• Chinese Optics Letters
  • Vol. 12, Issue 11, 111701 (2014)
Ya Su1、2, X. Steve1、2、3, Zhuo Meng1、2、4, Longzhi Wang1、2、5, Haimin Yu4, and Tiegen Liu1、2
Author Affiliations
  • 1Polarization Research Center, College of Precision Instrument &
  • 2Opto-electronics Engineering and Key Laboratory of Opto-electronics Information and Technical Science, Ministry of Education, Tianjin University, Tianjin 300072, China
  • 3General Photonics Corporation, 5228 Edison Avenue, Chino, California 91710, USA
  • 4Suzhou Opto-ring Co. Ltd., Suzhou 215123, China
  • 5College of Automobile and Transportation, Tianjin University of Technology and Education, Tianjin 300222, China
  • show less
    DOI: 10.3788/col201412.111701 Cite this Article Set citation alerts
    Ya Su, X. Steve, Zhuo Meng, Longzhi Wang, Haimin Yu, Tiegen Liu. Effect of temperature on noninvasive blood glucose monitoring in vivo using optical coherence tomography[J]. Chinese Optics Letters, 2014, 12(11): 111701 Copy Citation Text show less
    References

    [1] World Health Organization, "Health topics: diabetes: world diabetes day," http://www.who.int/mediacentre/events/annual/world_diabetes_day/en/index.html (2012).

    [2] J. H. Park, C. S. Kim, B. C. Choi, and K. Y. Ham, Biosens. Bioelectron. 19, 321 (2003).

    [3] L. A. Nelson, J. C. McCann, A. W. Loepke, J. Wu, B. B. Dor, and C. D. Kurth, J. Biomed. Opt. 11, 064022 (2006).

    [4] R. Liu, W. Chen, X. Gu, Y. Luo, and K. X. Xu, Proc. SPIE 5702, 30 (2005).

    [5] S. L. Yu, D. C. Li, H. Chong, C. Y. Sun, H. X. Yu, and K. X. Xu, Biomed. Opt. Express 5, 275 (2014).

    [6] A. M. Enejder, T. G. Scecina, J. Oh, M. Hunter, W. C. Shih, S. Sasic, G. L. Horowitz, and M. S. Feld, J. Biomed. Opt. 1, 031114 (2005).

    [7] F. Hussain, D. J. S. Birch, and J. C. Pickup, Anal. Biochem. 339, 137 (2005).

    [8] R. R. Ansari, S. B?clde, and L. Rovati, J. Biomed. Opt. 9, 103 (2004).

    [9] Z. Ren, G. Liu, and Z. Huang, Chin. Opt. Lett. 11, S21701 (2013).

    [10] L. Zhu, J. Lin, B. Lin, and H. Li, Chin. Opt. Lett. 11, 021701 (2013).

    [11] R. O. Esenaliev, K. V. Larin, I. V. Larina, and M. Motamedi, Opt. Lett. 26, 992 (2001).

    [12] R. V. Kuranov, V. V. Sapozhnikova, D. S. Prough, I. Cice-naite, and R. O. Esenaliev, J. Diabetes Sci. Technol. 1, 470 (2007).

    [13] M. Kinnunen, R Myllyl?, T. Jokela, and S. Vainio, Appl. Opt. 45, 2251 (2006).

    [14] M. G. Ghosn, N. Sudheendran, M. Wendt, A. Glasser, V. V. Tuchin, and K. V. Larin, J. Biophoton. 3, 25 (2010).

    [15] O. S. Khalil, Diabetes Technol. Therap. 6, 660 (2004).

    [16] V. V. Sapozhnikova, R. V. Kuranov, I. Cicenaite, R. O. Es-enaliev, and D. S. Prough, J. Biomed. Opt. 13, 021112 (2008).

    [17] V. V. Sapozhnikova, D. Prough, R. V. Kuranov, I. Cicenaite, and R. O. Esenaliev, Exp. Biol. Med. 231, 1323 (2006).

    [18] K. V. Larin, M. Motamedi, T. V. Ashitkov, and R. O. Esenaliev, Phys. Med. Biol. 48, 1371 (2003).

    [19] R. V. Kuranov, V. V. Sapozhnikova, D. S. Prough, I. Cicenaite, and R. O. Esenaliev, Phys. Med. Biol. 51, 3885 (2006).

    [20] Y. Hori and Y. Yasuno, Opt. Express 14, 1862 (2006).

    [21] J. Welzel, Res. Technol. 7, 1 (2001).

    [22] Y. M. Liew, R. A. McLaughlin, F. M. Wood, and D. D. Sampson, Biomed. Opt. Express 3, 1774 (2012).

    [23] Y. Su, Z. Meng, L. Z. Wang, H. M. Yu, T. G. Liu, and X. T. Yao, Chin. J. Lasers 41, 0704002 (2014).

    [24] J. Laufer, R. Simpson, M. Kohl, M. Essenpreis, and M. Cope, Phys. Med. Biol. 43, 2479 (1998).

    [25] S. J. Yeh, O. S. Khalil, C. F. Hanna, S. Kantor, X. Wu, T. W. Jeng, and R. A. Bolt, Proc. SPIE 4250, 455 (2001).

    [26] O. S. Khalil, S. J. Yeh, M. G. Lowery, X. M. Wu, C. F. Hanna, S. Kantor, T. W. Jeng, J. Kanger, R. A. Bolt, and F. F. M. de Mul, J. Biomed. Opt. 8, 191 (2003).

    [27] J. Allen, J. R. Frame, and A. Murray, Physiol. Meas. 23, 365 (2002).

    [28] K. V. Larin, M. S. Eledrisi, M. Motamedi, and R. O. Esenaliev, Diabetes Care 25, 2263 (2002).

    [29] J. E. Grunwald, C. E. Riva, D. B. Martin, A. R. Quint, and P. A. Epstein, Ophthalmology 94, 1614 (1987).

    [30] M. A. Pleitez, T. Lieblein, A. Bauer, O. Hertzberg, H. V. Lilienfeld-Toal, and W. Ma¨ntele, Anal. Chem. 85, 1013 (2012).

    CLP Journals

    [1] Jing Chai, Mingjiang Zhang, Yi Liu, Lan Li, Weipeng Xu, Yuncai Wang. Distributed fiber temperature sensor using a laser diode modulated by a pseudo-random bit sequence[J]. Chinese Optics Letters, 2015, 13(8): 080604

    [2] Ya Su, X. Steve, Zhuo Meng, Longzhi Wang, Haimin Yu, Tiegen Liu. Effect of temperature on noninvasive blood glucose monitoring in vivo using optical coherence tomography-corrigendum[J]. Chinese Optics Letters, 2014, 12(12): 123501

    Data from CrossRef

    [2] Haifeng Hu, Jin Li, Hanyang Li, Riqing Lv. Research on the glucose-sensing characteristics of gold microparticle-doped silica microfiber based on refractive index measurement. Applied Physics B, 122(2016).

    Ya Su, X. Steve, Zhuo Meng, Longzhi Wang, Haimin Yu, Tiegen Liu. Effect of temperature on noninvasive blood glucose monitoring in vivo using optical coherence tomography[J]. Chinese Optics Letters, 2014, 12(11): 111701
    Download Citation