Jeong Ran-A, Hwang Jae Youn, Joo Segyeong, Chung Taek Dong, Park Sejin, Kang Sun Kil, Lee Won-Yong, Kim Hee Chan
Department of Biomedical Engineering, College of Medicine and Institute of Medical and Biological Engineering, Medical Research Center, Seoul National University, 28 Yongon Dong, Chongno Gu, Seoul 110-744, South Korea.
Biosens Bioelectron. 2003 Dec 15;19(4):313-9. doi: 10.1016/s0956-5663(03)00219-7.
A new two-point calibration method for the subcutaneous amperometric continuous glucose sensor is reported. The proposed method is based on direct measurement of the background current (I(o)) using a non-enzyme electrode. For in vivo test, three electrodes were implanted in rabbits. Two of the three were identical needle-type enzyme electrodes with perfluorinated polymer outer layers (Pt/enzyme layer/Kel-F/PTFE/Kel-F/Nafion) that were placed in subcutaneous tissue and in a vessel (ear artery), respectively. And one non-enzyme electrode with exactly the same membrane composition as those of other two was in the subcutaneous layer to measure the background current. Implantation in the subcutaneous layer generated many crevices on the protecting layers of the electrodes. The signals from enzyme electrodes were effectively corrected by the measured background current from the non-enzyme electrode. In addition, a telemetric monitoring system was developed and evaluated for in vivo continuous glucose monitoring in order to alleviate the problems of motion artifact.
报道了一种用于皮下安培型连续葡萄糖传感器的新型两点校准方法。所提出的方法基于使用非酶电极直接测量背景电流(I(o))。对于体内测试,将三个电极植入兔子体内。三个电极中的两个是相同的针型酶电极,其具有全氟聚合物外层(Pt/酶层/Kel-F/聚四氟乙烯/Kel-F/纳夫ion),分别放置在皮下组织和血管(耳动脉)中。并且一个与其他两个电极具有完全相同膜组成的非酶电极位于皮下层以测量背景电流。植入皮下层会在电极的保护层上产生许多缝隙。来自酶电极的信号通过非酶电极测量的背景电流得到有效校正。此外,为了缓解运动伪影问题,开发并评估了一种用于体内连续葡萄糖监测的遥测监测系统。