首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Enhanced image reconstruction of three-dimensional fluorescent assays by subtractive structured-light illumination microscopy
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Enhanced image reconstruction of three-dimensional fluorescent assays by subtractive structured-light illumination microscopy

机译:减法结构光照明显微镜增强三维荧光测定法的图像重建

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摘要

We investigate improved image reconstruction of structured light illumination for high-resolution imaging of three-dimensional (3D) cell-based assays. For proof of concept, an in situ fluorescence optical detection system was built with a digital micromirror device as a spatial light modulator, for which phase and tilting angle in a grid pattern were varied to implement specific image reconstruction schemes. Subtractive reconstruction algorithms based on structured light illumination were used to acquire images of fluorescent microbeads deposited as a two-dimensional monolayer or in 3D alginate matrix. We have confirmed that an optical subtraction algorithm improves axial and lateral resolution by effectively removing out-of-focus fluorescence. The results suggest that subtractive image reconstruction can be useful for structured illumination microscopy of broad types of cell-based assays with high image resolution.
机译:我们研究基于三维(3D)细胞的分析的高分辨率成像的结构化光照明的改进的图像重建。为了进行概念验证,使用数字微镜设备作为空间光调制器构建了原位荧光光学检测系统,为此,可以改变网格图案中的相位和倾斜角度以实现特定的图像重建方案。使用基于结构化光照的减法重建算法来获取沉积为二维单层或3D海藻酸盐基质的荧光微珠图像。我们已经证实,光学减法算法可以通过有效地消除离焦荧光来提高轴向和横向分辨率。结果表明,减影图像重建可用于具有高图像分辨率的多种类型的基于细胞的测定的结构化照明显微镜。

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