Biomechanical analysis of combi-hole locking compression plate during fracture healing: A numerical study of screw configuration.

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine Pub Date : 2024-03-01 Epub Date: 2024-02-19 DOI:10.1177/09544119241229157
Zeyang Li, Stuart Pollard, Gemma Smith, Subodh Deshmukh, Ziyun Ding
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Abstract

Locking compression plates (LCPs) have become a widely used option for treating femur bone fractures. However, the optimal screw configuration with combi-holes remains a subject of debate. The study aims to create a time-dependent finite element (FE) model to assess the impacts of different screw configurations on LCP fixation stiffness and healing efficiency across four healing stages during a complete fracture healing process. To simulate the healing process, we integrated a time-dependent callus formation mechanism into a FE model of the LCP with combi-holes. Three screw configuration parameters, namely working length, screw number, and screw position, were investigated. Increasing the working length negatively affected axial stiffness and healing efficiency (p < 0.001), while screw number or position had no significant impact (p > 0.01). The time-dependent model displayed a moderate correlation with the conventional time-independent model for axial stiffness and healing efficiency (ρ ≥ 0.733, p ≤ 0.025). The highest healing efficiency (95.2%) was observed in screw configuration C125 during the 4-8-week period. The results provide insights into managing fractures using LCPs with combi-holes over an extended duration. Under axial compressive loading conditions, the use of the C125 screw configuration can enhance callus formation during the 4-12-week period for transverse fractures. When employing the C12345 configuration, it becomes crucial to avoid overconstraint during the 4-8-week period.

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骨折愈合过程中组合孔锁定加压钢板的生物力学分析:螺钉配置的数值研究
锁定加压钢板(LCP)已成为治疗股骨骨折的广泛选择。然而,带组合孔的最佳螺钉配置仍是一个争论不休的话题。本研究旨在创建一个随时间变化的有限元(FE)模型,以评估在一个完整的骨折愈合过程中,不同螺钉配置在四个愈合阶段对 LCP 固定刚度和愈合效率的影响。为了模拟愈合过程,我们在带组合孔的 LCP FE 模型中集成了随时间变化的胼胝形成机制。我们研究了三个螺钉配置参数,即工作长度、螺钉数量和螺钉位置。增加工作长度会对轴向刚度和愈合效率产生负面影响(p p > 0.01)。在轴向刚度和愈合效率方面,时间相关模型与传统的时间无关模型显示出适度的相关性(ρ ≥ 0.733,p ≤ 0.025)。在 4-8 周期间,螺钉配置 C125 的愈合效率最高(95.2%)。这些结果为使用带组合孔的 LCP 长时间管理骨折提供了启示。在轴向压缩加载条件下,使用 C125 螺钉配置可在横向骨折的 4-12 周期间促进胼胝形成。在使用 C12345 配置时,关键是要避免在 4-8 周期间过度约束。
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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
122
审稿时长
6 months
期刊介绍: The Journal of Engineering in Medicine is an interdisciplinary journal encompassing all aspects of engineering in medicine. The Journal is a vital tool for maintaining an understanding of the newest techniques and research in medical engineering.
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