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Coherent super-resolution microscopy via laterally structured illumination

机译:通过横向结构照明进行相干超分辨率显微镜

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摘要

Theory describing a super-resolution microscopy experiment using temporally and spatially coherent structured illumination was developed, and used to derive a method for processing experimental data. Numerical simulations were performed to verify that the method can, in principle, produce super-resolved images that are exactly equivalent to an image processed by a system with a much larger aperture (that is, the correct weighting between different regions of the image spectrum is maintained). The process was then demonstrated experimentally, showing a factor of two improvement in resolution over a diffraction-limited, coherently illuminated, microscope.
机译:建立了描述使用时间和空间相干结构照明的超分辨率显微镜实验的理论,并将其用于推导处理实验数据的方法。进行了数值模拟,以验证该方法在原则上可以产生与由更大孔径的系统处理的图像完全等效的超分辨图像(即,图像光谱不同区域之间的正确权重为保持)。然后通过实验证明了该过程,与衍射受限,相干照明的显微镜相比,分辨率提高了两倍。

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