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Super-resolution by annular pupil inserted scattered light fluorescence microscopes

机译:环形瞳孔插入散射光荧光显微镜超分辨率

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摘要

Scattered light fluorescence (SLF) microscopy has been developed to take images through scattering media with subwavelength resolution. Here, we investigate the effect of an annular pupil on SLF microscopes via theory and simulations. As opposite to subwavelength resolution achieved by the conventional SLF microscopes, super-resolution can be achieved by annular pupil inserted scattered light fluorescence (API-SLF) microscopes. In fact, the resolution of an API-SLF microscope is usually relevant to one of its component, the scattering medium. By showing the average resolution of API-SLF microscopes that composed of different scattering media is about 0.4 times of the incident wavelength, we demonstrate that an API-SLF microscope with appropriate scattering medium is able to beat the diffraction limit.
机译:已经开发出散射的光荧光(SLF)显微镜,以通过具有亚波长分辨率的散射介质进行图像。 在这里,我们通过理论和模拟研究了环形瞳孔对SLF显微镜的影响。 与传统SLF显微镜实现的亚波长分辨率相反,通过环形瞳孔插入散射光荧光(API-SLF)显微镜可以实现超分辨率。 实际上,API-SLF显微镜的分辨率通常与其部件之一,散射介质相关。 通过显示由不同散射介质组成的API-SLF显微镜的平均分辨率是入射波长的约0.4倍,我们证明了具有适当散射介质的API-SLF显微镜能够击败衍射极限。

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