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Theoretical Study of Optical Fiber-based SPR Sensors Application for Colorectal Cancer Diagnosis Through Histological Analysis

机译:基于组织学分析的基于光纤的SPR传感器在大肠癌诊断中的理论研究

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An optical fiber-based surface plasmon resonance sensor for colorectal cancer diagnosis is presented here. A theoretical analysis is performed, where parameters such as length of the sensing region, full width at half maximum, figure of merit, and signal-to-noise ratio are investigated for three different biochip configurations. Regarding the coating, we analyzed silver, gold and copper thin films. A multimode plastic optical fiber has been used as an optical substrate, where the sensing region (i) is localized at the center of the optical fiber, (ii) is polished as a D-shaped format, or (iii) is localized at one of the fiber tips. Among the thin metal films, silver provides the higher sensitivity of 5,742 nm/RIU for a 40 nm-thick thin film. The simulated results show that values of 59.81 nm, 195.99 RIU−1, and 0.33 a.u. for the full witdh at half maximum, figure of merit, and signal to noise ratio, respectively, can be achieved for the conventional biochip.
机译:这里介绍了一种用于结直肠癌诊断的基于光纤的表面等离子体共振传感器。进行理论分析,其中三种不同的Biochip配置研究了感测区域长度,半最大值,优异的宽度和信噪比的参数。关于涂层,我们分析了银,金和铜薄膜。多模塑料光纤已用作光学基板,其中感测区域(I)在光纤的中心定位,(II)作为D形格式抛光,或者(III)局部抛光纤维提示。在薄金属膜中,银提供40nm厚的薄膜的5,742nm / Riu的较高灵敏度。模拟结果表明,59.81纳米,195.99 riu的值 -1 ,0.33 a.u.对于常规生物芯片,分别可以实现对半最大值的全部Witdh,并且分别是信号与信噪比。

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