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一种具有放射阻射性的聚乙烯的物理、化学和机械性能的特性描述。

Characterisation of the physical, chemical and mechanical properties of a radiopaque polyethylene.

机构信息

Department of Mechanical Engineering, University of Bath, Bath, UK.

出版信息

J Biomater Appl. 2020 Aug;35(2):215-223. doi: 10.1177/0885328220922809. Epub 2020 May 16.

DOI:10.1177/0885328220922809
PMID:32419587
Abstract

Ultra-high molecular weight polyethylene has a low X-ray attenuation, hence, the performance of the polyethylene implants used for joint replacements cannot be directly investigated using X-ray-based imaging techniques. In this study, the X-ray attenuation of polyethylene was increased by diffusing an FDA-approved oil-based contrast agent (Lipiodol ultra fluid) into the surface of the samples, and the suitability of this novel radiopaque ultra-high molecular weight polyethylene for clinical applications was examined. Different levels of radiopacity were created by controlling the diffusion parameters, and the level of radiopacity was quantified from computed tomography scans and reported in Hounsfield units. The physical, chemical and tensile properties of the radiopaque ultra-high molecular weight polyethylene were examined and compared to untreated and thermally treated controls. The results of this study confirmed that for the samples treated at 115°C or less the diffusion of the contrast agent did not significantly alter the crystallinity ( = 0.7) or melting point ( = 0.4) of the polyethylene. Concomitantly, the tensile properties were not significantly different from the control samples ( > 0.05 for all properties). In conclusion, the radiopaque ultra-high molecular weight polyethylene treated for less than 18 h at a temperature of 115°C or below is a promising candidate for joint replacement applications as it can be identified in a standard X-ray while retaining the tensile properties of clinically used radiolucent ultra-high molecular weight polyethylene.

摘要

超高分子量聚乙烯的 X 射线衰减率较低,因此,关节置换中使用的聚乙烯植入物的性能不能直接通过基于 X 射线的成像技术进行研究。在这项研究中,通过将 FDA 批准的油基造影剂(Lipiodol 超流体)扩散到样品表面,增加了聚乙烯的 X 射线衰减率,并研究了这种新型放射线可透超高分子量聚乙烯在临床应用中的适用性。通过控制扩散参数,可产生不同程度的放射线不透明度,并通过计算机断层扫描量化放射线不透明度,并以亨氏单位报告。研究了放射线可透超高分子量聚乙烯的物理、化学和拉伸性能,并与未经处理和热处理的对照品进行了比较。研究结果证实,对于在 115°C 或更低温度下处理的样品,造影剂的扩散不会显著改变聚乙烯的结晶度( = 0.7)或熔点( = 0.4)。同时,拉伸性能与对照样品没有显著差异(所有性能的 > 0.05)。总之,在 115°C 或以下温度下处理时间少于 18 小时的放射线可透超高分子量聚乙烯是关节置换应用的有前途的候选材料,因为它可以在标准 X 射线下被识别,同时保留临床使用的放射线不透明超高分子量聚乙烯的拉伸性能。

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Chemical stability of oil-infused polyethylene.
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