Biohybrid Systems

Nerves, Interfaces, and Machines

Ranu Jung (Herausgeber)

Buch | Hardcover
XIV, 210 Seiten
2011 | 1. Auflage
Wiley-VCH (Verlag)
978-3-527-40949-5 (ISBN)
135,00 inkl. MwSt
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The newest, high-level work on this hot topic in medical physics
Covering the issue from principles of neuroscience to in-vivo use
Accessible for engineers and physicists alike
With extensive data tables in the appendix and software samples on the web.
The discipline of neurodesign is a highly interdisciplinary one, while at the same time in the process of maturing towards real-life applications. The breakthrough about to be achieved is to close the loop in communication between neural systems and electronic and mechatronic systems and actually let the nervous system adapt to the feedback from the man-made systems. To master this loop, scientists need a sound understanding of neurology, from the cellular to the systems scale, of man-made systems and how to connect the two. These scientists comprise medical scientists, neurologists and physiologists, engineers, as well as biophysicists. And they need the topics in a coherently written work with chapters building upon another.

Ranu Jung holds the Wallace H. Coulter Eminent Scholars Chair in Biomedical Engineering at Florida International University, USA where she is Professor and Chair of the Biomedical Engineering Department. She joined Florida International in 2011 from Arizona State University where she was founding co-director of the Center for Adaptive Neural Systems. She has also co-founded Advensys LLC, a small business R&D company and previously was President of the Organization for Computational Neurosciences, Inc. a non-profit that serves a global community of computational neuroscientists. Jung received her first degree in Electronics & Communication Engineering from National Institute of Technology-Warangal, India and her Masters and Doctorate degrees in Biomedical Engineering from Case Western Reserve University, USA. She is actively engaged in the development of neurotechnology that is inspired by biology, is adaptive and could be used to promote adaptation in the nervous system to overcome neurological disability or trauma.

Merging Technology with Biology
Principles of Computational Neuroscience
Neuromorphic Electronic Design
Principles of Neural Signal Processing
Dynamic Clamp in Biomimetic and Biohybrid Living- Hardware Systems
Biohybrid Circuits: Nanotransducers Linking Cells and Neural Electrodes
Hybrid Systems Analysis: Real- time Systems for Design and Prototyping of Neural Interfaces and Prostheses
Biomimetic Adaptive Control Algorithms
Neuromorphic Hardware for Control
Biohybrid Systems for Neurocardiology
Bioelectronic Sensing of Insulin Demand

"This text offers a detailed overview of recent advances in biohybrid systems interfacing nerves, muscles and machines ... The chapters are well written and despite being a multi-authored work there is little repetition and good links to other sections." ( Electrodiagnostics and Clinical Engineering , 2012)

Erscheint lt. Verlag 25.10.2011
Verlagsort Weinheim
Sprache englisch
Maße 170 x 240 mm
Gewicht 595 g
Themenwelt Naturwissenschaften Physik / Astronomie Angewandte Physik
Technik Elektrotechnik / Energietechnik
Technik Umwelttechnik / Biotechnologie
Schlagworte Biohybrid • biomedical engineering • Biomedizinische Technik • Biomedizintechnik • Biophysics • Biophysik • Electrical & Electronics Engineering • Electrical & Electronics Engineering • Elektrotechnik u. Elektronik • Medical Science • Medizin • Neurologie • Neurology • Physics • Physik • Robotics • Robotik
ISBN-10 3-527-40949-1 / 3527409491
ISBN-13 978-3-527-40949-5 / 9783527409495
Zustand Neuware
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