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Structured oblique illumination microscopy for enhanced resolution imaging ofnon-fluorescent coherently scattering samples

机译:结构化的斜照明显微镜用于增强分辨率成像非荧光相干散射样品

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摘要

Many biological structures of interest are beyond the diffraction limit of conventional microscopes and their visualization requires application of super-resolution techniques. Such techniques have found remarkable success in surpassing the diffraction limit to achieve sub-diffraction limited resolution; however, they are predominantly limited to fluorescent samples. Here, we introduce a non-fluorescent analogue to structured illumination microscopy, termed structured oblique illumination microscopy (SOIM), where we use simultaneous oblique illuminations of the sample to multiplex high spatial-frequency content into the frequency support of the system. We introduce a theoretical framework describing how to demodulate this multiplexed information to reconstruct an image with a spatial-frequency support exceeding that of the system’s classical diffraction limit. This approach allows enhanced-resolution imaging of non-fluorescent samples. Experimental confirmation of the approach is obtained in a reflection test target with moderate numerical aperture.
机译:许多感兴趣的生物结构超出了常规显微镜的衍射极限,并且其可视化要求应用超分辨率技术。在超越衍射极限以达到亚衍射极限分辨率方面,这些技术已经取得了巨大的成功。但是,它们主要限于荧光样品。在这里,我们将非荧光类似物引入结构照明显微镜,称为结构倾斜照明显微镜(SOIM),在该方法中,我们使用样品的同时倾斜照明将高空间频率内容复用到系统的频率支持中。我们引入了一个理论框架,描述了如何解调此多路复用信息以重建空间频率支持超过系统经典衍射极限的图像。这种方法可以对非荧光样品进行高分辨率的成像。在具有中等数值孔径的反射测试目标中获得了该方法的实验确认。

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