• Laser & Optoelectronics Progress
  • Vol. 54, Issue 4, 40901 (2017)
Li Yingying1、2、*, Qin Wan3, Gao Zhi3, and Peng Xiang1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • show less
    DOI: 10.3788/lop54.040901 Cite this Article Set citation alerts
    Li Yingying, Qin Wan, Gao Zhi, Peng Xiang. Two-Step Phase-Shifting Based Incoherent Digital Holographic Microscopy[J]. Laser & Optoelectronics Progress, 2017, 54(4): 40901 Copy Citation Text show less
    References

    [1] Gabor D. A new microscopic principle[J]. Nature, 1948, 161(4098): 777.

    [2] Garcia-Sucerquia J, Xu W, Jericho S K, et al. Digital in-line holographic microscopy[J]. Applied Optics, 2006, 45(5): 836-850.

    [3] Rosen J, Brooker G. Digital spatially incoherent Fresnel holography[J]. Optics Letters, 2007, 32(8): 912-914.

    [4] Rosen J, Brooker G. Fluorescence incoherent color holography[J]. Optics Express, 2007, 15(5): 2244-2250.

    [5] Rosen J, Brooker G. Non-scanning motionless fluorescence three-dimensional holographic microscopy[J]. Nature Photonics, 2008, 2(3): 190-195.

    [6] Rosen J, Katz B, Brooker G. Fresnel incoherent correlation hologram - a review[J]. Chinese Optics Letters, 2009, 7(12): 1134-1141.

    [7] Katz B, Rosen J, Kelner R, et al. Enhanced resolution and throughput of Fresnel incoherent correlation holography (FINCH) using dual diffractive lenses on a spatial light modulator (SLM)[J]. Optics Express, 2012, 20(8): 9109-9121.

    [8] Brooker G, Siegel N, Wang V, et al. Optimal resolution in Fresnel incoherent correlation holographic fluorescence microscopy[J]. Optics Express, 2011, 19(6): 5047-5062.

    [9] Katz B, Rosen J. Could SAFE concept be applied for designing a new synthetic aperture telescope[J]. Optics Express, 2011, 19(6): 4924-4936.

    [10] Kashter Y, Rosen J. Enhanced-resolution using modified configuration of Fresnel incoherent holographic recorder with synthetic aperture[J]. Optics Express, 2014, 22(17): 20551-20565.

    [11] Katz B, Rosen J, Kelner R, et al. Enhanced resolution and throughput of Fresnel incoherent correlation holography (FINCH) using dual diffractive lenses on a spatial light modulator (SLM)[J]. Optics Express, 2012, 20(8): 9109-9121.

    [12] Yamaguchi I, Zhang T. Phase-shifting digital holography[J]. Optics Letters, 1997, 22(16): 1268-1270.

    [13] Qin W, Yang X Q, Li Y Y, et al. Two-step phase-shifting fluorescence incoherent holographic microscopy[J]. Journal of Biomedical Optics, 2014, 19(6): 0605003.

    [14] Wan Q, Yang X Q, Wang Y R, et al. Fast fluorescence holographic microscopy[C]. SPIE, 2014, 8949: 89491W.

    [15] Meng X F, Cai L Z, Xu X F, et al. Wavefront reconstruction by two-step generalized phase-shifting interferometry[J]. Optics Communications, 2008, 281(23): 5701-5705.

    [16] Meng X F, Cai L Z, Xu X F, et al. Two-step phase-shifting interferometry and its application in image encryption[J]. Optics Letters, 2006, 31(10): 1414-1416.

    [17] Wan Yuhong, Man Tianlong, Tao Shiquan. Imaging characteristics and research progress of incoherent holography[J]. Chinese J Lasers, 2014, 41(2): 0209004.

    [18] Liu Yingchen, Fan Jinping, Zeng Fanchuang, et al. Recording, reconstruction and realization of white-light Fresnel incoherent digital holography[J]. Chinese J Lasers, 2013, 40(10): 1009002.

    [19] Shi Xia, Zhu Wufeng, Yuan Bin, et al. Experimental study of the incoherent digital holography[J]. Chinese J Lasers, 2015, 42(12): 1209003.

    [20] Huang Jingjing, Chen Wenjing, Su Xianyu, et al. Application of wavelet transform in modulation measurement profilometry[J]. Acta Optica Sinica, 2016, 36(7): 0707001.

    [21] Li Qingzhong, Liu Qing. Adaptive enhancement algorithm for low illumination images based on wavelet transform[J]. Chinese J Lasers, 2015, 42(2): 0209001.

    [22] Wang Cunshuai, Zhang Yinke, Hao Jinbo, et al. Improving reconstruction image quality of digital holography using median filter and intensity subtraction[J]. Laser & Optoelectronics Progress, 2011, 48(12): 120901.

    [23] Wang Liang, Feng Shaotong, Nie Shouping, et al. Improving the reconstructed image quality of the digital holography through multiscale transform[J]. Journal of Optoelectronics·Laser, 2007, 18(5): 625-628.

    [24] Zeng Taiying, Shao Xue, Wang Zuhui, et al. No-reference blur image quality assessment based on local discrete wavelet transform[J]. Journal of Optoelectronics·Laser, 2016, 12(7): 754-760.

    [25] Xu Dongying, Li Sikun, Wang Xiangzhao, et al. Wavelet ridge extraction method employing a cost function in two-dimensional wavelet transform profilometry[J]. Acta Optica Sinica, 2016, 36(4): 0412006.

    CLP Journals

    [1] Yang Xufeng, Zhang Wenbin, Xie Yilin, Zhang Minmin, Tu Biao, Yang Xuekai, Ma Fengying, Gong Qiaoxia, Du Yanli. Incoherent On-Axis Digital Holographic Telescope System[J]. Laser & Optoelectronics Progress, 2017, 54(12): 120902

    Li Yingying, Qin Wan, Gao Zhi, Peng Xiang. Two-Step Phase-Shifting Based Incoherent Digital Holographic Microscopy[J]. Laser & Optoelectronics Progress, 2017, 54(4): 40901
    Download Citation