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单次3D成像超显微镜

Single-Shot 3D Imaging Meta-Microscope.

作者信息

Hao Huijie, Wang Hao, Wang Xinwei, Ding Xumin, Zhang Shutao, Pan Cheng-Feng, Rahman Md Abdur, Ling Tong, Li Haoyu, Tan Jiubin, Yang Joel K W, Lu Wenlong, Liu Jian, Hu Guangwei

机构信息

Advanced Microscopy and Instrumentation Research Center, School of Instrumentation Science and Engineering, Harbin Institute of Technology, Harbin 150080, China.

Engineering Product Development Pillar, Singapore University of Technology and Design, 8 Somapah Road, 487372 Singapore, Singapore.

出版信息

Nano Lett. 2024 Oct 23;24(42):13364-13373. doi: 10.1021/acs.nanolett.4c03952. Epub 2024 Oct 11.

Abstract

Three-dimensional (3D) imaging enables high-precision and high-resolution axial positioning, which is crucial for biological imaging, semiconductor defect monitoring, and other applications. Conventional implementations rely on bulky optical elements or scanning mechanisms, resulting in low speed and complicated setups. Here, we generate the double-helix (DH) point spread function with an all-dielectric metasurface and thus innovate the 3D imaging microscope (hence dubbed meta-microscope), both in 4f and 2f imaging systems. The 4f-meta-microscope with a numerical aperture of 0.7 achieves an axial localization accuracy below 0.12 μm within a 15.47 μm detection range, while the 2f-DH meta-microscope with a numerical aperture of 0.3 shows a 1.12 μm accuracy within a 227.33 μm range. We also demonstrate single-shot and accurate 3D biological imaging of the mouse kidney tissue and peach anther, providing a comprehensive and efficient approach for 3D bioimaging and other applications through a single-shot 3D meta-microscope.

摘要

三维(3D)成像能够实现高精度和高分辨率的轴向定位,这对于生物成像、半导体缺陷监测及其他应用至关重要。传统的实现方式依赖于笨重的光学元件或扫描机制,导致速度慢且设置复杂。在此,我们利用全介质超表面生成双螺旋(DH)点扩散函数,从而在4f和2f成像系统中对3D成像显微镜(因此称为超显微镜)进行了创新。数值孔径为0.7的4f超显微镜在15.47μm的检测范围内实现了低于0.12μm的轴向定位精度,而数值孔径为0.3的2f-DH超显微镜在227.33μm的范围内显示出1.12μm的精度。我们还展示了对小鼠肾脏组织和桃花药的单次且精确的3D生物成像,通过单次3D超显微镜为3D生物成像及其他应用提供了一种全面且高效的方法。

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