的负面关系;用茎尺寸和阀杆对股骨的旋翼方向观察到强烈的正相关关系。结果揭示了解剖学如何影响压力屏蔽,并且它们突出了考虑到解剖学变异性的大人物中评估新的植入物设计的重要性。该研究表明,这些大型人口研究可以使用自动化工作流程以有效的方式进行。还2019年骨科研究会。由Wiley Hearyicals,Inc.J Orthop Res 9999:1-8,2019出版。

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