Share

Biosignal Processing and Computational Methods to Enhance Sensory Motor Neuroprosthetics

Download Biosignal Processing and Computational Methods to Enhance Sensory Motor Neuroprosthetics PDF Online Free

Author :
Release : 2016-01-22
Genre : Biosignal processing
Kind : eBook
Book Rating : 182/5 ( reviews)

GET EBOOK


Book Synopsis Biosignal Processing and Computational Methods to Enhance Sensory Motor Neuroprosthetics by : Mitsuhiro Hayashibe

Download or read book Biosignal Processing and Computational Methods to Enhance Sensory Motor Neuroprosthetics written by Mitsuhiro Hayashibe. This book was released on 2016-01-22. Available in PDF, EPUB and Kindle. Book excerpt: Though there have been many developments in sensory/motor prosthetics, they have not yet reached the level of standard and worldwide use like pacemakers and cochlear implants. One challenging issue in motor prosthetics is the large variety of patient situations, which depending on the type of neurological disorder. To improve neuroprosthetic performance beyond the current limited use of such systems, robust bio-signal processing and model-based control involving actual sensory motor state (with biosignal feedback) would bring about new modalities and applications, and could be a breakthrough toward adaptive neuroprosthetics. Recent advances of Brain Computer Interfaces (BCI) now enable patients to transmit their intention of movement. However, the functionality and controllability of motor prosthetics itself can be further improved to take advantage of BCI interfaces. In this Research Topic we welcome contribution of original research articles, computational and experimental studies, review articles, and methodological advances related to biosignal processing that may enhance the functionality of sensory motor neuroprosthetics. The scope of this topic includes, but is not limited to, studies aimed at enhancing: 1) computational biosignal processing in EMG (Electromyography), EEG (Electroencephalography), and other modalities of biofeedback information; 2) the computational method in modeling and control of sensory motor neuroprosthetics; 3) the systematic functionality aiming to provide solutions for specific pathological movement disorders; 4) human interfaces such as BCI - but in the case of BCI study, manuscripts should be experimental studies which are applied to sensory/motor neuroprosthetics in patients with motor disabilities.

Brain–Computer Interfaces Handbook

Download Brain–Computer Interfaces Handbook PDF Online Free

Author :
Release : 2018-01-09
Genre : Computers
Kind : eBook
Book Rating : 944/5 ( reviews)

GET EBOOK


Book Synopsis Brain–Computer Interfaces Handbook by : Chang S. Nam

Download or read book Brain–Computer Interfaces Handbook written by Chang S. Nam. This book was released on 2018-01-09. Available in PDF, EPUB and Kindle. Book excerpt: Brain–Computer Interfaces Handbook: Technological and Theoretical Advances provides a tutorial and an overview of the rich and multi-faceted world of Brain–Computer Interfaces (BCIs). The authors supply readers with a contemporary presentation of fundamentals, theories, and diverse applications of BCI, creating a valuable resource for anyone involved with the improvement of people’s lives by replacing, restoring, improving, supplementing or enhancing natural output from the central nervous system. It is a useful guide for readers interested in understanding how neural bases for cognitive and sensory functions, such as seeing, hearing, and remembering, relate to real-world technologies. More precisely, this handbook details clinical, therapeutic and human-computer interfaces applications of BCI and various aspects of human cognition and behavior such as perception, affect, and action. It overviews the different methods and techniques used in acquiring and pre-processing brain signals, extracting features, and classifying users’ mental states and intentions. Various theories, models, and empirical findings regarding the ways in which the human brain interfaces with external systems and environments using BCI are also explored. The handbook concludes by engaging ethical considerations, open questions, and challenges that continue to face brain–computer interface research. Features an in-depth look at the different methods and techniques used in acquiring and pre-processing brain signals, extracting features, and classifying the user's intention Covers various theories, models, and empirical findings regarding ways in which the human brain can interface with the systems or external environments Presents applications of BCI technology to understand various aspects of human cognition and behavior such as perception, affect, action, and more Includes clinical trials and individual case studies of the experimental therapeutic applications of BCI Provides human factors and human-computer interface concerns in the design, development, and evaluation of BCIs Overall, this handbook provides a synopsis of key technological and theoretical advances that are directly applicable to brain–computer interfacing technologies and can be readily understood and applied by individuals with no formal training in BCI research and development.

Emerging Theory and Practice in Neuroprosthetics

Download Emerging Theory and Practice in Neuroprosthetics PDF Online Free

Author :
Release : 2014-05-31
Genre : Medical
Kind : eBook
Book Rating : 953/5 ( reviews)

GET EBOOK


Book Synopsis Emerging Theory and Practice in Neuroprosthetics by : Naik, Ganesh R.

Download or read book Emerging Theory and Practice in Neuroprosthetics written by Naik, Ganesh R.. This book was released on 2014-05-31. Available in PDF, EPUB and Kindle. Book excerpt: Neuroprosthetics is a fast-growing area that brings together the fields of biomedical engineering and neuroscience as a means to interface the neural system directly to prostheses. Advancing research and applications in this field can assist in successfully restoring motor, sensory, and cognitive functions. Emerging Theory and Practice in Neuroprosthetics brings together the most up-to-date research surrounding neuroprosthetics advances and applications. Presenting several new results, concepts, and further developments in the area of neuroprosthetics, this book is an essential publication for researchers, upper-level students, engineers, and medical practitioners.

Introduction to Neural Engineering for Motor Rehabilitation

Download Introduction to Neural Engineering for Motor Rehabilitation PDF Online Free

Author :
Release : 2013-05-21
Genre : Science
Kind : eBook
Book Rating : 632/5 ( reviews)

GET EBOOK


Book Synopsis Introduction to Neural Engineering for Motor Rehabilitation by : Dario Farina

Download or read book Introduction to Neural Engineering for Motor Rehabilitation written by Dario Farina. This book was released on 2013-05-21. Available in PDF, EPUB and Kindle. Book excerpt: Neural engineering is a discipline that uses engineering techniques to understand, repair, replace, enhance, or treat diseases of neural systems. Currently, no book other than this one covers this broad range of topics within motor rehabilitation technology. With a focus on cutting edge technology, it describes state-of-the-art methods within this field, from brain-computer interfaces to spinal and cortical plasticity. Touching on electrode design, signal processing, the neurophysiology of movement, robotics, and much more, this innovative volume collects the latest information for a wide range of readers working in biomedical engineering.

Closed-Loop Systems for Next-Generation Neuroprostheses

Download Closed-Loop Systems for Next-Generation Neuroprostheses PDF Online Free

Author :
Release : 2018-04-26
Genre :
Kind : eBook
Book Rating : 665/5 ( reviews)

GET EBOOK


Book Synopsis Closed-Loop Systems for Next-Generation Neuroprostheses by : Timothée Levi

Download or read book Closed-Loop Systems for Next-Generation Neuroprostheses written by Timothée Levi. This book was released on 2018-04-26. Available in PDF, EPUB and Kindle. Book excerpt: Millions of people worldwide are affected by neurological disorders which disrupt the connections within the brain and between brain and body causing impairments of primary functions and paralysis. Such a number is likely to increase in the next years and current assistive technology is yet limited. A possible response to such disabilities, offered by the neuroscience community, is given by Brain-Machine Interfaces (BMIs) and neuroprostheses. The latter field of research is highly multidisciplinary, since it involves very different and disperse scientific communities, making it fundamental to create connections and to join research efforts. Indeed, the design and development of neuroprosthetic devices span/involve different research topics such as: interfacing of neural systems at different levels of architectural complexity (from in vitro neuronal ensembles to human brain), bio-artificial interfaces for stimulation (e.g. micro-stimulation, DBS: Deep Brain Stimulation) and recording (e.g. EMG: Electromyography, EEG: Electroencephalography, LFP: Local Field Potential), innovative signal processing tools for coding and decoding of neural activity, biomimetic artificial Spiking Neural Networks (SNN) and neural network modeling. In order to develop functional communication with the nervous system and to create a new generation of neuroprostheses, the study of closed-loop systems is mandatory. It has been widely recognized that closed-loop neuroprosthetic systems achieve more favorable outcomes for users then equivalent open-loop devices. Improvements in task performance, usability, and embodiment have all been reported in systems utilizing some form of feedback. The bi-directional communication between living neurons and artificial devices is the main final goal of those studies. However, closed-loop systems are still uncommon in the literature, mostly due to requirement of multidisciplinary effort. Therefore, through eBook on closed-loop systems for next-generation neuroprostheses, we encourage an active discussion among neurobiologists, electrophysiologists, bioengineers, computational neuroscientists and neuromorphic engineers. This eBook aims to facilitate this process by ordering the 25 contributions of this research in which we highlighted in three different parts: (A) Optimization of different blocks composing the closed-loop system, (B) Systems for neuromodulation based on DBS, EMG and SNN and (C) Closed-loop BMIs for rehabilitation.

You may also like...