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基于二次曲线拟合的共焦拉曼光谱法

[Confocal Raman Spectroscopy Method Based on Quadratic Curve Fitting].

作者信息

Cui Han, Wang Yun, Qiu Li-rong, Zhao Wei-qian, Zhu Ke

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2016 Dec;36(12):3958-62.

Abstract

Raman spectroscopy plays an improtant role in analytical science because of its unique characteristics, such as non-contact and non-destructive detecting, fewer sample consumption, high sensitivity and other characteristics, and it provides a powerful analytical tool for the modern basic research fields. Because of the combination of confocal microscopy technology and Raman spectroscopy technology, confocal Raman microscopy has the advantage of both high resolution spectroscopy and chromatography detection, which inherits from confocal microscopy and raman spectroscopy. As a result, it is widely used in many fields, such as physical chemistry, materials science, biomedical, archaeological, cultural identification, and forensic science. But with the environmental changing, the system drifting or other issues, during the long detection process, the system turns to defocusing. As a result, during the hole scanning process, the system can not be focused on every detection point, and then it would lead to a mistake. Eventurally, conventional confocal Raman system could obtain the presence of measurement error even erroneous results in the long process. In this paper, on the basis of conventional confocal Raman system, a confocal Raman spectroscopy method based on quadratic curve fitting is proposed to solve this problem. Based on the principle that the maxium of the concal curve corresponding the system foucs, the steps to find system foucus as follows: fist, usesing quadratic curve to fit confocal curve; second, finding the maxium of the confocal curve; and last obtaining the system foucs. With this method, during the scanning process, every point should be focused, therefore, the effect of defocusing is eliminated efficiently, and accurate measurements of confocal Raman spectroscopy system is achieved. Through simulation and experimental results show that: the proposed method that confocal Raman spectroscopy method based on quadratic curve fitting can effectively eliminate the influence of system defocus on experimental result, and effectively improve the axial system of fixed focus accuracy, which could provide a guarantee for further application of confocal Raman spectroscopy. This anti-drift method is effective and accurate in focusing with great potential to be applied in broader areas.

摘要

拉曼光谱因其独特的特性,如非接触、非破坏性检测、样品消耗少、灵敏度高等,在分析科学中发挥着重要作用,为现代基础研究领域提供了强大的分析工具。由于共聚焦显微镜技术与拉曼光谱技术的结合,共聚焦拉曼显微镜兼具高分辨率光谱和色谱检测的优势,继承了共聚焦显微镜和拉曼光谱的优点。因此,它被广泛应用于许多领域,如物理化学、材料科学、生物医学、考古学、文化鉴定和法医学等。但随着环境变化、系统漂移等问题,在长时间检测过程中,系统会出现失焦现象。结果,在孔扫描过程中,系统无法聚焦于每个检测点,进而导致错误。最终,传统的共聚焦拉曼系统在长时间过程中可能会出现测量误差甚至错误结果。本文在传统共聚焦拉曼系统的基础上,提出了一种基于二次曲线拟合的共聚焦拉曼光谱方法来解决这一问题。基于凹曲线最大值对应系统焦点的原理,寻找系统焦点的步骤如下:首先,用二次曲线拟合共聚焦曲线;其次,找到共聚焦曲线的最大值;最后获得系统焦点。采用该方法,在扫描过程中,每个点都能聚焦,从而有效消除了失焦的影响,实现了共聚焦拉曼光谱系统的准确测量。通过仿真和实验结果表明:所提出的基于二次曲线拟合的共聚焦拉曼光谱方法能有效消除系统失焦对实验结果的影响,有效提高系统轴向定焦精度,为共聚焦拉曼光谱的进一步应用提供了保障。这种抗漂移方法在聚焦方面有效且准确,具有在更广泛领域应用的巨大潜力。

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