Abstract-This letter describes a data telemetry biomedical experiment. An implant, consisting of a biometric data sensor, electronics, an antenna and a biocompatible capsule is described. All the elements were co-designed, in order to maximize the transmission distance. The device was implanted in a pig for an in vivo experiment of temperature monitoring.
Abstract-A novel system for remote monitoring of metabolism in an animal model is proposed in this paper. The system is obtained by integrating bio-nano-sensors to detect singlemetabolites, an electrochemical front-end made with off-the-shelf components, a radio frequency communication sub-system, and an antenna of new design. The system has been calibrated and tested for continuous monitoring of four different metabolites: glucose, lactate, glutamate, and adenosine triphosphate. Tests using animal models (mice) have been conducted to investigate tissue inflammation induced by the implanted bio-nano-sensors. These tests confirm that our system is suitable and reliable for remote monitoring of single-metabolites in experiments with animal models.
A novel system for remote monitoring of metabolism in animal model is proposed in this paper. The system is obtained by integrating Bio-Nano-Sensors to detect singlemetabolites, an electrochemical front-end made with offthe-shelf components, an RF communication sub-system, and an antenna of new design. The system has been calibrated and tested for continuous monitoring of four different metabolites: glucose, lactate, glutamate, and adenosine triphosphate (ATP). Tests with animal models (mice) have been conducted to investigate tissue inflammation induced by the implanted Bio-NanoSensors. The tests confirmed that our system is suitable and reliable for remote monitoring of single-metabolites in experiments with animal models.
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