Acta Photonica Sinica, Volume. 47, Issue 6, 611001(2018)
Development of Diffraction Phase Microscopy and Its Quantitative Investigation of Giardia Lamblia
[1] [1] JELINEK T, NEIFER S. Detection of Giardia lamblia stool samples: a comparison of two enzyme-linked immunosorbent assays[J]. F1000 Research, 2013, 2: 39-43.
[2] [2] GB5749-2006, Standards for drinking water quality[S]. 2006.
[4] [4] LOFERER-KRSSBACHER M, KLIMA J, PSENNER R. Determination of bacterial cell dry mass by transmission electron microscopy and densitometric image analysis[J]. Applied & Environmental Microbiology, 1998, 64(2): 688-694.
[5] [5] ZHAO Shu-tao, WU Xiao-dong, WANG Ce, et al. The principle, application and latest development of flow cytometry[J]. Progress in Modern Biomedicine, 2011, 11(22): 4378-4381.
[6] [6] BARER R. Determination of dry mass, thickness, solid and water concentration in living cells[J]. Nature, 1953, 172(4389): 1097-1098.
[7] [7] POPESCU G, IKEDA T, DASARI R R, et al. Diffraction phase microscopy for quantifying cell structure and dynamics[J]. Optics Letters, 2006, 31(6): 775-777.
[8] [8] POPESCU G, BADIZADEGAN K, FELD M S, et al. Diffraction phase and fluorescence microscopy[J]. Optics Express, 2006, 14(18): 8263-8268.
[9] [9] PARK Y K, YAMAUCHI T, CHOI W, et al. Spectroscopic phase microscopy for quantifying hemoglobin concentrations in intact red blood cells[J]. Optics Letters, 2009, 34(23): 3668-3670.
[10] [10] PHAM H, BHADURI B, DING H, et al. Spectroscopic diffraction phase microscopy[J]. Optics Letters, 2012, 37(16): 3438-3440.
[11] [11] JUNG J, PARK Y K. Experimental observations of spectral changes produced by individual microscopic spheres.[J]. Optics Letters, 2015, 40(6): 1093-1096.
[12] [12] IKEDA T, POPESCU G, DASARI R R, et al. Hilbert phase microscopy for investigating fast dynamics in transparent systems[J]. Optics Letters, 2005, 30(10): 1165-1167.
[13] [13] POPESCU G, IWAI H, VAUGHAN J C, et al. Fourier phase microscopy for investigation of biological structures and dynamics[J]. Optics Letters, 2004, 29(21): 2503-2505.
[14] [14] SHAN M, KANDEL M E, MAJEED H, et al. White-light diffraction phase microscopy at doubled space-bandwidth product.[J]. Optics Express, 2016, 24(25): 29033-29039.
[15] [15] XUE Liang, Optical microscopy imaging and its application in bio-sample display and measurement[D]. Nanjing: Nanjing University of Science & Technology, 2013.
[16] [16] PHAM H, DING H, SOBH N, et al. Off-axis quantitative phase imaging processing using CUDA: toward real-time applications[J]. Biomedical Optics Express, 2011, 2(7): 1781-1793.
[17] [17] GOLDSTEIN R M, ZEBKER H A, WERNER C L. Satellite radar interferometry: Two-dimensional phase unwrapping[J]. Radio Science, 1988, 23(4): 713-720.
[18] [18] ZHENG C, ZHOU R, KUANG C, et al. Digital micromirror device-based common-path quantitative phase imaging[J]. Optics Letters, 2017,42(7): 1448-1451.
[19] [19] FUJINOTO Y. Sheath liquid for particle analyzer: US, US7824916[P]. 2010-11-02.
[20] [20] ADAM R D. Biology of Giardia lamblia[J]. Clinical Microbiology Reviews, 2001, 14(3): 447-475.
[21] [21] SCHURMANN M, SCHOLZE J, MULLER P, et al. Cell nuclei have lower refractive index and mass density than cytoplasm[J]. Journal of Biophotonics, 2016, 9(10): 1068-1076.
[22] [22] ZHAO H, BROWN P H, SCHUCK P. On the distribution of protein refractive index increments[J]. Biophysical Journal, 2011, 100(9): 2309-2317.
[23] [23] BHADURI B, KANDEL M, BRUGNARA C, et al. Optical assay of erythrocyte function in banked bood[J]. Scientific Reports, 2014, 4: 6211-6216.
[24] [24] YIN Bao-guo, XU Xin, ZHANG Bao-hua, et al. Detection of Giardia lamblia and Cryptosporidium parvum[J]. City and Town Water Supply, 2006, 2: 22-25.
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YANG Gang, DUAN-MU Qing-duo, LI Feng, YANG Li-mei, HUANG Wei. Development of Diffraction Phase Microscopy and Its Quantitative Investigation of Giardia Lamblia[J]. Acta Photonica Sinica, 2018, 47(6): 611001
Received: Dec. 21, 2017
Accepted: --
Published Online: Sep. 7, 2018
The Author Email: Gang YANG (1712952199@qq.com)