Handbook of Neural Engineering

Передняя обложка
Metin Akay
John Wiley & Sons, 9 янв. 2007 г. - Всего страниц: 688
An important new work establishing a foundation for future developments in neural engineering

The Handbook of Neural Engineering provides theoretical foundations in computational neural science and engineering and current applications in wearable and implantable neural sensors/probes. Inside, leading experts from diverse disciplinary groups representing academia, industry, and private and government organizations present peer-reviewed contributions on the brain-computer interface, nano-neural engineering, neural prostheses, imaging the brain, neural signal processing, the brain, and neurons.

The Handbook of Neural Engineering covers:

  • Neural signal and image processing--the analysis and modeling of neural activity and EEG-related activities using the nonlinear and nonstationary analysis methods, including the chaos, fractal, and time-frequency and time-scale analysis methods--and how to measure functional, physiological, and metabolic activities in the human brain using current and emerging medical imaging technologies
  • Neuro-nanotechnology, artificial implants, and neural prosthesis--the design of multi-electrode arrays to study how the neurons of human and animals encode stimuli, the evaluation of functional changes in neural networks after stroke and spinal cord injuries, and improvements in therapeutic applications using neural prostheses
  • Neurorobotics and neural rehabilitation engineering--the recent developments in the areas of biorobotic system, biosonar head, limb kinematics, and robot-assisted activity to improve the treatment of elderly subjects at the hospital and home, as well as the interactions of the neuron chip, neural information processing, perception and neural dynamics, learning memory and behavior, biological neural networks, and neural control

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PART I NEURAL SIGNAL AND IMAGE PROCESSING AND MODELING
1
PART II NEURONANOTECHNOLOGY ARTIFICIAL IMPLANTS AND NEURAL PROTHESES
225
PART III NEUROROBOTICS AND NEURAL REHABILATION ENGINEERING
419
INDEX
651
ABOUT THE EDITOR
663
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Стр. 128 - Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology, "Heart rate variability: Standards of measurement, physiological interpretation, and clinical use,
Стр. 223 - Friston, KJ (1997). Modulation of connectivity in visual pathways by attention: cortical interactions evaluated with structural equation modelling and fMRI.
Стр. 192 - CA Cocosco, V. Kollokian, RK-S. Kwan, AC Evans, "BrainWeb: Online Interface to a 3D MRI Simulated Brain Database...
Стр. 210 - Goldman-Rakic, PS (1998). Matching patterns of activity in primate prefrontal area 8a and parietal area 7ip neurons during a spatial working memory task.
Стр. 239 - A peripheral nerve information transducer for amputees: Long-term multichannel recordings from rabbit peripheral nerves.
Стр. 192 - Optimization Neural Networks for the Segmentation of Magnetic Resonance Images", IEEE Transactions on Medical Imaging, Vol.
Стр. 210 - Halgren. E. (2000). Dynamic statistical parametric mapping: Combining fMRI and MEG for high-resolution imaging of cortical activity.
Стр. 224 - Thompson-Schill, SL, D'Esposito, M., Aguirre, GK, & Farah, MJ (1997). Role of left inferior prefrontal cortex in retrieval of semantic knowledge: A reevaluation.
Стр. 518 - Field-Fote EC. Combined use of body weight support, functional electric stimulation, and treadmill training to improve walking ability in individuals with chronic incomplete spinal cord injury. Arch Phys Med Rehabil.

Об авторе (2007)

Metin Akay, PhD, is an interim chair and Professor of Bioengineering in the Harrington Department of Bioengineering at Arizona State University (ASU). He is Editor of the IEEE Press Series on Biomedical Engineering and the author, coauthor, or editor of fourteen books. His current research interests at the ASU Neural Engineering and Informatics, Wearable Technology, and Sensors Labs include the dynamics of motor function in Parkinson and post-stroke disease subjects, and the effect of developmental abnormalities and maturation on the dynamics of respiration.

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