• Acta Photonica Sinica
  • Vol. 47, Issue 9, 917003 (2018)
HUANG Xin-rong*, ZHENG Ji-hong, LIU You-rong, ZHU Tian-yun, and MIAO Tao
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3788/gzxb20184709.0917003 Cite this Article
    HUANG Xin-rong, ZHENG Ji-hong, LIU You-rong, ZHU Tian-yun, MIAO Tao. Dual Wavelength Fluorescence Microscopy Depth Imaging Based on Fresnel Lens Chromatic Aberration[J]. Acta Photonica Sinica, 2018, 47(9): 917003 Copy Citation Text show less
    References

    [1] MINSKY M . Microscopy apparatus: US, 30133467[P]. 1961-12-19.

    [2] DAVIDOVITS P, EGGER M D. Scanning laser microscope[J]. Nature, 1969, 223(5208): 831.

    [3] WANG Qing-qing, ZHENG Ji-hong, GUI Kun, et al. Fluorescence confocal parallel detection microscopy imaging system design and experiment[J]. Acta Photonica Sinica, 2015, 44(8): 0811002.

    [4] ZHENG Ji-hong, WANG Kang-ni, TANG Ping-yu, et al. A four-channel frequency division multiplexed fluorescent microscope modulated by holographic polymer dispersed liquid crystal grating array[J]. Liquid Crystals, 2014, 41(4): 585-590.

    [5] PRABHAT P, RAM S, WARD E S, et al. Simultaneous imaging of different focal planes in fluorescence microscopy for the study of cellular dynamics in three dimensions[J]. IEEE Transactions on Nanobioscience, 2004, 3(4): 237-242.

    [6] YU Bing, LI Heng, CHEN Dan-ni, et al. Design, preparation and experimental study of diffractive optical elements for 3D nano-resolution multi-molecular tracking with large depth of field[J]. Chinese Journal of Physics, 2013, 62(15): 154206.

    [7] ABRAHAMSSON S, CHEN J, HAJJ B, et al. Fast multicolor 3d imaging using aberration-corrected multifocus microscopy[J].Nature methods, 2013, 10(1): 60-62.

    [8] RAM S, KIM D, OBER R J, et al. 3D single molecule tracking with multifocal plane microscopy reveals rapid intercellular transferrin transport at epithelial cell barriers[J]. Biophysical Journal, 2012 ,103(7): 1586-1600.

    [9] TU Long, YU Jin, FAN Zhong-wei, et al. Research on parallel laser confocal microscopy detection based on digital micromirror[J]. Laser & Optoelectronics Progress, 2013, 50(10): 101702.

    [10] XU Zhong-bao, TAO Wei-seng, WANG Shuang-ying, et al. Achromatic lens based on liquid crystal spatial light modulator[J]. Acta Photonica Sinica, 2018, 47(4): 042201.

    [11] YANG Chuan, SHI Ke-bin, LI Hai-feng, et al. Chromatic second harmonic imaging[J]. Optics Express, 2010, 18(23): 23837- 23843.

    [12] CORY O, RYAN S, OSCAR C Z, et al. Chromatic confocal microscopy for multi-depth imaging of epithelial tissue[J]. Biomedical Optics Express, 2013, 4(5): 732-740.

    [13] KIM T, KIM S H , DO D, et al. Chromatic confocal microscopy with a novel wavelength detection method using transmittance[J]. Optics Express, 2013, 21(5): 6284-6296.

    [14] PURNAPATRA S B, BERA S, MONDAL P P. Spatial filter based bessel-like beam for improved penetration depth imaging in fluorescence microscopy[J]. Scientific Reports, 2012, 2(39): 692: 1-11

    [15] CHE J H, SHEU C R. Using photopolymerization to achieve tunable liquid crystal lenses with coaxial bifocals[J]. Optics Express, 2012, 20(4): 4738-4746.

    [16] SHI Ke-bin, LI Peng, YIN Shi-zhuo, et al. Chromatic confocal microscopy using supercontinuum light[J]. Optics Express, 2004, 12(10): 2096-2101.

    [17] SHI Ke-bin, NAM S H, LI Peng, et al. Wavelength division multiplexed confocal microscopy using supercontinuum[J]. Optics Communications, 2006, 263(2): 156-162.

    HUANG Xin-rong, ZHENG Ji-hong, LIU You-rong, ZHU Tian-yun, MIAO Tao. Dual Wavelength Fluorescence Microscopy Depth Imaging Based on Fresnel Lens Chromatic Aberration[J]. Acta Photonica Sinica, 2018, 47(9): 917003
    Download Citation