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骨干骺端锚定短柄髋关节置换术提供更生理性的负荷传递:一项比较有限元分析研究。

Metaphyseal anchoring short stem hip arthroplasty provides a more physiological load transfer: a comparative finite element analysis study.

机构信息

Department of Orthopaedic Surgery, The First Affiliated Hospital of Anhui Medical University, No.1 Baicao Road, Hefei, 230088, China.

Department of Orthopaedic Surgery, Physical Medicine and Rehabilitation, University of Munich (LMU), Munich, Germany.

出版信息

J Orthop Surg Res. 2020 Oct 29;15(1):498. doi: 10.1186/s13018-020-02027-4.

Abstract

BACKGROUND

Short stem total hip arthroplasty (SHA) preserves femoral bone stock and is supposed to provide a more natural load transfer compared to standard stem total hip arthroplasty (THA). As comparative biomechanical reference data are rare we used a finite element analysis (FEA) approach to compare cortical load transfer after implantations of a metaphyseal anchoring short and standard stem in native biomechanical femora.

METHODS

The subject specific finite element models of biomechanical femora, one native and two with implanted metaphyseal anchoring SHA (Metha, B. Braun Aesculap) and standard THA (CLS, Zimmer-Biomet), were generated from computed tomography datasets. The loading configuration was performed with an axial force of 1400 N. Von Mises stress was used to investigate the change of cortical stress distribution.

RESULTS

Compared to the native femur, a considerable reduction of cortical stress was recorded after implantation of SHA and standard THA. The SHA showed less reduction proximally with a significant higher metaphyseal cortical stress compared to standard THA. Moreover, the highest peak stresses were observed metaphyseal for the SHA stem while for the standard THA high stress pattern was observed more distally.

CONCLUSIONS

Both, short and standard THA, cause unloading of the proximal femur. However, the metaphyseal anchoring SHA features a clearly favorable pattern in terms of a lower reduction proximally and improved metaphyseal loading, while standard THA shows a higher proximal unloading and more distal load transfer. These load patterns implicate a reduced stress shielding proximally for metaphyseal anchoring SHA stems and might be able to translate in a better bone preservation.

摘要

背景

短柄全髋关节置换术(SHA)保留股骨骨量,与标准柄全髋关节置换术(THA)相比,据称能提供更自然的负荷传递。由于比较性生物力学参考数据很少,我们使用有限元分析(FEA)方法来比较在原生生物力学股骨中植入近段锚固短柄和标准柄后的皮质骨负荷传递。

方法

从计算机断层扫描数据集生成了特定于个体的生物力学股骨的有限元模型,一个原生的和两个植入近段锚固短柄全髋关节置换(Metha,B. Braun Aesculap)和标准全髋关节置换(CLS,Zimmer-Biomet)的模型。加载配置采用 1400 N 的轴向力。使用 von Mises 应力来研究皮质骨应力分布的变化。

结果

与原生股骨相比,植入 SHA 和标准 THA 后皮质骨应力明显降低。SHA 近端的减少幅度较小,与标准 THA 相比,近段皮质骨的应力明显较高。此外,SHA 柄的最高峰值应力出现在近段,而标准 THA 的高应力模式则出现在更远端。

结论

短柄和标准 THA 都会导致股骨近端的负荷卸载。然而,近段锚固短柄 SHA 具有明显更有利的模式,即近端减少幅度较小,近段负荷改善,而标准 THA 则表现出更高的近端卸载和更远端的负荷传递。这些负荷模式意味着近段锚固短柄 SHA 柄的应力屏蔽减少,可能能够转化为更好的骨保存。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f6d/7597026/c2abdc7b9951/13018_2020_2027_Fig1_HTML.jpg

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