Brain-Computer Interface Research : A State-of-the-Art Summary 5 /

This book describes the prize-winning brain-computer-interface (BCI) projects honored in the community's most prestigious annual award. BCIs enable people to communicate and control their limbs and/or environment using thought processes alone. Research in this field continues to develop and exp...

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Bibliographic Details
Corporate Authors: SpringerLink Online service
Group Author: Guger, Christoph; Allison, Brendan; Ushiba, Junichi
Published: Springer International Publishing : Imprint: Springer,
Publisher Address: Cham :
Publication Dates: 2017.
Literature type: eBook
Language: English
Series: SpringerBriefs in Electrical and Computer Engineering,
Subjects:
Online Access: http://dx.doi.org/10.1007/978-3-319-57132-4
Summary: This book describes the prize-winning brain-computer-interface (BCI) projects honored in the community's most prestigious annual award. BCIs enable people to communicate and control their limbs and/or environment using thought processes alone. Research in this field continues to develop and expand rapidly, with many new ideas, research groups, and improved technologies having emerged in recent years. The chapters in this volume feature the newest developments from many of the best labs worldwide. They present both non-invasive systems (based on the EEG) and intracortical methods (based on sp
Carrier Form: 1 online resource(VI,136pages): illustrations.
ISBN: 9783319571324
Index Number: QA76
CLC: TP11
Contents: Introduction (C. Guger at al.) -- An ECoG-Based BCI Based on Auditory Attention to Natural Speech (P. Brunner et al.) -- Motor Imagery BCI with Auditory Feedback as a Mechanism for Assessment and Communication in Disorders of Consciousness (D. Coyle et al.) -- Towards Continuous Speech Recognition for BCI (C. Herff et al.) -- Recovery of Brain Function by Neuroprostheses: A Challenge for Neuroscience and Technology (R. Hogri et al.) -- Estimation of Intracranial P300 Speller Sites with Magnetoencephalography (MEG) - perspectives for Non-invasive Navigation of Subdural Grid Implantation (M. K