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首页> 外文期刊>JEOS:RP >Multi-kernel deconvolution applied to confocal fluorescence microscopy with engineered point spread function
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Multi-kernel deconvolution applied to confocal fluorescence microscopy with engineered point spread function

机译:具有工程点扩散功能的多核反卷积应用于共聚焦荧光显微镜

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摘要

Fluorescence microscopy is a powerful technique in biology, because of the immense variety of markers now available. Compared to other methods, its resolution is however limited. In wide-field microscopy, the technique of structured illumination permits to improve the lateral resolution by a factor of two, even surpassing confocal microscopy, which permits a theoretical gain of about 40%. We propose an alternate technique, combining laterally interfering focused beams, which should permit the same gain of resolution in a confocal microscope. Furthermore, this technique, combined with multiple acquisition and multikernel deconvolution, permits a better object reconstruction than classical monokernel deconvolution using a regular excitation point spread function.
机译:荧光显微镜技术是生物学中的一项强大技术,因为现在可以使用的标记物种类繁多。与其他方法相比,其分辨率受到限制。在宽视场显微镜中,结构化照明技术可以将横向分辨率提高两倍,甚至超过共焦显微镜,其理论增益约为40%。我们提出了一种替代技术,将横向干扰的聚焦光束组合在一起,这应该允许在共聚焦显微镜中获得相同的分辨率增益。此外,与使用常规激发点扩展函数的经典单核反卷积相比,与多次捕获和多核反卷积相结合的此技术​​允许更好的对象重建。

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