首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Considerations of aperture configuration in focal modulation microscopy from the standpoint of modulation depth
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Considerations of aperture configuration in focal modulation microscopy from the standpoint of modulation depth

机译:从调制深度的角度考虑聚焦调制显微镜中的光圈配置

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Focal modulation microscopy (FMM) is a simple, yet efficient, method to preserve image quality in terms of signal-to-background ratio by selecting ballistic photons for image formation. The aim of this paper is to investigate the effect of the various aperture configurations of the spatial phase modulator on the modulation depth of the FMM signal. The definition of modulation depth in FMM and its calculation method are introduced. According to two brief principles of choosing aperture configuration, three types of configurations with different numbers of zones ranging from two to six (totaling eight aperture configurations) are selected, and their corresponding modulation depths and attainable spatial resolutions are simulated. The results show that the modulation depth increases significantly when the number of zones varies from two to six, with a slight or no sacrifice in resolution. In summary, the annular configuration is superior to the fan- and stripe-shaped configurations in modulation depth and spatial resolution.
机译:聚焦调制显微镜(FMM)是一种简单而有效的方法,通过选择用于成像的弹道光子来保持信噪比的图像质量。本文的目的是研究空间相位调制器的各种孔径配置对FMM信号调制深度的影响。介绍了FMM中调制深度的定义及其计算方法。根据选择孔径配置的两个简要原理,选择了三种不同类型的区域,区域数量从2到6不等(总共8个孔径配置),并模拟了它们相应的调制深度和可获得的空间分辨率。结果表明,当区域的数量从2变为6时,调制深度会显着增加,而分辨率的损失很小或没有。总之,在调制深度和空间分辨率上,环形配置优于扇形和条形配置。

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