[1] 邓丽军, 黄星艳, 曾吕明. 基于双色LED芯片的双波长像面数字全息显微术. 光学学报, 38, 135-141(2018).
L J DENG, X Y HUANG, L M ZENG et al. Dual-wavelength image-plane digital holographic microscopy based on bi-color LED chips. Acta Optica Sinica, 38, 135-141(2018).
[2] L XIN, W XIAO, Y K LIU et al. Quantitative monitoring of morphological change of cancer cells apoptosis by digital holographic microscopy(invited). Acta Photonica Sinica, 51, 421-428(2022).
辛露, 肖文, 刘雅坤. 数字全息成像定量监测癌细胞凋亡过程形态变化(特邀). 光子学报, 51, 421-428(2022).
[3] P XIA, S E RI, Q H WANG et al. Nanometer-order thermal deformation measurement by a calibrated phase-shifting digital holography system. Optics Express, 26, 12594-12604(2018).
[4] ZH CHEN, H ZH JIANG, X LIU et al. Measurement of surface defects of optical elements using digital holography. Opt. Precision Eng., 25, 576-583(2017).
陈竹, 姜宏振, 刘旭. 数字全息术用于光学元件表面缺陷形貌测量. 光学 精密工程, 25, 576-583(2017).
[5] L P ZHOU, ZH J SUN, Q ZHANG. Auto-focusing and control of micro-vision system. Optics and Precision Engineering, 21, 807-812(2013).
周丽平, 孙志峻, 张泉. 显微视觉系统的自动聚焦及控制. 光学 精密工程, 21, 807-812(2013).
[6] 王华英, 王广俊, 王大勇. 数字全息显微中的自动聚焦. 光电子 激光, 21, 1232-1236(2010).
H Y WANG, G J WANG, D Y WANG et al. Autofocus in digital holographic microscopy. Journal of Optoelectronics Laser, 21, 1232-1236(2010).
[7] P LANGEHANENBERG, B KEMPER, D DIRKSEN et al. Autofocusing in digital holographic phase contrast microscopy on pure phase objects for live cell imaging. Applied Optics, 47, D176-D182(2008).
[8] 袁涛, 易定容, 蒋威. 基于双模糊的显微图像聚焦评价方法. 光学学报, 43, 1010001(2023).
T YUAN, D R YI, W JIANG et al. Double blur micro-images focusing evaluation method. Acta Optica Sinica, 43, 1010001(2023).
[9] 梁路瑶, 赵晓云, 赵金泉. 一种基于U-NET多景深图片目标物定位自动聚焦算法. 强激光与粒子束, 34, 161-170(2022).
L Y LIANG, X Y ZHAO, J Q ZHAO. An automatic focusing algorithm based on U-Net for target location in multiple depth-of-field scene. High Power Laser and Particle Beams, 34, 161-170(2022).
[10] 翟永平, 周东翔, 刘云辉. 聚焦函数性能评价指标设计及最优函数选取. 光学学报, 31, 242-252(2011).
Y P ZHAI, D X ZHOU, Y H LIU et al. Design of evaluation index for auto-focusing function and optimal function selection. Acta Optica Sinica, 31, 242-252(2011).
[11] C J YUAN, D Y LI et al. Fast autofocusing in digital holography using the magnitude differential. Applied Optics, 56, 152-157(2017).
[12] Y W WANG, X L LIU, H XIE. A wavelet-based focus measure and 3-D autofocusing for microscope images. Opt. Precision Eng., 14, 1063-1069(2006).
王义文, 刘献礼, 谢晖. 基于小波变换的显微图像清晰度评价函数及3-D自动调焦技术. 光学 精密工程, 14, 1063-1069(2006).
[13] Z B REN, Z M XU, E Y LAM. Learning-based nonparametric autofocusing for digital holography. Optica, 5, 337(2018).
[14] J DONG, S H JIA, C JIANG. Correlation-coefficient based auto-focusing algorithm for focus detection in shape measurement using two-source digital holographic interferometry. Measurement Science and Technology, 29(2018).
[15] Z B REN, E Y LAM, J L ZHAO. Acceleration of autofocusing with improved edge extraction using structure tensor and Schatten norm. Optics Express, 28, 14712-14728(2020).
[16] J WINNIK, D SUSKI, P ZDAŃKOWSKI et al. Versatile optimization-based speed-up method for autofocusing in digital holographic microscopy. Optics Express, 29, 33297-33311(2021).
[17] I H KWON, J LEE, H K NA et al. Numerical phase-detection autofocusing method for digital holography reconstruction processing. Applied Physics Letters, 124(2024).
[18] 刘壮, 王启东, 王超. 正交级联液晶偏振光栅角度偏转模型. 光子学报, 50, 269-278(2021).
ZH LIU, Q D WANG, CH WANG et al. Deflection angular model of orthogonal cascade liquid crystal polarization gratings. Acta Photonica Sinica, 50, 269-278(2021).