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Confocal total-internal-reflection fluorescence microscopy with a high-aperture parabolic mirror lens

机译:共焦全内反射荧光显微镜,带高孔径抛物面镜

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We present a theoretical study of a new total-internal-reflection fluorescence microscope for the detection of fluorescence at a water- glass interface. The system is designed for confocal imaging and spectroscopy of nanoparticles and single molecules. Focusing and fluorescence collection through standard glass coverslips is accomplished by a parabolic mirror lens. The large aperture of the element is used to excite fluorescence within the evanescent field of a diffraction-limited focus and to collect focal emission with high efficiency. Tight focusing and supercritical excitation reduce the detection volume for fluorescent analyte molecules well below that of an attoliter (10(-18) L), which can be advantageous for monitoring surface binding of single molecules without interference from fluorescence of the unbound bulk. Calculations of the electric fields in the focus region and simulated confocal imaging demonstrate the performance of the system. (C) 2003 Optical Society of America. [References: 23]
机译:我们介绍了一种新型的全内反射荧光显微镜用于水玻璃界面荧光检测的理论研究。该系统设计用于纳米颗粒和单分子的共聚焦成像和光谱分析。通过抛物面镜透镜可以通过标准的玻璃盖玻片进行聚焦和荧光收集。元件的大孔径用于激发衍射受限焦点的渐逝场内的荧光,并高效收集焦点发射。紧密聚焦和超临界激发使荧光分析物分子的检测体积大大低于attoliter(10(-18)L),这对于监控单个分子的表面结合而不受到未结合物质的荧光的干扰可能是有利的。聚焦区域中电场的计算和模拟共聚焦成像证明了该系统的性能。 (C)2003年美国眼镜学会。 [参考:23]

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