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Interferometric imaging with three objectives

机译:三物镜干涉成像

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摘要

We propose a microscope that utilizes three high numerical aperture objectives to image a sample from multiple angles, interferometrically combining the fields from each objective to obtain a higher resolution and more isotropic point-spread function than standard wide-field and confocal techniques. The proposed microscope utilizes three 0.9 NA objectives with large working distance and, therefore, has both a large imaging volume and an effective 2.7 NA. The FWHM of the point-spread function is 135 nm in the plane of the objectives, a factor of 2 better than the lateral resolution with a single objective. Out of plane, the PSF is equivalent to that of a conventional microscope. Here, we introduce the theoretical framework for evaluating the performance of the microscope and use that framework to quantitatively compare our proposed microscope to existing techniques in confocal and wide-field implementations. (C) 2016 Optical Society of America
机译:我们提出了一种显微镜,该显微镜利用三个高数值孔径物镜从多个角度对样本成像,并通过干涉法将每个物镜的场相结合,以获得比标准广角和共焦技术更高的分辨率和更各向同性的点扩散功能。所提出的显微镜利用三个0.9 NA物镜并具有较大的工作距离,因此具有较大的成像量和有效的2.7 NA。点扩展函数的FWHM在物镜平面中为135 nm,比单个物镜的横向分辨率高2倍。 PSF在平面外等同于常规显微镜。在这里,我们介绍了用于评估显微镜性能的理论框架,并使用该框架将我们提出的显微镜与共焦和宽视野实施中的现有技术进行定量比较。 (C)2016美国眼镜学会

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