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骨折固定板的实验测试:综述。

Experimental testing of fracture fixation plates: A review.

机构信息

Aston Institute of Materials Research (AIMR), Aston University, Birmingham, UK.

Invibio Biomaterial Solutions Limited, Hillhouse International, Thornton-Cleveleys, UK.

出版信息

Proc Inst Mech Eng H. 2022 Sep;236(9):1253-1272. doi: 10.1177/09544119221108540. Epub 2022 Aug 3.

Abstract

Metal and its alloys have been predominantly used in fracture fixation for centuries, but new materials such as composites and polymers have begun to see clinical use for fracture fixation during the past couple of decades. Along with the emerging of new materials, tribological issues, especially debris, have become a growing concern for fracture fixation plates. This article for the first time systematically reviews the most recent biomechanical research, with a focus on experimental testing, of those plates within ScienceDirect and PubMed databases. Based on the search criteria, a total of 5449 papers were retrieved, which were then further filtered to exclude nonrelevant, duplicate or non-accessible full article papers. In the end, a total of 83 papers were reviewed. In experimental testing plates, screws and simulated bones or cadaver bones are employed to build a fixation construct in order to test the strength and stability of different plate and screw configurations. The test set-up conditions and conclusions are well documented and summarised here, including fracture gap size, types of bones deployed, as well as the applied load, test speed and test ending criteria. However, research on long term plate usage was very limited. It is also discovered that there is very limited experimental research around the tribological behaviour particularly on the debris' generation, collection and characterisation. In addition, there is no identified standard studying debris of fracture fixation plate. Therefore, the authors suggested the generation of a suite of tribological testing standards on fracture fixation plate and screws in the aim to answer key questions around the debris from fracture fixation plate of new materials or new design and ultimately to provide an insight on how to reduce the risks of debris-related osteolysis, inflammation and aseptic loosening.

摘要

金属及其合金在骨折固定中已经使用了几个世纪,但在过去几十年中,复合材料和聚合物等新材料开始用于骨折固定。随着新材料的出现,摩擦学问题,特别是磨屑,已成为骨折固定板越来越关注的问题。本文首次系统地综述了 ScienceDirect 和 PubMed 数据库中关于这些钢板的最新生物力学研究,重点是实验测试。根据搜索标准,共检索到 5449 篇论文,然后进一步筛选排除不相关、重复或无法获取全文的论文。最后,共综述了 83 篇论文。在实验测试中,使用钢板、螺钉和模拟骨或尸体骨构建固定结构,以测试不同钢板和螺钉配置的强度和稳定性。测试设置条件和结论在这里都有很好的记录和总结,包括骨折间隙大小、使用的骨骼类型以及施加的载荷、测试速度和测试结束标准。然而,关于钢板长期使用的研究非常有限。研究还发现,关于摩擦学行为,特别是磨屑的产生、收集和特性,实验研究非常有限。此外,目前还没有确定的标准来研究骨折固定钢板的磨屑。因此,作者建议制定一套关于骨折固定钢板和螺钉的摩擦学测试标准,以回答有关新材料或新设计的骨折固定板磨屑的关键问题,并最终深入了解如何降低与磨屑相关的骨溶解、炎症和无菌性松动的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1859/9449446/216a9b8a9684/10.1177_09544119221108540-fig1.jpg

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