方暉(南開大學教授)

性 別: 男

所屬部門: 現代光學研究所

行政職務:

職 稱: 教授

學 歷: 博士

所學專業: 光學成像

研究方向: 光譜成像,光聲探測技術

基本介紹

  • 中文名:方暉
  • 出生地:湖南嶽陽
  • 出生日期:1973年
  • 職業:教師
  • 畢業院校:中國科學技術大學,南開大學光學研究所
人物經歷,研究方向,主要貢獻,論文專著,

人物經歷

分別於1994年和1997年在中國科學技術大學物理系獲學士和光學碩士,於2000年在南開大學現代光學研究所獲光學工程學博士,於2005年在美國波士頓大學物理系獲物理學博士。隨後在哈佛大學醫學院和聖路易斯華盛頓大學生物醫學工程系從事博士後研究,於2008年回南開大學任職。
方暉

研究方向

曾經所涉及的研究領域包括近場光學衍射計算、數位化圖像白光信息處理、共聚焦顆粒散射光譜顯微成像、基於顆粒光聲效應的流速測量等。

主要貢獻

在這些研究方面作為主要作者曾在包括PNAS期刊發表科研論文。並已為國外的期刊Optics Express, Optical Letters, Applied Optics, J. Biomedical Optics, IEEE Trans. on Instrumentation and Measurement ,以及國內的期刊Chinese Physics B, 光學精密工程, 計算物理審稿。
研究課題以微納米顆粒的光學特性而展開,主要集中在兩個方向:一是基於顆粒光散射特性的超高解析度光譜成像技術,二是基於顆粒光吸收特性的光聲液體流速探測技術。前一個方向的工作基礎是與哈佛大學醫學院Lev Perelman教授小組的同事共同發展的“共聚焦光吸收及散射光譜的顯微成像技術”(見論文[15]、[6]),後一個方向的工作基礎是與聖路易斯華盛頓大學Lihong Wang教授小組的同事共同實驗發現的“光聲都卜勒效應”(見論文[17]、[16]),針對這兩個方向,在深入進行機理研究及發展相關技術的同時,還將積極尋求這些技術在成像光學、微納光學、生物醫學光學,以及流體力學中的實際套用。
科研項目、成果、獲獎、專利等情況: 科研項目:
2012.1-2014.12,教育部留學回國人員科研啟動基金(42批[2011]1139號), 3.0萬元
2011.1-2013.12,國家自然科學基金(11074134),37.0萬元
2010.1-2012.12, 教育部博士點新教師基金,3.6萬元
2012.1-2016.12,國家自然科學基金重點項目(61138003),參加
2010.4-2013.3,天津市套用基礎與前沿技術研究計畫 (10JCYBJC11500),參加
獎勵:
入選教育部2010年度新世紀優秀人才支持計畫 (NCET-10-0502)

論文專著

期刊論文:
[20] H. Fang, and L. V. Wang, “M-mode photoacoustic particle flow imaging,”Optics Letters, vol.34, pp.671-673, 2009.
[19] H. Fang, K. Maslov, and L. V. Wang, “Photoacoustic Doppler flow measurement in optically scattering media,” Applied Physics Letters, vol. 91, pp. 264103(1-3), 2007.
[18] H. Fang, K. Maslov, and L. V. Wang, “Photoacoustic Doppler effect from flowing small light-absorbing particles,” Physical Review Letters, vol. 99, pp. 184501(1-4), 2007.
[17] H. Fang, L. Qiu, E. vitkin, M. M. Zaman, C. Andersson, S. Salahuddin, L. M. Kimerer, P. B. Cipolloni, M. D. Modell, B. S. Turner, S. E. Keates, I. Bigio, I. Itzkan, S. D. Freedman, R. Bansil, E. B. Hanlon, and L. T. Perelman, “Confocal light absorption and scattering spectroscopic microscopy,” Applied Optics, vol. 46, pp. 1760-1769, 2007.
[16] H. Fang, M. Ollero, E. Vitkin, L. M. Kimerer, P. B. Cipolloni, M. M. Zaman, S. D. Freedman, I. J. Bigio, I. Itzkan, E. B. Hanlon, and L. T. Perelman, “Noninvasive sizing of subcellular organelles with light scattering spectroscopy,” IEEE J. Selected Topics in Quantum Electronics, vol. 9, pp. 267-276, 2003.
[15] H. Fang, G. Luo, P. Zhao, Z. L. Fang, and G. G. Mu, “The study of a new format color filter used for a digital camera,” 儀器儀表學報, vol. 22, pp. 277-282, 2001.
[14] H. Fang, G. Luo, Z. L. Fang, and G. G. Mu, “Deviation inspecting of DIP chip pin location based on Harr wavelet transformation,” 儀器儀表學報, vol. 21, pp.604-607, 2000.
[13] H. Fang, G. Luo, Z. L. Fang, and G. G. Mu, “Experimental study of a new color filter used for a digital camera,” 光電子雷射, vol. 11, pp. 579-582, 2000.

[12] P. Jia, Y. Yang, C. J. Min, H. Fang, and X. -C. Yuan, "Sidelobe-modulated optical vortices for free-space communication," Optics Letters, vol. 38, pp. 588-560, 2013.
[11] Z. Shen, Z. J. Hu, G. H. Yuan, C. J. Min, H. Fang, and X. -C. Yuan, "Visualizing orbital angular momentum of plasmonic vortices," Optics Letters, vol. 37, pp. 4627-4629, 2012.
[10] H. Bai, P. Chen, G. Q. Tang, L. Lin, H. Fang, G. G. Mu, W. Gong, Z. P. Liu, Z. B. Han, H. Zhao, and Z. C. Han, "Relations between reactive oxygen species and Raman spectral variations of human umbilical cord mesenchymal stem cells with different viability," Laser Physics, vol. 21, pp. 1122-1229, 2011.
[9] J. J. Bai, J. N. Li, H. Zhang, H. Fang, and S. J. Chang, "A porous terahertz fiber with randomly distributed air holes," Applied Physics B: Laser and Optics, vol. 103, pp. 381-386, 2011.
[8] H. Bai, P. Chen, H. Fang, L. Lin, G. Q. Tang, G. G. Mu, W. Gong, Z. P. Liu, H. Wu, H. Zhao, and Z. C. Han, "Detecting viability transitions of umbilical cord mesenchymal stem cells by Raman micro-spectroscopy," Laser Physics Letters, vol. 8, pp. 78-84, 2011.
[7] K. Lim, S. Salahuddin, L. Qiu, H. Fang, E. Vitkin, I. C. Ghiran, M. D. Modell, T. Takooudes, I. Itzkan, E. B. Hanlon, B. P. Sachs, and L. T. Perelman, “Light-scattering spectroscopy differentiates fetal from adult nucleated red blood cells: may lead to noninvasive prenatal diagnosis,”Optics Letters, vol.34, pp. 1483-1485, 2009.
[6] I. Itzkan, L. Qiu, H. Fang, M. M. Zaman, E. Vitkin, I. C. Ghiran, S. Salahuddin, M. Modell, C. Andersson, L. M. Kimerer, Cipolloni, Kee-Hak Lim, S. D. Freedman, I. Bigio, B. P. Sachs, E. B. Hanlon, and L. T. Perelman, “Confocal light absorption and scattering spectroscopic microscopy monitors organelles in live cells with no exogenous labels,” Proceedings of National Academy of Sciences(PNAS), vol. 104, pp. 17255-17260, 2007.
[5] G. Luo, O. Chutatape, and H. Fang, “Experimental study on nonuniformity of line jitter in CCD images,” Applied Optics, vol. 40, pp. 4716-4720, 2001.
[4] G. Luo, H. Fang, Z. L. Fang, and G. G. Mu, “Experimental studies on phase drift of digital images,” 儀器儀表學報, vol. 22, pp.65-71, 2001.
[3] G. Luo, H. Fang, Z. L. Fang, and G. G. Mu, “ Method for the deviation inspection of integrated circuit chip pin based on Harr wavelet transform,” Optical Engineering, vol. 39, pp. 1712-1716, 2000.
[2] J. P. Xie, W. M. Wu, H. Fang, X. H. Sun, Y. X. Wu, and H. Ming, “Boundary diffraction method for aperture near-field diffraction,” Chinese Physics Letters, vol. 16, pp. 811-813, 1999.
[1] J. P. Xie, H. Fang, S. T. Wang, W. M. Wu, G. Wang, Y. X. Wu, W. Gao, G. P. Zhang, and H. Ming, “Approach of near field diffraction pattern by the sampling theorem,” 光學學報, vol. 19, pp. 785-790, 1999.
會議論文:
[4] H. Fang, K. Maslov, and L. V. Wang, “M-mode photoacoustic flow imaging,” Proceedings of the SPIE (Photonics West Symposium: Photons Plus Ultrasound: Imaging and Sensing), vol. 7177, 71772M-(1-8), 2009.
[3] H. Fang and L. V. Wang, “Photoacoustic Doppler Flowmetry,” Proceedings of the SPIE (Photonics West Symposium: Photons Plus Ultrasound: Imaging and Sensing), vol. 6856, 68561M-(1-8), 2008.
[2] H. Fang, L. Qiu, S. Salahuddin, E. Vitkin, M. D. Modell, E. B. Hanlon, I. Itzkan, and L. T. Perelman, “Confocal light scattering spectroscopic microscopy for monitoring individual subcellular organelles,” in Biomedical Topical Meeting, OSA Technical Digest (The Optical Society of America, Washington, DC, 2006), TuH2.
[1] H. Fang, E. Vitkin, M. Ollero, I. Itzkan, E. B. Hanlon, and L. T. Perelman, “Light scattering spectroscopy for measuring subcellular organelles,” in Biomedical Topical Meeting, OSA Technique Digest (The Optical Society of America, Washington, DC, 2004), FF3.

專著:
[1] H. Fang and L. V. Wang, “Photoacoustic Doppler effect and flow sensing,” in 《Photoacoustic imaging and spectroscopy 》, ed. L. V. Wang (Taylor & Francis Group, 2009).

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