• Optics and Precision Engineering
  • Vol. 19, Issue 3, 651 (2011)
YU Hai-xia*, LI Da-chao, LIU Tong-kun, and XU Ke-xin
Author Affiliations
  • [in Chinese]
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    DOI: Cite this Article
    YU Hai-xia, LI Da-chao, LIU Tong-kun, XU Ke-xin. Interstitial fluid transdermal extraction tool based on microfluidics technology[J]. Optics and Precision Engineering, 2011, 19(3): 651 Copy Citation Text show less
    References

    [1] KLONOFF D C. A review of continuous glucose monitoring technology [J]. Diabetes Technology & Therapeutics, 2005,7(5):770-775.

    [2] MITRAGOTRI S, COLEMAN M, KOST J, et al.. Analysis of ultrasonically extracted interstitial fluid as a predictor of blood glucose levels [J]. Journal of Applied Physiology, 2000,89(3):961-966.

    [3] TIESSEN R G, RHEMREV-BOOM M M, KORF J. Glucose gradient differences in subcutaneous tissue of healthy volunteers assessed with ultraslow microdialysis and a nanolitre glucose sensor [J]. Life Sciences, 2002, 70(21):2457-2466.

    [4] GARG S K, POTTS R O, ACKERMAN N R, et al.. Correlation of fingerstick blood glucose measurements with GlucoWatch biographer glucose results in young subjects with type 1 diabetes [J]. Diabetes Care, 1999,22(10):1708-1714.

    [5] GUERCI B, FLORIOT M, BOHME P, et al.. Clinical performance of CGMS in type 1 diabetic patients treated by continuous subcutaneous insulin infusion using insulin analogs [J]. Diabetes Care, 2003,26(3):582-589.

    [6] BURGE M R, MITCHELL S, SAWYER A, et al.. Continuous glucose monitoring: the future of diabetes management [J]. Diabetes Spectrum, 2008,21(2):112-119.

    [7] BECK R W, HIRSCH I B, LAFFEL L, et al.. The effect of continuous glucose monitoring in well-controlled type 1 diabetes [J]. Diabetes Care, 2009,32(8):1378-1383.

    [8] TAMBORLANE W V, BECK R W, BODE B W, et al.. Continuous glucose monitoring and intensive treatment of type 1 diabetes [J]. The New England Journal of Medicine, 2008,359(14):1464-1476.

    [9] MITRAGOTRI S. Synergistic effect of enhancers for transdermal drug delivery [J]. Pharmaceutical Research, 2000,17(11):1354-1359.

    [10] KOST J, MITRAGOTRI S, GABBAY R A, et al.. Transdermal monitoring of glucose and other analytes using ultrasound [J]. Nature Medicine, 2000,6:347-350.

    CLP Journals

    [1] XU Ke-xin, CHEN Xiao-long, LI Da-chao, YU Hai-xia. Minimally invasive continuous blood glucose monitor based on microfluidic and enzyme colorimetric technologies[J]. Optics and Precision Engineering, 2018, 26(11): 2615

    [2] YANG Lu-xia, HAO Xiao-jian, WANG Chun-shui, ZHANG Bin-zhen, WANG Wan-jun. Three-dimensional focusing microfluidic chip[J]. Optics and Precision Engineering, 2013, 21(9): 2309

    [3] YE Xiong-ying, LI Zi-shang, FENG Jin-yang, MA Zeng-shuai. Hydrophilic modification of PMMA and PDMS based on silicon dioxide sputtering[J]. Optics and Precision Engineering, 2014, 22(8): 2096

    YU Hai-xia, LI Da-chao, LIU Tong-kun, XU Ke-xin. Interstitial fluid transdermal extraction tool based on microfluidics technology[J]. Optics and Precision Engineering, 2011, 19(3): 651
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