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An Improved Optical Lock-In Detection Method for Contrast-Enhanced Imaging in Living Cells

机译:一种改进的光学锁定检测方法,用于活细胞对比增强成像

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Synthetic and genetically encoded optical switch probes and lock-in detection methods provide a means to modulate and isolate fluorescence signals from the optical switch and protein complexes of interest against un-modulated background sources. In this paper we propose an improved method for optical lock-in detection (OLID) fluorescence microscopy that can significantly enhance image contrast of optical switch probes within living cells. In particular, we introduce a method for automatic and optimal determination of the reference waveform, which is consequently used for the correlation analysis and construction of the contrast-enhanced image. The method involves computing the average scope of each pixel in the image over several switching cycles and then selecting the pixel with maximum scope as a reference point. The correlation between the fluorescence emission of each pixel over the switching cycles and the reference waveform is then computed. Finally a new contrast-enhanced image is constructed based on the scope-weighted correlation value. Our results of analysis show that this method and algorithm can remarkably improve contrast enhancement and noise reduction compared to the original method.
机译:合成和遗传编码的光学开关探针和锁定检测方法提供了调节和分离来自光学开关和蛋白质复合物对未调制的背景源的荧光信号的方法。本文提出了一种改进的光学锁定检测方法(OLID)荧光显微镜,可显着增强活细胞内光学开关探针的图像对比度。特别地,我们介绍了一种用于自动和最佳确定参考波形的方法,从而用于对比度增强图像的相关分析和构造。该方法涉及在若干切换周期中计算图像中每个像素的平均范围,然后选择具有最大范围的像素作为参考点。然后计算在切换周期和参考波形上的每个像素之间的荧光发射与参考波形之间的相关性。最后,基于范围加权相关值构建新的对比度增强图像。我们的分析结果表明,与原始方法相比,该方法和算法可以显着提高对比度增强和降噪。

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