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通过三维光场照明实现的光学单像素体积成像。

Optical single-pixel volumetric imaging by three-dimensional light-field illumination.

作者信息

Liu Yifan, Yu Panpan, Wu Yijing, Zhuang Jinghan, Wang Ziqiang, Li Yinmei, Lai Puxiang, Liang Jinyang, Gong Lei

机构信息

Department of Optics and Optical Engineering, University of Science and Technology of China, Hefei 230026, China.

Department of Biomedical Engineering, The Hong Kong Polytechnic University, Hong Kong, China.

出版信息

Proc Natl Acad Sci U S A. 2023 Aug;120(31):e2304755120. doi: 10.1073/pnas.2304755120. Epub 2023 Jul 24.

Abstract

Three-dimensional single-pixel imaging (3D SPI) has become an attractive imaging modality for both biomedical research and optical sensing. 3D-SPI techniques generally depend on time-of-flight or stereovision principle to extract depth information from backscattered light. However, existing implementations for these two optical schemes are limited to surface mapping of 3D objects at depth resolutions, at best, at the millimeter level. Here, we report 3D light-field illumination single-pixel microscopy (3D-LFI-SPM) that enables volumetric imaging of microscopic objects with a near-diffraction-limit 3D optical resolution. Aimed at 3D space reconstruction, 3D-LFI-SPM optically samples the 3D Fourier spectrum by combining 3D structured light-field illumination with single-element intensity detection. We build a 3D-LFI-SPM prototype that provides an imaging volume of ∼390 × 390 × 3,800 μm and achieves 2.7-μm lateral resolution and better than 37-μm axial resolution. Its capability of 3D visualization of label-free optical absorption contrast is demonstrated by imaging single algal cells in vivo. Our approach opens broad perspectives for 3D SPI with potential applications in various fields, such as biomedical functional imaging.

摘要

三维单像素成像(3D SPI)已成为生物医学研究和光学传感领域颇具吸引力的成像方式。3D-SPI技术通常依赖飞行时间或立体视觉原理,从背向散射光中提取深度信息。然而,这两种光学方案的现有实现方式,在深度分辨率方面,充其量只能实现毫米级别的三维物体表面映射。在此,我们报告了三维光场照明单像素显微镜(3D-LFI-SPM),它能够以接近衍射极限的三维光学分辨率对微观物体进行体积成像。针对三维空间重建,3D-LFI-SPM通过将三维结构光场照明与单元素强度检测相结合,对三维傅里叶频谱进行光学采样。我们构建了一个3D-LFI-SPM原型,其成像体积约为390×390×3800μm,横向分辨率达到2.7μm,轴向分辨率优于37μm。通过对活体内单个藻类细胞成像,展示了其对无标记光学吸收对比度进行三维可视化的能力。我们的方法为3D SPI开辟了广阔前景,在生物医学功能成像等各个领域具有潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0b0/10400974/cdf1f9942db0/pnas.2304755120fig01.jpg

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