Wang Zhaojun, Cai Yanan, Liang Yansheng, Zhou Xing, Yan Shaohui, Dan Dan, Bianco Piero R, Lei Ming, Yao Baoli
State Key Laboratory of Transient Optics and Photonics, Xi' an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi' an 710119, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Biomed Opt Express. 2017 Nov 9;8(12):5493-5506. doi: 10.1364/BOE.8.005493. eCollection 2017 Dec 1.
A wide-field fluorescence microscope with a double-helix point spread function (PSF) is constructed to obtain the specimen's three-dimensional distribution with a single snapshot. Spiral-phase-based computer-generated holograms (CGHs) are adopted to make the depth-of-field of the microscope adjustable. The impact of system aberrations on the double-helix PSF at high numerical aperture is analyzed to reveal the necessity of the aberration correction. A modified cepstrum-based reconstruction scheme is promoted in accordance with properties of the new double-helix PSF. The extended depth-of-field images and the corresponding depth maps for both a simulated sample and a tilted section slice of bovine pulmonary artery endothelial (BPAE) cells are recovered, respectively, verifying that the depth-of-field is properly extended and the depth of the specimen can be estimated at a precision of 23.4nm. This three-dimensional fluorescence microscope with a framerate-rank time resolution is suitable for studying the fast developing process of thin and sparsely distributed micron-scale cells in extended depth-of-field.
构建了一种具有双螺旋点扩散函数(PSF)的宽场荧光显微镜,以通过单次快照获得样本的三维分布。采用基于螺旋相位的计算机生成全息图(CGH)使显微镜的景深可调。分析了系统像差在高数值孔径下对双螺旋PSF的影响,以揭示像差校正的必要性。根据新型双螺旋PSF的特性,提出了一种改进的基于倒谱的重建方案。分别恢复了模拟样本和牛肺动脉内皮(BPAE)细胞倾斜切片的扩展景深图像和相应的深度图,验证了景深得到了适当扩展,并且样本深度可以以23.4nm的精度进行估计。这种具有帧率级时间分辨率的三维荧光显微镜适用于研究扩展景深中薄且稀疏分布的微米级细胞的快速发育过程。