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Fourier ptychography for high space-bandwidth product microscopy

机译:用于高空间带宽产品显微镜的傅里叶PTYCHOGUPT

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Fourier ptychography is a novel imaging technique with high space-bandwidth product (SBP) on the scale of gigapixel, and has been successfully applied for high-resolution and large field-of-view (FOV) microscopy, termed Fourier ptychographic microscopy (FPM). FPM utilizes a low-numerical-aperture objective lens to capture multiple large FOV but low-resolution images under angularly varying illumination, and uses phase-retrieval algorithms to reconstruct the sample’s high-resolution amplitude and phase information. FPM is advantageous over conventional high SBP microscopy techniques in many aspects, including no mechanical scanning, computational acquisition of both amplitude and phase, extended depth of focus, long working distance, and high compatibility with current microscopes. In this paper, we review FPM with its principles, multiple techniques to improve its performance, and its various applications and extensions.
机译:傅里叶PTychography是一种新型成像技术,具有高空间带宽产品(SBP)的千兆像素,并已成功应用于高分辨率和大型视野(FOV)显微镜,称为傅里叶PTYCHOGUCT(FPM) 。 FPM利用低数字 - 孔径物镜来捕获多个大FOV但在角度变化的照明下的低分辨率图像,并使用相位检索算法来重建样本的高分辨率幅度和相位信息。 FPM在许多方面的传统高SBP显微镜技术上是有利的,包括没有机械扫描,对幅度和相位的计算获取,延长深度,长工作距离,以及与电流显微镜的高兼容性。 在本文中,我们审查了FPM的原则,多种技术来提高其性能,以及其各种应用和扩展。

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