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评估钛6铝4钒掌侧钢板在桡骨远端骨折患者中的生物力学性能。

Evaluating the biomechanical performance of Ti6Al4V volar plates in patients with distal radius fractures.

作者信息

Li Hua, Wang Daofeng, Zhang Wupeng, Xu Cheng, Xiong Dou, Li Jiantao, Zhang Licheng, Tang Peifu

机构信息

Senior Department of Orthopedics, The Fourth Medical Center of Chinese PLA General Hospital, Beijing, China.

National Clinical Research Center for Orthopedics, Sports Medicine and Rehabilitation, Beijing, China.

出版信息

Front Bioeng Biotechnol. 2023 Feb 27;11:1141790. doi: 10.3389/fbioe.2023.1141790. eCollection 2023.

Abstract

This study aimed to investigate the biomechanical performance of three Ti6Al4V volar plates with the latest designs using a finite element model. An AO type 23-A3 distal radius fracture and the models of T plate (2.4 mm LCP Volar Distal Radius Plate), V plate (2.4 mm LCP Two-Column Volar Distal Radius Plate) and Plate (2.4 mm Volar Rim Distal Radius Plate) (all from Depuy Synthes, West Chester, PA, USA, Ti6Al4V) were built in 3D-matic software. After assembling the internal fixation and fractures, we imported these models into the finite element analysis software (ABAQUS). An axial loading of 100 N was added to the distal end of each model. The displacements of total models and implants, the principal strains and the von Mises stresses in the plates were calculated and compared to capture the biomechanical features of the three plates. The T plate, V plate and plate represented a model displacement of 0.8414 mm, 1.134 mm and 1.936 mm, respectively. The T plate was with the implant displacement of 0.7576 mm, followed by the V plate (0.8802 mm) and the plate (1.545 mm). The T plate had the smallest principal strain of 0.23%, the V plate showed an intermediate level of 0.28%, and the plate had a value of 0.72%. The least peak von Mises stress was observed in the V plate with 263.6MPa, and this value was 435.6 MPa and 1050 MPa in the T plate and plate, respectively. The biomechanical features of three Ti6Al4V volar locking plates in an AO type 23-A3 fracture were described in our analysis. The T plate and the V plate showed similar biomechanical performance while the plate represented worse performance than the other two plates.

摘要

本研究旨在使用有限元模型研究三种采用最新设计的钛合金(Ti6Al4V)掌侧钢板的生物力学性能。在3D-matic软件中构建了AO 23-A3型桡骨远端骨折模型以及T型钢板(2.4毫米锁定加压接骨板掌侧桡骨远端钢板)、V型钢板(2.4毫米锁定加压接骨板双柱掌侧桡骨远端钢板)和另一种钢板(2.4毫米掌侧边缘桡骨远端钢板)(均来自美国宾夕法尼亚州韦斯特切斯特的Depuy Synthes公司,材质为Ti6Al4V)的模型。在组装内固定装置和骨折模型后,将这些模型导入有限元分析软件(ABAQUS)。在每个模型的远端施加100 N的轴向载荷。计算并比较整个模型和植入物的位移、主应变以及钢板中的von Mises应力,以获取三种钢板的生物力学特征。T型钢板、V型钢板和另一种钢板的模型位移分别为0.8414毫米、1.134毫米和1.936毫米。T型钢板的植入物位移为0.7576毫米,其次是V型钢板(0.8802毫米)和另一种钢板(1.545毫米)。T型钢板的主应变最小,为0.23%,V型钢板处于中间水平,为0.28%,另一种钢板的值为0.72%。V型钢板的von Mises应力峰值最小,为263.6兆帕,T型钢板和另一种钢板的该值分别为435.6兆帕和1050兆帕。我们的分析描述了三种Ti6Al4V掌侧锁定钢板在AO 23-A3型骨折中的生物力学特征。T型钢板和V型钢板表现出相似的生物力学性能,而另一种钢板的性能比其他两种钢板差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9503/10009098/b0e1bfb7b67d/fbioe-11-1141790-g001.jpg

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