Acta Optica Sinica, Volume. 32, Issue 4, 430005(2012)
Fluorescent Emission of Erythrocyte Suspension with Time-Resolved Fluorescence Spectrometer
[1] [1] J. Haapaniemi, A. Schrey, E. Laurikainen. The effect of promontorial bone on laser light transmission in measuring capillary blood flow in vivo [J]. Eur. Arch Otorhinolaryngol., 2001, 258(5): 209~212
[2] [2] J. V. Kruchenok, S. B. Bushuk, G. I. Kurilo et al.. Orientation of red blood cells and rouleaux disaggregation in interference laser fields [J]. J. Biol. Phys., 2005, 31(1): 73~85
[3] [3] O. G. Bondarenko, G. K. Popov. Effect of low-intensity laser radiation on peripheral blood eosinophils [J]. Bulletin of Experimental Biology and Medicine, 2004, 138(5): 510~512
[5] [5] Yao Baofu, Zhou Huijun. Effect of semiconductor laser extravascular irradiation on blood biochemical parameters [J]. Chinese J. General Practice, 2011, 9(5): 740~741
[6] [6] Xu Jingou, Wang Zunben. Method of Fluorescence Analysis (3rd Edition) [M]. Beijing: Science Press, 2006. 162~167
[7] [7] Cheng Cheng, Lin Yanguo, Yan Jinhua. Red shift of photoluminescence spectrum of CdSe/ZnS-quantum-dot dpoed fiber [J]. Acta Optica Sinica, 2011, 31(4): 0406002
[11] [11] Zhihua Lü, Yan Sun, Yuanhong Wang et al.. Ultrasensitive capillary eectrophoresis of oligoguluronates with laser-Induced fluorescence detection [J]. Chromatographia, 2005, 61(6): 615~618
[12] [12] L. S. Jr., J. B. Filho, F. L. Silveira et al.. Laser-induced fluorescence at 488 nm excitation for detecting benign and malignant lesions in stomach mucosa [J]. J. Fluorescence, 2008, 18(1): 35~40
[13] [13] V. M. Fomin, A. M. Karas′kov, P. M. Larionov et al.. Determination of myocardium viability on the basis of the spectra of laser-induced fluorescence [J]. Doklady Biol. Sci., 2003, 391(1-6): 296~298
[14] [14] R. Hage, P. R. Galhanone, R. A. Zangaro et al.. Using the laser-induced fluorescence spectroscopy in the differentiation between normal and neoplastic human breast tissue [J]. Lasers Med. Sci., 2003, 18(3): 171~176
[15] [15] Pramod V. Butte, Adam N. Mamelak, Miriam Nuno et al.. Fluorescence lifetime spectroscopy for guided therapy of brain tumors [J]. NeuroImage, 2011, 54(suppl.): S125~S135
[16] [16] Fei Ding, Guangyu Zhao, Jinli Huang et al.. Fluorescence spectroscopic investigation of the interaction between chloramphenicol and lysozyme [J]. Eur. J. Medicinal Chem., 2009, 44(10): 4083~4089
[17] [17] M. S. Roberts, Y. Dancik, T. W. Prow et al.. Non-invasive imaging of skin physiology and percutaneous penetration using fluorescence spectral and lifetime imaging with multiphoton and confocal microscopy [J]. Eur. J. Pharm. and Biopharm., 2011, 77(3): 469~488
[18] [18] T. Ando, E. Kobayashi, H. Liao et al.. Precise comparison of protoporphyrin IX fluorescence spectra with pathological results for brain tumor tissue identification [J]. Brain Tumor Pathol., 2011, 28(1): 43~51
[19] [19] Cheng Jiji. Optics Biophysics [M]. Beijing: Higher Education Press, 1987.238
[20] [20] Zhu Zhongyong. Practical Medicine Examination Course (1st Edition) [M]. Beijing: People′s Military Medical Press, 1992. 84~86
[21] [21] M. B. Ericson, S. Grapengiesser, F. Gudmundson et al.. A spectroscopic study of the photobleaching of protoporphyrin IX in solution [J]. Lasers Med. Sci., 2003, 18(1): 56~62
Get Citation
Copy Citation Text
Han Caiqin, Duan Peitong, Liu Ying, Luo Xiaosen, Ni Xiaowu. Fluorescent Emission of Erythrocyte Suspension with Time-Resolved Fluorescence Spectrometer[J]. Acta Optica Sinica, 2012, 32(4): 430005
Category: Spectroscopy
Received: Nov. 15, 2011
Accepted: --
Published Online: Apr. 19, 2012
The Author Email: Caiqin Han (hancqin@163.com)