光学 精密工程, 2011, 19 (3): 651, 网络出版: 2011-03-30   

基于微流体技术的组织液透皮抽取装置

Interstitial fluid transdermal extraction tool based on microfluidics technology
作者单位
天津大学 精密仪器与光电子工程学院 精密测试技术及仪器国家重点实验室,天津 300072
引用该论文

于海霞, 栗大超, 刘同坤, 徐可欣. 基于微流体技术的组织液透皮抽取装置[J]. 光学 精密工程, 2011, 19(3): 651.

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.

参考文献

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[3] . 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] . . 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] . . 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.

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[7] . . The effect of continuous glucose monitoring in well-controlled type 1 diabetes[J]. Diabetes Care, 2009, 32(8): 1378-1383.

[8] . . Continuous glucose monitoring and intensive treatment of type 1 diabetes[J]. The New England Journal of Medicine, 2008, 359(14): 1464-1476.

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

[10] . . Transdermal monitoring of glucose and other analytes using ultrasound[J]. Nature Medicine, 2000, 6: 347-350.

于海霞, 栗大超, 刘同坤, 徐可欣. 基于微流体技术的组织液透皮抽取装置[J]. 光学 精密工程, 2011, 19(3): 651. 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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