A New Test Method for in vitro Evaluation of Pedicle Screw Loosening Potential

IF 0.8 4区 医学 Q4 ENGINEERING, BIOMEDICAL
O. Pinto, Isabel Flesch Laforce, Dimitra Vlaskou Badra, C. Roesler
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引用次数: 0

Abstract

This paper proposes a new testing method based on the toggle effect under transverse loads (cranial-caudal) to investigate the loosening potential of pedicular screw designs. A three-step in vitro testing procedure was developed to mimic the loosening mechanism of pedicular screws. Firstly, the pedicular screw of a certain design is inserted into a bone substitute model specifically designed for the test. Secondly, a controlled cyclic cranial-caudal loading is applied transversally to the longitudinal axis of the screw for three ascendent load levels (staircase) by a pre-determined number of load cycles. Lastly, each pedicular screw is adjusted and submitted to axial pull-out quasi-static testing. The results are used to calculate a loosening index that, together with statistical analysis, indicates the potential for loosening of the specific design evaluated. The proposed testing method effectively provides a simulated environment to evaluate the loosening potential of pedicular screw designs. The proposed loosening index calculation may be used to compare different pedicular screw designs. The proposed methodology was verified as a valuable tool to investigate the influence of the cranial-caudal loads on pedicular screw behavior. It offers a new alternative for use in pre-clinical studies on the loosening potential of pedicular screw designs.
一种新的体外评估椎弓根螺钉松动电位的试验方法
本文提出了一种基于横向载荷(头尾)下的肘节效应的新测试方法,以研究椎弓根螺钉设计的松动潜力。开发了一个三步体外测试程序来模拟椎弓根螺钉的松动机制。首先,将特定设计的椎弓根螺钉插入专门为测试设计的骨替代模型中。其次,通过预定数量的载荷循环,横向于螺钉的纵轴施加受控的循环头尾载荷,用于三个上升载荷水平(阶梯)。最后,对每个椎弓根螺钉进行调整,并进行轴向拔出准静态测试。结果用于计算松动指数,该指数与统计分析一起表明所评估的特定设计的松动潜力。所提出的测试方法有效地为评估椎弓根螺钉设计的松动潜力提供了一个模拟环境。所提出的松动指数计算可用于比较不同的椎弓根螺钉设计。所提出的方法被证明是研究头尾载荷对椎弓根螺钉行为影响的有价值的工具。它为临床前研究椎弓根螺钉设计的松动潜力提供了一种新的选择。
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来源期刊
CiteScore
1.80
自引率
11.10%
发文量
56
审稿时长
6-12 weeks
期刊介绍: The Journal of Medical Devices presents papers on medical devices that improve diagnostic, interventional and therapeutic treatments focusing on applied research and the development of new medical devices or instrumentation. It provides special coverage of novel devices that allow new surgical strategies, new methods of drug delivery, or possible reductions in the complexity, cost, or adverse results of health care. The Design Innovation category features papers focusing on novel devices, including papers with limited clinical or engineering results. The Medical Device News section provides coverage of advances, trends, and events.
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