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体外氧化降解一种脊柱后路动态稳定装置。

In vitro oxidative degradation of a spinal posterior dynamic stabilization device.

机构信息

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

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Apr;106(3):1237-1244. doi: 10.1002/jbm.b.33913. Epub 2017 Jun 5.

Abstract

This study quantified the changes of the frequency-dependant viscoelastic properties of the BDyn (S14 Implants, Pessac, France) spinal posterior dynamic stabilization (PDS) device due to in vitro oxidation. Six polycarbonate urethane (PCU) rings and six silicone cushions were degraded using a 20% hydrogen peroxide/0.1 M cobalt (II) chloride hexahydrate, at 37°C, for 24 days. The viscoelastic properties of the individual components and the components assembled into the BDyn PDS device were determined using Dynamic Mechanical Analysis at frequencies from 0.01 to 30 Hz. Attenuated Total Reflectance Fourier Transform Infra-Red spectra demonstrated chemical structure changes, of the PCU, associated with oxidation while Scanning Electron Microscope images revealed surface pitting. No chemical structure or surface morphology changes were observed for the silicone cushion. The BDyn device storage and loss stiffness ranged between 84.46 N/mm to 99.36 N/mm and 8.13 N/mm to 21.99 N/mm, respectively. The storage and loss stiffness for the components and BDyn device increased logarithmically with respect to frequency. Viscoelastic properties, between normal and degraded components, were significantly different for specific frequencies only. This study demonstrates the importance of analyzing changes of viscoelastic properties of degraded biomaterials and medical devices into which they are incorporated, using a frequency sweep. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 1237-1244, 2018.

摘要

本研究定量分析了体外氧化对 BDyn(S14 implants,Pessac,法国)脊柱后路动态稳定系统(PDS)装置的频率相关黏弹特性的变化。将六个聚碳酸酯- 尿烷(PCU)环和六个硅树脂衬垫在 37°C 下用 20%双氧水/0.1M 六水合氯化钴(II)处理 24 天进行降解。使用动态力学分析(频率范围 0.01 至 30 Hz)测定了各组件和组装成 BDyn PDS 装置的组件的黏弹特性。衰减全反射傅里叶变换红外光谱显示与氧化相关的 PCU 的化学结构变化,而扫描电子显微镜图像则显示表面麻点。硅树脂衬垫未观察到化学结构或表面形貌变化。BDyn 装置的存储和损耗刚度分别在 84.46 N/mm 至 99.36 N/mm 和 8.13 N/mm 至 21.99 N/mm 之间。组件和 BDyn 装置的存储和损耗刚度随频率呈对数增加。仅在特定频率下,正常组件和降解组件之间的黏弹性能存在显著差异。本研究表明,使用频率扫描分析纳入降解生物材料和医疗器械的黏弹性能变化非常重要。 © 2017 Wiley Periodicals, Inc. J 生物材料研究杂志 B:应用生物材料,106B:1237-1244,2018。

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