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用于高灵敏度微观表面等离子体共振生物传感器的相移技术

Phase-stepping technique for highly sensitive microscopic surface plasmon resonance biosensor.

作者信息

Zhang Chonglei, Wang Rong, Wang Yijia, Zhu Siwei, Min Changjun, Yuan X-C

出版信息

Appl Opt. 2014 Feb 10;53(5):836-40. doi: 10.1364/AO.53.000836.

Abstract

In this paper, the phase-stepping technique is applied to improve a phase-sensitive surface plasmon resonance biosensor based on differential interferometry between focused radially polarized and azimuthally polarized cylindrical vector beams. Detailed analysis is presented for the phase-stepping method, and the least squares unwrapping algorithm is employed to detect the phase distribution in correspondence to the refractive index of sample. Benefiting from the phase-stepping technique, both the measurement speed and sensitivity are improved significantly. The proposed sensor maintains high sensitivity of 9.4×10  RIU/1° and a wide dynamic range of 0.35 RIU simultaneously. Furthermore, the real-time binding reaction process of bovine serum albumin with antibody is monitored to verify the system for potential biological applications.

摘要

本文应用相移技术对基于聚焦径向偏振和角向偏振柱面矢量光束间差分干涉术的相敏表面等离子体共振生物传感器进行改进。对相移方法进行了详细分析,并采用最小二乘解缠算法来检测与样品折射率相对应的相位分布。受益于相移技术,测量速度和灵敏度均得到显著提高。所提出的传感器同时保持了9.4×10 RIU/1°的高灵敏度和0.35 RIU的宽动态范围。此外,监测了牛血清白蛋白与抗体的实时结合反应过程,以验证该系统在潜在生物应用方面的性能。

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