Ultra-Wideband and 60 GHz Communications for Biomedical Applications Softcover reprint of the original 1st ed. 2014 Edition

Ultra-Wideband and 60 GHz Communications for Biomedical Applications Softcover reprint of the original 1st ed. 2014 Edition book cover

Ultra-Wideband and 60 GHz Communications for Biomedical Applications Softcover reprint of the original 1st ed. 2014 Edition

Author(s): Mehmet R. Yuce

  • Publisher: Springer
  • Publication Date: August 23, 2016
  • Edition: Softcover reprint of the original 1st ed. 2014
  • Language: English
  • Print length: 272 pages
  • ISBN-10: 1489978402
  • ISBN-13: 9781489978400

Book Description

This book investigates the design of devices, systems, and circuits for medical applications using the two recently established frequency bands: ultra-wideband (3.1-10.6 GHz) and 60 GHz ISM band. These two bands provide the largest bandwidths available for communication technologies and present many attractive opportunities for medical applications. The applications of these bands in healthcare are wireless body area network (WBAN), medical imaging, biomedical sensing, wearable and implantable devices, fast medical device connectivity, video data transmission, and vital signs monitoring. The recent technological advances and developments proposed or used in medicine based on these two bands are covered. The book introduces possible solutions and design techniques to efficiently implement these systems in medical environment.

All individual chapters are written by leading experts in their fields.  Contributions by authors are on various applications of ultra-wideband and the 60 GHz ISM band including circuit implementation, UWB and 60 GHz signal transmission around and in-body, antenna design solution, hardware implementation of body sensors, UWB transceiver design, 60 GHz transceiver design, UWB radar for contactless respiratory monitoring, and ultra-wideband based medical Imaging. The book will be a key resource for medical professionals, bio-medical engineers, and graduate and senior undergraduate students in computer, electrical, electronic and biomedical engineering disciplines.

Editorial Reviews

From the Back Cover

This book investigates the design of devices, systems, and circuits for medical applications using the two recently established frequency bands: ultra-wideband (3.1-10.6 GHz) and 60 GHz ISM band. These two bands provide the largest bandwidths available for communication technologies and present many attractive opportunities for medical applications. The applications of these bands in healthcare are wireless body area network (WBAN), medical imaging, biomedical sensing, wearable and implantable devices, fast medical device connectivity, video data transmission, and vital signs monitoring. The recent technological advances and developments proposed or used in medicine based on these two bands are covered. The book introduces possible solutions and design techniques to efficiently implement these systems in medical environment.

All individual chapters are written by leading experts in their fields. Contributions by authors are on various applications of ultra-wideband and the 60 GHz ISM band including circuit implementation, UWB and 60 GHz signal transmission around and in-body, antenna design solution, hardware implementation of body sensors, UWB transceiver design, 60 GHz transceiver design, UWB radar for contactless respiratory monitoring, and ultra-wideband based medical Imaging. The book will be a key resource for medical professionals, bio-medical engineers, and graduate and senior undergraduate students in computer, electrical, electronic and biomedical engineering disciplines.

About the Author

Mehmet R. Yuce, PhD, is Senior Lecturer of Electrical and Computer Systems at Monash University, Victoria, Australia, and a Senior Member of IEEE. He holds a doctorate in Electrical Engineering from North Carolina State University.

View on Amazon

未经允许不得转载:Wow! eBook » Ultra-Wideband and 60 GHz Communications for Biomedical Applications Softcover reprint of the original 1st ed. 2014 Edition