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Ultrahigh Resolution Multicolor Colocalization of Single Fluorescent Nanocrystals

机译:单荧光纳米晶体的超高分辨率多色分层

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A new method for in vitro and possibly in vivo ultrahigh-resolution colocalization and distance measurement between biomolecules is described, based on semiconductor nanocrystal probes. This ruler bridges the gap between FRET and far-field (or near-field scanning optical microscope) imaging and has a dynamic range from few nanometers to tens of micrometers. The ruler is based on a stage-scanning confocal microscope that allows the simultaneous excitation and localization of the excitation point-spread-function (PSF) of various colors nanocrystals while maintaining perfect registry between the channels. Fit of the observed diffraction and photophysics-limited images of the PSFs with a two-dimensional Gaussian allows one to determine their position with nanometer accuracy. This new high-resolution tool opens new windows in various molecular, cell biology and biotechnology applications.
机译:基于半导体纳米晶体探针,描述了一种新的体外方法和可能在体内超高分辨率分层和生物分子之间的距离测量。该统治者桥梁桥接FRET和远场(或近场扫描光学显微镜)成像的间隙,并且动态范围从少数纳米到数十微米。尺子基于舞台扫描共聚焦显微镜,其允许各种颜色纳米晶体的激发点扩散功能(PSF)的同时激励和定位,同时保持通道之间的完美注册表。观察到的衍射和光物理学的适合与二维高斯的PSF的图像有限允许一个人以纳米精度确定它们的位置。这种新的高分辨率工具在各种分子,细胞生物学和生物技术应用中打开新窗口。

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