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High Resolution Quantitative Angle-Scanning Widefield Surface Plasmon Microscopy

机译:高分辨率定量角扫描宽视场等离子显微镜

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摘要

We describe the construction of a prismless widefield surface plasmon microscope; this has been applied to imaging of the interactions of protein and antibodies in aqueous media. The illumination angle of spatially incoherent diffuse laser illumination was controlled with an amplitude spatial light modulator placed in a conjugate back focal plane to allow dynamic control of the illumination angle. Quantitative surface plasmon microscopy images with high spatial resolution were acquired by post-processing a series of images obtained as a function of illumination angle. Experimental results are presented showing spatially and temporally resolved binding of a protein to a ligand. We also show theoretical results calculated by vector diffraction theory that accurately predict the response of the microscope on a spatially varying sample thus allowing proper quantification and interpretation of the experimental results.
机译:我们描述了无棱镜宽场表面等离子体激元显微镜的构造。该技术已用于成像水介质中蛋白质和抗体之间的相互作用。用放置在共轭后焦平面中的幅度空间光调制器控制空间非相干漫射激光照明的照明角度,以动态控制照明角度。通过对一系列根据照明角度获得的图像进行后处理,可以获得具有高空间分辨率的定量表面等离子体激元显微镜图像。呈现的实验结果显示了蛋白质在空间和时间上分辨的与配体的结合。我们还显示了通过矢量衍射理论计算的理论结果,该理论结果可以准确预测显微镜对空间变化的样品的响应,从而可以对实验结果进行正确的量化和解释。

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