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两种不同运动轴系铰链膝关节假体的生物力学比较评估。

Comparative assessment of biomechanics induced by hinge knee prostheses with two different motion axial system.

机构信息

Department of Bone and Soft Tissue Oncology, Tianjin Hospital, Tianjin, China.

Department of Bone Disease, Second Hospital of Tangshan, Tangshan, China.

出版信息

Artif Organs. 2021 Jun;45(6):608-615. doi: 10.1111/aor.13872. Epub 2020 Dec 26.

DOI:10.1111/aor.13872
PMID:33236372
Abstract

We aimed to evaluate the biomechanical contact characteristics of rotating hinge knee (RHK) prostheses with different motion axial systems. We performed finite element (FE) analyses to investigate and compare the peak contact stress and contact location on tibial insert and bushing during a gait cycle. The biaxial (BA) system and spherical center axial (SA) system RHK prostheses were included in this study. The comparisons between experimental tests and FE analyses were performed to verify the validation of FE models. Decreased ISO loadings were then applied to the validated FE models to investigate the peak contact stress and contact location on tibial insert and bushing. The contact areas obtained from experimental tests and FE analyses were in a good agreement. The peak contact stresses on tibial insert and bushing of BA prosthesis were higher than those of SA prosthesis. The contact locations on the superior surface of tibial insert in SA and BA prostheses were at the middle-posterior and posterior side, while those on the rotating axial surface were at the medial and lateral sides, respectively. This study indicate that the tibial insert and bushing of an SA prosthesis have lower peak contact stresses and better contact locations than those of a BA prosthesis during a gait cycle, which may decrease the risk of long-term complications of RHK prostheses. Future studies should be performed to confirm the relationship between the contact characteristics and wear in RHK prostheses.

摘要

我们旨在评估具有不同运动轴向系统的旋转铰链膝关节(RHK)假体的生物力学接触特性。我们进行了有限元(FE)分析,以研究和比较步态周期中胫骨插入物和衬套上的峰值接触应力和接触位置。本研究包括双轴(BA)系统和球形中心轴向(SA)系统 RHK 假体。进行了实验测试和 FE 分析之间的比较,以验证 FE 模型的验证。然后将降低的 ISO 载荷应用于经过验证的 FE 模型,以研究胫骨插入物和衬套上的峰值接触应力和接触位置。从实验测试和 FE 分析中获得的接触区域具有良好的一致性。BA 假体胫骨插入物和衬套上的峰值接触应力高于 SA 假体。SA 和 BA 假体胫骨插入物上的接触位置在前上和后侧面,而在旋转轴面上的接触位置分别在内外侧。这项研究表明,在步态周期中,SA 假体的胫骨插入物和衬套的峰值接触应力较低,接触位置较好,这可能降低 RHK 假体长期并发症的风险。未来的研究应证实 RHK 假体的接触特性与磨损之间的关系。

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