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Wireless Power Transfer and Data Communication for Intracranial Neural Recording Applications, 1st ed. 2020 Analog Circuits and Signal Processing Series

Langue : Anglais

Auteurs :

Couverture de l’ouvrage Wireless Power Transfer and Data Communication for Intracranial Neural Recording Applications

This book describes new circuits and systems for implantable wireless neural monitoring systems and explains the design of a batteryless, remotely-powered implantable micro-system, designed for continuous neural monitoring. Following new trends in implantable biomedical applications, the authors demonstrate a system which is capable of efficient remote powering and reliable data communication. Novel architecture and design methodologies are used for low power and small area wireless communication link. Additionally, hermetically sealed packaging and in-vivo validation of the implantable device is presented.

Chapter 1. Introduction.- Chapter 2. Implantable Monitoring System for Epilepsy.- Chapter 3. Powering of the Implanted Monitoring System.- Chapter 4. Wireless Data Communication.- Chapter 5. Experimental Validations.- Chapter 6. Conclusion.

Kerim Türe received his B.S. degrees in both Electrical and Electronics Engineering & Physics from Boğaziçi University, Istanbul, Turkey in 2012, the M.Sc. degree in Electrical and Electronics Engineering from Swiss Federal Institute of Technology, Lausanne (EPFL), Lausanne, Switzerland, in 2014. He received his Ph.D. degree on wireless power transmission and radio frequency communication in RFIC Research Group at EPFL in 2019. His research interests include low-power analog and RF CMOS integrated circuit design for wireless sensor systems and biomedical applications.

Catherine Dehollain (M’93) received the Master’s degree in electrical engineering and the Ph.D. degree from the Swiss Federal Institute of Technology, Lausanne (EPFL), Switzerland, in 1982 and 1995, respectively. From 1982 to 1984, she was a Research Assistant at the Electronics Laboratories (LEG), EPFL. In 1984, she joined the Motorola European Center for Research and Development, Geneva, Switzerland, where she designed integrated circuits applied to telecommunications. In 1990, she joined EPFL as a Senior Assistant at the "Chaire des Circuits et Systemes," where she was involved in impedance broadband matching. Since 1995, she has been responsible for the EPFL-RFIC Group for RF activities. She has been the technical project manager of the European projects, Swiss CTI projects, and the Swiss National Science Foundation projects dedicated to mobile phones, RF wireless micropower sensor networks, and biomedical applications. Since 1998, she has been a Lecturer at EPFL in the area of RF circuits, electric filters, and CMOS analog circuits. From 2006 to 2014, she was a Maitre d’Enseignement et de Recherche (MER) at EPFL. Since 2014, she has been Adjunct Professor at EPFL. She is an author or coauthor of six scientific books and 180 scientific publications. Her research interests include low-power analog circuits, biomedical remotely powered sensors, and electric filters.

Franco Maloberti (A
Provides up-to-date summaries of remote powering and wireless communication methods Describes methods for improving the efficiency of remote powering and wireless communication Includes a new topology for an energy and area efficiency ultrawideband transmitter Provides in-vivo validation of the proposed circuits

Date de parution :

Ouvrage de 112 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

52,74 €

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Date de parution :

Ouvrage de 112 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

52,74 €

Ajouter au panier