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组合孔锁定加压钢板在骨折愈合过程中的生物力学分析:螺钉构型的数值研究。

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

机构信息

School of Engineering, Cardiff University, Cardiff, UK.

School of Engineering, University of Birmingham, Birmingham, UK.

出版信息

Proc Inst Mech Eng H. 2024 Mar;238(3):313-323. doi: 10.1177/09544119241229157. Epub 2024 Feb 19.

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 ( < 0.001), while screw number or position had no significant impact ( > 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,  ≤ 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.

摘要

锁定加压钢板 (LCP) 已成为治疗股骨骨折的常用选择。然而,带有 combi 孔的最佳螺钉配置仍然存在争议。本研究旨在创建一个时变有限元 (FE) 模型,以评估不同螺钉配置对 LCP 固定刚度和愈合效率的影响,跨越完整骨折愈合过程中的四个愈合阶段。为了模拟愈合过程,我们将时变骨痂形成机制集成到带有 combi 孔的 LCP 的 FE 模型中。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( < 0.001),而螺钉数量或位置没有显著影响( > 0.01)。时变模型与传统的时不变模型在轴向刚度和愈合效率方面具有中度相关性(ρ ≥ 0.733,  ≤ 0.025)。在 4-8 周期间,螺钉配置 C125 观察到最高的愈合效率(95.2%)。结果为使用带有 combi 孔的 LCP 管理骨折提供了更长期的见解。在轴向压缩载荷条件下,在横向骨折的 4-12 周期间,使用 C125 螺钉配置可以增强骨痂形成。当使用 C12345 配置时,在 4-8 周期间避免过度约束变得至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23f3/10941711/372e55021362/10.1177_09544119241229157-fig1.jpg

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