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碳纤维增强聚醚醚酮缝合锚钉的自攻能力。

Self-tapping ability of carbon fibre reinforced polyetheretherketone suture anchors.

作者信息

Feerick Emer M, Wilson Joanne, Jarman-Smith Marcus, Ó'Brádaigh Conchur M, McGarry J Patrick

机构信息

Department of Mechanical and Biomedical Engineering, National University of Ireland Galway, Ireland

Invibio Biomaterials Solutions, Technology Centre-Hillhouse International, Thornton Cleveleys, Lancashire, United Kingdom.

出版信息

J Biomater Appl. 2014 Oct;29(4):502-13. doi: 10.1177/0885328214535274. Epub 2014 May 12.

Abstract

An experimental and computational investigation of the self-tapping ability of carbon fibre reinforced polyetheretherketone (CFR-PEEK) has been conducted. Six CFR-PEEK suture anchor designs were investigated using PEEK-OPTIMA® Reinforced, a medical grade of CFR-PEEK. Experimental tests were conducted to investigate the maximum axial force and torque required for self-taping insertion of each anchor design. Additional experimental tests were conducted for some anchor designs using pilot holes. Computational simulations were conducted to determine the maximum stress in each anchor design at various stages of insertion. Simulations also were performed to investigate the effect of wall thickness in the anchor head. The maximum axial force required to insert a self-tapping CFR-PEEK suture anchor did not exceed 150 N for any anchor design. The maximum torque required to insert a self-tapping CFR-PEEK suture anchor did not exceed 0.8 Nm. Computational simulations reveal significant stress concentrations in the region of the anchor tip, demonstrating that a re-design of the tip geometry should be performed to avoid fracture during self-tapping, as observed in the experimental component of this study. This study demonstrates the ability of PEEK-OPTIMA Reinforced suture anchors to self-tap polyurethane foam bone analogue. This provides motivation to further investigate the self-tapping ability of CFR-PEEK suture anchors in animal/cadaveric bone. An optimised design for CFR-PEEK suture anchors offers the advantages of radiolucency, and mechanical properties similar to bone with the ability to self-tap. This may have positive implications for reducing surgery times and the associated costs with the procedure.

摘要

对碳纤维增强聚醚醚酮(CFR-PEEK)的自攻能力进行了实验和计算研究。使用医用级CFR-PEEK材料PEEK-OPTIMA® Reinforced对六种CFR-PEEK缝合锚钉设计进行了研究。进行实验测试以研究每种锚钉设计自攻插入所需的最大轴向力和扭矩。对一些带有导向孔的锚钉设计进行了额外的实验测试。进行计算模拟以确定每种锚钉设计在插入不同阶段的最大应力。还进行了模拟以研究锚头壁厚的影响。对于任何锚钉设计,插入自攻式CFR-PEEK缝合锚钉所需的最大轴向力均未超过150 N。插入自攻式CFR-PEEK缝合锚钉所需的最大扭矩未超过0.8 Nm。计算模拟显示在锚钉尖端区域存在明显的应力集中,表明应重新设计尖端几何形状以避免在自攻过程中发生断裂,正如本研究的实验部分所观察到的那样。本研究证明了PEEK-OPTIMA Reinforced缝合锚钉自攻聚氨酯泡沫骨模拟物的能力。这为进一步研究CFR-PEEK缝合锚钉在动物/尸体骨中的自攻能力提供了动力。CFR-PEEK缝合锚钉的优化设计具有射线可透性以及与骨相似的机械性能且具备自攻能力等优点。这可能对减少手术时间和该手术的相关成本具有积极意义。

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