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A rapid and effective vignetting correction for quantitative microscopy

机译:快速有效的渐晕校正,用于定量显微镜

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摘要

Images acquired using optical microscopes are inherently subject to vignetting effects due to imperfect illumination and image acquisition. However, such vignetting effects hamper accurate extraction of quantitative information from biological images, leading to less effective image segmentation and increased noise in the measurements. Here, we describe a rapid and effective method for vignetting correction, which generates an estimate for a correction function from the background fluorescence without the need to acquire additional calibration images. We validate the usefulness of this algorithm using artificially distorted images as a gold standard for assessing the accuracy of the applied correction and then demonstrate that this correction method enables the reliable detection of biologically relevant variation in cell populations. A simple user interface called FlattifY was developed and integrated into the image analysis platform YeastQuant to facilitate easy application of vignetting correction to a wide range of images.
机译:由于照明和图像采集不完善,使用光学显微镜采集的图像固有地会受到渐晕效果的影响。但是,这种渐晕效果妨碍了从生物图像中准确提取定量信息,从而导致图像分割效果降低,并且测量中的噪声增加。在这里,我们描述了一种用于渐晕校正的快速有效的方法,该方法可从背景荧光生成校正函数的估计,而无需获取其他校准图像。我们使用人工失真的图像作为金标准来验证该算法的有效性,以评估所应用校正的准确性,然后证明该校正方法能够可靠地检测细胞群体中生物学相关的变化。开发了一个名为FlattifY的简单用户界面,并将其集成到图像分析平台YeastQuant中,以方便将渐晕校正轻松应用于各种图像。

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