Department of Clinical and Experimental Medicine, Medical School, University of Sassari , Viale S. Pietro 43/b, 07100 Sassari, Italy.
Anal Chem. 2013 Nov 5;85(21):10282-8. doi: 10.1021/ac402071w. Epub 2013 Oct 21.
A new telemetry system for simultaneous detection of extracellular brain glucose and lactate and motion is presented. The device consists of dual-channel, single-supply miniature potentiostat-I/V converter, a microcontroller unit, a signal transmitter, and a miniaturized microvibration sensor. Although based on simple and inexpensive components, the biotelemetry device has been used for accurate transduction of the anodic oxidation currents generated on the surface of implanted glucose and lactate biosensors and animal microvibrations. The device was characterized and validated in vitro before in vivo experiments. The biosensors were implanted in the striatum of freely moving animals and the biotelemetric device was fixed to the animal's head. Physiological and pharmacological stimulations were given in order to induce striatal neural activation and to modify the motor behavior in awake, untethered animals.
一种新的遥测系统,用于同时检测细胞外脑葡萄糖和乳酸以及运动,现已面世。该设备由双通道、单电源微型电位计/I/V 转换器、微控制器单元、信号发射器和微型微振动传感器组成。尽管该生物遥测设备基于简单且廉价的组件,但它已被用于准确转换植入葡萄糖和乳酸生物传感器表面产生的阳极氧化电流以及动物微振动。该设备在进行体内实验之前已进行了体外特征描述和验证。生物传感器被植入自由活动动物的纹状体,生物遥测设备则固定在动物头部。对动物进行生理和药理学刺激,以诱导纹状体神经激活,并改变清醒、无束缚动物的运动行为。