Feldman Ben, Brazg Ronald, Schwartz Sherwyn, Weinstein Richard
Therasense, Inc, Alameda, California 94502, USA.
Diabetes Technol Ther. 2003;5(5):769-79. doi: 10.1089/152091503322526978.
Wired Enzyme (Therasense, Alameda, CA) sensing technology for continuous measurement of in vivo glucose concentrations offers the benefits of (1). excellent sensor stability, (2). reduced susceptibility to variations of in vivo oxygen concentration, and (3). minimized response to common electroactive interferents. This study describes the response of 48 sensors (25 in the upper arm, 23 in the abdomen) implanted for 3 days in patients with Type 1 diabetes. Prospective calibration was performed using capillary blood; results were compared with venous plasma glucose values obtained at 15-min intervals. Ninety-eight percent of readings fell in the clinically accurate Clarke error grid zone A or clinically acceptable zone B. Choice of the site of the implanted sensor (upper arm vs. abdomen) or the capillary blood calibration site (arm vs. finger) did not affect system accuracy.
用于连续测量体内葡萄糖浓度的有线酶(Therasense公司,阿拉米达,加利福尼亚州)传感技术具有以下优点:(1)出色的传感器稳定性;(2)降低了对体内氧浓度变化的敏感性;(3)对常见电活性干扰物的响应降至最低。本研究描述了48个传感器(25个植入上臂,23个植入腹部)在1型糖尿病患者体内植入3天的响应情况。使用毛细血管血进行前瞻性校准;结果与每隔15分钟获得的静脉血浆葡萄糖值进行比较。98%的读数落在临床准确的克拉克误差网格A区或临床可接受的B区。植入传感器的部位(上臂与腹部)或毛细血管血校准部位(手臂与手指)的选择不影响系统准确性。