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Titlebook: Remote Powering and Data Communication for Implanted Biomedical Systems; Enver Gurhan Kilinc,Catherine Dehollain,Franco Mal Book 2016 Spri

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Introduction,dical systems improve the healthcare quality which promotes the comfort of the human at low cost. Especially, miniaturization of the systems allows to implant the devices in the body. The implanted devices need to be replaced at the end of their lifetime. Therefore, the low-power electronic is requi
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Implantable Monitoring System for Rodents,lantable multi-sensor system is illustrated. The recent studies on implantable systems for small animal are investigated. In addition, the state of the art is presented. The challenges of the remotely powered system for freely moving small animal are defined. Moreover, the objectives of the overall
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Intelligent Remote Powering System,fore, an Intelligent Remote Powering (IRPower) system is proposed in this chapter. IRPower system tracks the animal in the living space and guarantees the efficient power delivery to the implantable system. IRPower system consists of X & Y rails, magnetic field sensors and system manager. The X & Y
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System Integration and Packaging, micro-system are presented. The drug monitoring measurements are verified. The implantable remote powering and communication system occupies 0.33 cm. and weighs 1.05 g which is suitable for the small laboratory animals.
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Conclusion,ro-system is suitable to implant inside a patient and allows to monitor the patient continuously for long-term duration. The patient monitoring is essential to diagnose correctly and develop a personalized therapy. On the other hand, many treatments and medications are developed by using the small l
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Wireless Communication,d channel to achieve reliable communication since the animal moves freely in the living cage. A low-power transmitter is implemented and a custom designed receiver is realized. For the downlink communication, the commands that are sent by the external unit are received and demodulated by a PPM demodulator.
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