[1] Orth A, Crozier K B. Light field moment imaging [J]. Opt Lett, 2013, 38(15): 2666−2668. doi:  10.1364/OL.38.002666
[2] Wanner S, Goldluecke B. Globally consistent depth labeling of 4D light field[C]//Proceedings of IEEE Conference on Computer Vision and Pattern Recognition, 2012: 41−48.
[3] Lüke J P , Rosa F, Marichal-Hernández J G, et al. Depth from light fields analyzing 4D local structure [J]. Display Technology, 2015, 11(11): 900−907. doi:  10.1109/JDT.2014.2360992
[4] Ng R, Levoy M, Brédif M, et al. Light field photography with a hand-held plenoptic camera[R]. Stanford Technical Report CTSR, 2005:1−11.
[5] Ng R. Fourier Slice Photography[C]//ACM Transactions on Graphics, 2005,24(3): 735−744.
[6] Lumsdaine A, Georgiev T. The focused plenoptic camera[C]//Proceedings of the ICCP (IEEE), 2009:1−8.
[7] Bishop T E, Favaro P. The light field camera: Extended depth of field, aliasing and superresolution [J]. IEEE Trans Pattern Anal Mach Intell, 2017, 34(5): 972−986.
[8] Wilburn B, Joshi N, Vaish V. High performance imaging using large camera arrays [J]. ACM Transactions on Graphics, 2005, 24(3): 765−776. doi:  10.1145/1073204.1073259
[9] Tao M W, Hadap S, Malik J, et al. Depth from combining defocus and correspondence using light-field cameras[C]//Proceedings of IEEE International Conference on Computer Vision, IEEE, 2013: 673−680.
[10] Lin X, Wu J, Zheng G, et al. Camera array based light field microscopy [J]. Biomed Opt Express, 2015, 6(9): 3179−3189. doi:  10.1364/BOE.6.003179
[11] Wanner S, Goldluecke B. Globally consistent depth labeling of 4D light fields[C]// Proceedings of IEEE Conference on Computer Vision and Pattern Recognition, IEEE, 2012: 41−48.
[12] Frese C, Gheta I. Robust depth estimation by fusion of stereo and focus series acquired with a camera array[C]// Proceedings of IEEE International Conference on Multisensor fusion and Intergration for Intelligent Systems, IEEE, 2006: 243−248.
[13] Levoy M, Zhang Z, McDowell I. Recording and controlling the 4D light field in a microscope using microlens arrays [J]. Microsc, 2009, 235(2): 144−162. doi:  10.1111/j.1365-2818.2009.03195.x
[14] Sansoni G, Carocci M, Rodella R. Three-dimensional vision based on a combination of gray-code and phase-shift light projection: analysis and compensation of the systematic errors [J]. Appl Opt, 1999, 31(38): 6565−6573.
[15] Liu X, Kofman J. High-frequency background modulation fringe patterns based on a fringe-wavelength geometry-constraint model for 3D surface-shape measurement [J]. Opt Express, 2017, 14(25): 16618−16628.
[16] Zheng D, Da F, Qian K M, et al. Phase-shifting profilometry combined with Gray-code patterns projection: unwrapping error removal by an adaptive median filter [J]. Opt Express, 2017, 25(5): 4700−4713. doi:  10.1364/OE.25.004700