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Nano-particle doped hydroxyapatite material evaluation using Spectroscopic Polarization Sensitive Optical Coherence Tomography

机译:纳米粒子掺杂羟基磷灰石材料评价使用光谱偏振敏感光学相干断层扫描

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Bio-ceramics such as hydroxyapatite (HAp) are widely used materials in medical applications, especially as an interface between implants and living tissues. There are many ways of creating structures from HAp like electrochemical assisted deposition, biomimetic, electrophoresis, pulsed laser deposition or sol-gel processing. Our research is based on analyzing the parameters of the sol-gel method for creating thin layers of HAp. In order to achieve this, we propose to use Optical Coherence Tomography (OCT) for non-destructive and non-invasive evaluation. Our system works in the IR spectrum range, which is helpful due to the wide range of nanocomposites being opaque in the VIS range. In order to use our method we need to measure two samples, one which is a reference HAp solution and second: a similar HAp solution with nanoparticles introduced inside. We use silver nanoparticles below 300 nm. The aim of this research is to analyze the concentration and dispersion of nanodopants in the bio-ceramic matrix. Furthermore, the quality of the HAp coating and deposition process repetition have been monitored. For this purpose the polarization sensitive OCT with additional spectroscopic analysis is being investigated. Despite the other methods, which are suitable for nanocomposite materials evaluation, the OCT with additional features seems to be one of the few which belong to the NDE/NDT group. Here we are presenting the OCT system for evaluation of the HAp with nano-particles, as well as HAp manufacturing process. A brief discussion on the usefulness of OCT for bio-ceramics materials examination is also being presented.
机译:生物陶瓷如羟基磷灰石(HAP)是广泛使用的医疗应用中的材料,特别是作为植入物和活组织之间的界面。从电化学辅助沉积,仿生电泳,脉冲激光沉积或溶胶 - 凝胶加工有很多方法可以从HAP创造结构。我们的研究是基于分析溶胶 - 凝胶方法的参数来创建薄层HAP。为了实现这一目标,我们建议使用光学相干断层扫描(OCT)来进行非破坏性和非侵入性评估。我们的系统在IR光谱范围内工作,这是有用的,因为在VIS范围内是不透明的纳米复合材料。为了使用我们的方法,我们需要测量两个样本,一个是参考HAP解决方案的样本,第二个样本:纳米颗粒引入类似的HAP溶液。我们使用低于300nm的银纳米粒子。该研究的目的是分析纳米液体在生物陶瓷基质中的浓度和分散。此外,已经监测了Hap涂层和沉积过程重复的质量。为此目的,正在研究具有附加光谱分析的偏振敏感OCT。尽管其他方法适用于纳米复合材料评价,但具有额外特征的OCT似乎是少数属于NDE / NDT组的方法之一。在这里,我们正在介绍OCT系统,用于使用纳米粒子的HAP和Hap制造过程评估。简要介绍了对生物陶瓷材料考试的OCT的有用性。

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