Produktbild: Handbook of Neuroengineering

Handbook of Neuroengineering

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Beschreibung

Produktdetails

Einband

Paperback

Herausgeber

Nitish V. Thakor

Verlag

Springer

Seitenzahl

2200

Maße (L/B/H)

23,5/15,5/23,5 cm

Auflage

1st ed. 2023

Sprache

Englisch

ISBN

978-981-16-5541-8

Beschreibung

Portrait

Nitish V. Thakor is the Director the Singapore Institute for Neurotechnology (SINAPSE) at the National University of Singapore, as well as Professor of Electrical and Computer Engineering and Biomedical Engineering at NUS. He maintains his position as a Professor of Biomedical Engineering, Electrical and Computer Engineering and Neurology at Johns Hopkins University in the USA. Dr. Thakor's technical expertise is in the field of Neuroengineering, including neural instrumentation, nuromorphic engineering, neural microsystems, optical imaging of the nervous system, neural control of prosthesis and brain machine interface and cognitive engineering. He has pioneered many technologies for brain monitoring to prosthetic arms and neuroprosthesis. He is an author of more than 290 refereed journal papers, more than a dozen patents, and co-founder of 3 companies. He is currently the Editor in Chief of Medical and Biological Engineering and Computing, and was the Editor in Chief of IEEE TNSRE from 2005-2011 and presently the EIC of Medical and Biological Engineering and Computing. Dr. Thakor is a recipient of a Research Career Development Award from the National Institutes of Health and a Presidential Young Investigator Award from the National Science Foundation, and is a Fellow of the American Institute of Medical and Biological Engineering, IEEE, Founding Fellow of the Biomedical Engineering Society, and Fellow of International Federation of Medical and Biological Engineering. He is a recipient of the award of Technical Excellence in Neuroengineering from IEEE Engineering in Medicine and Biology Society, Distinguished Alumnus Award from Indian Institute of Technology, Bombay, India, and a Centennial Medal from the University of Wisconsin School of Engineering. He has given more than 50 keynotes and plenary talks, and was the Chair of the IEEE Grand Challenges in Life Science Conference in 2013 and will chair IEEE BIOROB conference in Singapore in June 2016 and the Gordon Conference on Advanced Health Informatics in Hong Kong in July 2016.

Produktdetails

Einband

Paperback

Herausgeber

Nitish V. Thakor

Verlag

Springer

Seitenzahl

2200

Maße (L/B/H)

23,5/15,5/23,5 cm

Auflage

1st ed. 2023

Sprache

Englisch

ISBN

978-981-16-5541-8

Herstelleradresse

Springer Heidelberg
Tiergartenstr. 17
69121 Heidelberg
DE
buchhandel-buch@springer.com

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  • Produktbild: Handbook of Neuroengineering
  • 1.  Neural Sensors and Transducers         

     Neural electrodes (brain, spinal cord, periphery)

    Neurochemical sensors

    Optogenetic interface

    Tissue-engineered interfaces

    Ultrasonic interface

    Magnetic interface

     

    2.  Neural Circuits and Systems     

     Neural amplifiers

    Sensing and Manipulation of Brain Neurochemistry

    Neural recording and stimulation (bidirectional)

    Wireless power/data or neural recording or stimulation circuits

    Wireless capacitive/inductive interface

    Non-electrical Optogenetic, ultrasonic, magnetic interface

     

    3.  Neural Prostheses           

    Neural interface and upper limb prosthesis

    Neural interface and lower limb prosthesis

    Motor prosthesis

    Sensory prosthesis

    PNS interfaces

    Bidirectional Neural prosthesis

     

    4.  Brain Computer Interface and Brain Machine Interface      

    Brain computer interface (BCI) - noninvasive, nonivasive

    BCI algorithms, BCI applications

    Brain machine interface (BMI) for locomotion

    Brain-Computer Interfaces in Clinical Applications

    BMI - sensory prosthesis

    BMI - memory and learning, augmentation

     

    5.  Neuromorphic Engineering and Neurocomputing     

     Models of neurons, integrate and fire neurons

    Spiking network, spike encoding

    Neural network circuits

    Neuromorphic - touch, vision, auditory

    Neuromorphic locomotion (CPG)

    Neural computation on neuromorphic hardware

     

     6. Neurorehabilitation and Neurorobotics           

    Neuroprosthesis and functional electrical stimulation (peripheral)

    Robotic assisted therapy

    Telerehabilitation

    Virtual reality tools

    Augmentative and alternative communication

    Human augmentation

     
     7. Neuromodulation           

    Peripheral and visceral neuromodulation (models and systems)

    Spinal cord stimulation and restoration (models and systems)

    Cochlear implants

    Bionic vision (retinal prosthesis)

    Deep brain stimulation

    Optogenetic stimulation

    Functional electrical stimulation (FES)

    Non-invasive brain stimulation - (TMS, TDCS, FUS)

     

    8. Neural Signal Processing           

     Neural Encoding EEG signal processing and applications

    Evoked potential signal processing and applications

    Diagnosis and localization if epileptic events

    Neuromuscular activity

    Sleep analysis

     

    9. Cognitive Engineering   

     Human brain mapping

    EEG mapping

    Networks and connectivity

    Connectome analysis

    Computational brain imaging (physiological networks)

    Artificial intelligence

     

    10.  Neuroimaging     

      Brain imaging (overview)

    -    X-ray, CT, PET

    -    MRI, fMRI, dtMRI

    EEG mapping

    MEG mapping

    Neurophotonics

     

     11.  Clinical Neurotechnologies        

     Brain monitoring and diagnostics (EEG)

    Brain monitoring and diagnostics (evoked potentials)

    Brain monitoring - intensive care unit, operating room

    Brain monitoring - epilepsy unit

    Mobile and embedded devices

    Neurosurgical technologies

     

     12.  Neurotechnologies - Industry, Intellectual Property, Regulatory, Social and Ethical Issues       (TBD)

     Regulatory roadmap for new neurotechnologies

    Intellectual property protection

    Translating into clinical and industrial outcomes

    Clinical and social impact of neurotherapeutics and neuroprosthesis

    Ethics of brain monitoring, stimulation, restoration, brain machine-interface

    13. Clinical Neurotechnologies

    Brain monitoring and diagnostics (EEG)

    Brain monitoring and diagnostics (evoked potentials)

    Brain monitoring - intensive care unit, operating room

    Brain monitoring - epilepsy unit

    Mobile and embedded devices

    Neurosurgical technologies

     

    14. Neurotechnologies - Industry, Intellectual Property, Regulatory, Social and Ethical Issues           (TBD)

    Regulatory roadmap for new neurotechnologies

    Intellectual property protection

    Translating into clinical and industrial outcomes

    Clinical and social impact of neurotherapeutics and neuroprosthesis

    Ethics of brain monitoring, stimulation, restoration, brain machine-interface