IEEE Transactions on Biomedical Engineering · 2015 · 17 citations · 9 references
Small AnimalsEngineeringWearable TechnologyBiomedical EngineeringRadio Frequency IdentificationWireless Implantable DeviceContinuous MonitoringPatient MonitoringTelehealthProprietary Telemetry SystemsHealth SciencesImplantable SensorRfid TechnologyDigital Data StreamsImplantable DevicesPreclinical ResearchPhysiologyBioelectronicsElectrophysiologyWearable Sensor
Telemetry systems enable researchers to continuously monitor physiological signals in unrestrained, freely moving small rodents. Drawbacks of common systems are limited operation time, the need to house the animals separately, and the necessity of a stable communication link. Furthermore, the costs of the typically proprietary telemetry systems reduce the acceptance. The aim of this paper is to introduce a low-cost telemetry system based on common radio frequency identification technology optimized for battery-independent operational time, good reusability, and flexibility. The presented implant is equipped with sensors to measure electrocardiogram, arterial blood pressure, and body temperature. The biological signals are transmitted as digital data streams. The device is able of monitoring several freely moving animals housed in groups with a single reader station. The modular concept of the system significantly reduces the costs to monitor multiple physiological functions and refining procedures in preclinical research.
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Cong Peng, Nattapon Chaimanonart, Wen H. Ko et al. · IEEE Journal of Solid-State Circuits · 2009 · 187 citations
Blood Pressure Monitoring, Energy Harvesting, Medical Electronics +13