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新型开口楔形胫骨高位截骨术锁定钢板的生物力学评估:外侧铰链骨折时的应力分布和稳定性。

Biomechanical evaluation of a newly designed locking plate for opening wedge high tibial osteotomy: stress distribution and stability in the presence of lateral hinge fracture.

机构信息

Department of Orthopedic Surgery, Korea University Ansan Hospital, Korea University College of Medicine, Ansan-Si, Gyeongki-Do, Republic of Korea.

Skyve R&D Lab, Seoul, Republic of Korea.

出版信息

J Orthop Surg Res. 2024 Nov 27;19(1):800. doi: 10.1186/s13018-024-05283-w.

Abstract

BACKGROUND

The study aimed to evaluate whether a new OhtoFix plate reduced stress around the D-hole compared with an old OhtoFix and TomoFix plate. The study also assessed whether the new OhtoFix plate had biomechanical stability in a lateral hinge fracture (LHF).

METHODS

A finite element model of the proximal tibia was developed using cross-sectional images from a 62-year-old Asian woman. The model was designed to simulate opening wedge high tibial osteotomy (OWHTO) using three types of locking plates: the newly designed locking plate (new OhtoFix plate), the prior version of the OhtoFix plate (old OhtoFix plate), and the TomoFix plate. The peak von Mises stress (PVMS) was analyzed around the D-hole and across the entire plate including the impact of different LHF types classified according to the Takeuchi classification.

RESULTS

The new OhtoFix plate significantly reduced stress around the D-hole compared with the old OhtoFix and TomoFix plates, with peak stresses of 189.5 MPa, 251.5 MPa, and 233.3 MPa, respectively. Despite this improvement, the new OhtoFix plate did not surpass the TomoFix in terms of overall stress distribution across the entire plate. Additionally, in cases of LHF, although peak stress remained at the D-hole in both the old OhtoFix and TomoFix plates, the peak stress shifted to the C-hole in the new plate.

CONCLUSIONS

The new OhtoFix plate improved stress distribution around the D-hole (even in the presence of a LHF) compared to the old OhtoFix plate and TomoFix plates. However, although the new OhtoFix plate reduced peak stress around the D-hole, it did not demonstrate superior overall stress distribution across the entire plate compared to the TomoFix plate.

摘要

背景

本研究旨在评估新型 OhtoFix 钢板与旧型 OhtoFix 和 TomoFix 钢板相比,是否能减少 D 孔周围的应力。本研究还评估了新型 OhtoFix 钢板在横向铰链骨折(LHF)中是否具有生物力学稳定性。

方法

使用一名 62 岁亚洲女性的横截面图像,开发了一个胫骨近端的有限元模型。该模型旨在通过三种锁定钢板模拟开放式楔形胫骨高位截骨术(OWHTO):新设计的锁定钢板(新型 OhtoFix 钢板)、旧型 OhtoFix 钢板(旧型 OhtoFix 钢板)和 TomoFix 钢板。分析了 D 孔周围和整个钢板(包括根据 Takeuchi 分类的不同 LHF 类型的影响)的 Von Mises 峰值应力(PVMS)。

结果

新型 OhtoFix 钢板与旧型 OhtoFix 和 TomoFix 钢板相比,显著降低了 D 孔周围的应力,峰值应力分别为 189.5 MPa、251.5 MPa 和 233.3 MPa。尽管有了这种改进,但新型 OhtoFix 钢板在整个钢板的总体应力分布方面仍不如 TomoFix 钢板。此外,在 LHF 的情况下,尽管旧型 OhtoFix 和 TomoFix 钢板的 D 孔仍出现峰值应力,但新型钢板的峰值应力转移到了 C 孔。

结论

新型 OhtoFix 钢板改善了 D 孔周围的应力分布(即使存在 LHF),与旧型 OhtoFix 钢板和 TomoFix 钢板相比。然而,尽管新型 OhtoFix 钢板减少了 D 孔周围的峰值应力,但与 TomoFix 钢板相比,它在整个钢板的总体应力分布方面并没有表现出优越性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4701/11603658/71a1389bd8cf/13018_2024_5283_Fig1_HTML.jpg

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