论文标题

无ptychographic镜头极化显微镜

Ptychographic lens-less polarization microscopy

论文作者

Kim, Jeongsoo, Song, Seungri, Kim, Bora, Park, Mirae, Oh, Seung Jae, Kim, Daesuk, Cense, Barry, Huh, Yong-Min, Lee, Joo Yong, Joo, Chulmin

论文摘要

双向转折是光学各向异性材料的固有特征,在各种成像应用中广泛使用,从材料特征到临床诊断。偏振光显微镜可实现光学各向异性标本的高分辨率,高对比度成像,但与偏振器/分析仪的机械旋转以及相对复杂的光学设计相关。在这里,我们提出了一种新型的对极化敏感显微镜的形式,能够对没有光晶状体和任何运动部件的透明物体进行双折射成像。我们的方法利用光学面膜调节的极化图像传感器和单输入状态LED照明设计,通过Ptychographic阶段检索获得对象的复杂和双折射图像。该方法使用具有3.45 um的像素分辨率的摄像头,在59.74 mm^2视野视野上,双式分辨率为2.46 um,可实现双重分辨率成像,该磁场对应于9.9百万像素的空间宽宽产品。我们通过介绍各种各向异性物体的双折射图像,包括双重分辨率靶标,液晶聚合物去极化器,单钠,单钠尿酸尿液和心脏组织,通过介绍各种各向异性物体的双折射图像,并展示了我们方法的高分辨率双折射成像能力。

Birefringence, an inherent characteristic of optically anisotropic materials, is widely utilized in various imaging applications ranging from material characterizations to clinical diagnosis. Polarized light microscopy enables high-resolution, high-contrast imaging of optically anisotropic specimens, but it is associated with mechanical rotations of polarizer/analyzer and relatively complex optical designs. Here, we present a novel form of polarization-sensitive microscopy capable of birefringence imaging of transparent objects without an optical lens and any moving parts. Our method exploits an optical mask-modulated polarization image sensor and single-input-state LED illumination design to obtain complex and birefringence images of the object via ptychographic phase retrieval. Using a camera with a pixel resolution of 3.45 um, the method achieves birefringence imaging with a half-pitch resolution of 2.46 um over a 59.74 mm^2 field-of-view, which corresponds to a space-bandwidth product of 9.9 megapixels. We demonstrate the high-resolution, large-area birefringence imaging capability of our method by presenting the birefringence images of various anisotropic objects, including a birefringent resolution target, liquid crystal polymer depolarizer, monosodium urate crystal, and excised mouse eye and heart tissues.

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