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Two-dimensional biosensor arrays based on surface plasmon resonance phase imaging

机译:基于表面等离子体共振相成像的二维生物传感器阵列

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We present a biosensor design based on capturing the two-dimenstional (2D) phase image of surface plasmon resonance (SPR). This 2D SPR imaging technique may enable parallel label-free detection of multiple analytes and is compatible with the microarray chip platform. This system uses our previously reported differential phase measurement approach, in which 2D phase maps obtained from the signal (P) and reference (S) polarizations are compared pixel by pixel. This technique greatly improves detection resolution as the subtraction step can eliminate measurement fluctuations caused by external disturbances as they essentially appear in both channels. Unlike conventional angular SPR systems, in which illumination from a range of angles must be used, phase measurement requires illumination from only one angle, thus making it well suited for 2D measurement. Also, phase-stepping introduced from a moving mirror provides the necessary modulation for accurate detection of the phase. In light of the rapidly increasing need for fast real-time detection, quantification, and identification of a range of proteins for various biomedical applications, our 2D SPR phase imaging technique should hold a promising future in the medical device market.
机译:我们提出了一种基于捕获表面等离子体共振(SPR)的二维(2D)相图像的生物传感器设计。这种2D SPR成像技术可以实现多种分析物的并行无标签检测,并且与微阵列芯片平台兼容。该系统使用我们先前报告的差分相位测量方法,其中将从信号(P)和参考(S)极化获得的2D相位图逐像素进行比较。该技术极大地提高了检测分辨率,因为减法步骤可以消除由外部干扰引起的测量波动,因为它们主要出现在两个通道中。与传统的角度SPR系统不同,在传统的角度SPR系统中必须使用一定角度的照明,而相位测量仅需要一个角度的照明,因此非常适合2D测量。另外,从移动镜引入的相位步进为准确检测相位提供了必要的调制。鉴于快速实时检测,定量和鉴定各种生物医学应用所需蛋白质的快速增长的需求,我们的2D SPR相位成像技术应在医疗设备市场上拥有广阔的前景。

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