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一种用于同时治疗胫骨平台内侧和后外侧骨折的新型锁定支撑钢板:概念与比较有限元分析。

A Novel Locking Buttress Plate Designed for Simultaneous Medial and Posterolateral Tibial Plateau Fractures: Concept and Comparative Finite Element Analysis.

机构信息

Department of Orthopaedics and Traumatology, Cixi Hospital of Traditional Chinese Medicine, Ningbo, China.

Department of Trauma Center, First Affiliated Hospital of Kunming Medical University, Kunming, China.

出版信息

Orthop Surg. 2023 Apr;15(4):1104-1116. doi: 10.1111/os.13660. Epub 2023 Feb 15.

Abstract

OBJECTIVE

The complex tibial plateau fractures involving both medial and posterolateral columns are of frequent occurrence in clinics, but the existing fixation system cannot deal with medial and posterolateral fragments simultaneously. Therefore, a novel locking buttress plate named as medial and posterior column plate (MPCP) was designed in this study to fix the simultaneous medial and posterolateral tibial plateau fractures. Meanwhile, the comparative finite element analysis (FEA) was conducted to investigate the discrepancy between MPCP and traditional multiple plates (MP + PLP) in their biomechanical characteristics.

METHODS

Two 3D finite element models of simultaneous medial and posterolateral tibial plateau fracture fixed with MPCP and MP + PLP system, respectively, was constructed. To imitate the axial stress of knee joint in ordinary life, diverse axial forces with 100, 500, 1000, and 1500 N were applied in the two fixation models, and then the equivalent displacement and stress nephograms and values were obtained.

RESULTS

The similar trend of displacement and stress increasing with the loads was observed in the two fixation models. However, several heterogeneities of displacement and stress distribution were found in the two fixation models. The max displacement and von Mises stress values of plates, screws, and fragments in the MPCP fixation model were significantly smaller than that in the MP + PLP fixation model, except for the max-shear stress values.

CONCLUSION

As a single locking buttress plate, the MPCP system showed the excellent benefit on improving the stability of the simultaneous medial and posterolateral tibial plateau fractures, compared with the traditional double plate fixation system. However, the excessive shear stress around screw holes should be paid attention to prevent trabecular microfracture and screw loosening.

摘要

目的

涉及内侧和后外侧柱的复杂胫骨平台骨折在临床上较为常见,但现有的固定系统不能同时处理内侧和后外侧骨折块。因此,本研究设计了一种新型锁定支撑板,命名为内侧和后柱板(MPCP),用于固定同时发生的内侧和后外侧胫骨平台骨折。同时,进行了比较有限元分析(FEA),以研究 MPCP 和传统多板(MP+PLP)在生物力学特性方面的差异。

方法

构建了分别采用 MPCP 和 MP+PLP 系统固定的同时发生的内侧和后外侧胫骨平台骨折的两个三维有限元模型。为了模拟膝关节在日常生活中的轴向应力,在两个固定模型中分别施加了 100、500、1000 和 1500 N 的不同轴向力,然后获得了等效位移和应力等效应力图和值。

结果

在两种固定模型中,观察到位移和应力随载荷增加的相似趋势。然而,在两种固定模型中发现了一些位移和应力分布的不均匀性。MPCP 固定模型中的板、螺钉和骨折块的最大位移和 von Mises 应力值明显小于 MP+PLP 固定模型,除了最大剪应力值。

结论

作为一种单一的锁定支撑板,MPCP 系统在改善同时发生的内侧和后外侧胫骨平台骨折的稳定性方面表现出优异的效果,与传统的双板固定系统相比。然而,应该注意螺钉孔周围过大的剪切应力,以防止小梁微骨折和螺钉松动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95a7/10102290/8ea1b69a97cf/OS-15-1104-g008.jpg

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