表面等离子体共振生物传感中信号处理链的评价

T. A. T. Sousa, L. Oliveira, F. Loureiro, A. Lima, H. Neff
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引用次数: 9

摘要

基于表面等离子体共振现象的光学生物传感器是目前最精确、最灵敏的无标签生物传感器。然而,这种高灵敏度的SPR生物传感器系统有一个副作用:对噪声的高灵敏度存在于整个系统。环境温度、元件的位置、光路中的杂质、光电探测器仪器,这些都是噪声源,会降低信号中存在的信息。在提取感兴趣参数之前对该信号进行预处理,甚至使用提取这些参数的技术都可以最大限度地减少噪声的退化影响。本文提出了一项研究,以确定最能减少噪声退化的最佳技术。技术的组合可以改善结果,或者只是增加复杂性,而不增加噪声消除。技术序列的影响也会影响结果,这是确定最佳序列所必需的。同样,为了将技术参数调整到最佳状态,未调优可能会保留可被去除的噪声或与噪声一起消除宝贵信息,从而使信号退化。本文还旨在确定用于参数提取的最佳技术组合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating the signal processing chain employed in surface plasmon resonance biosensing
The optical biosensor based on the Surface Plasmon Resonance phenomenon is, today, the most accurate and sensible label free biosensor. However, this high sensitivity of the SPR biosensor systems has a side effect: a high sensitivity to noise present all over the system. The ambient temperature, the position of the components, the impurities in the light path, the photo detector instrumentation, are all noise sources that can degrade the information present in the signal. Preprocessing this signal before extracting the interest parameters and even the techniques used to extract these parameters can minimize the degradation effect of the noise. This paper proposes a study to determine the best techniques to be applied that most reduces the noise degradation. A combination of techniques can improve the results or just increase the complexity with no gain in noise elimination. An influence in the techniques sequence has also influenced the result, being necessary to determine the best sequence. Also to tune the technique parameters to the optimal, a miss tuning may preserve noise that can be removed or can eliminate precious information with the noise, degenerating the signal. The paper also aims at determining the best technique combination to be applied in parameter extraction.
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