Event-related desynchronization/ synchronization-based brain-computer interface towards volitional cursor control in a 2D center-out paradigm
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Kai Qian | Ding-Yu Fei | Ou Bai | Dandan Huang | Simon Oxenham | O. Bai | Dandan Huang | D. Fei | Kai Qian | S. Oxenham
[1] G. Schalk,et al. ELECTROCORTICOGRAPHIC FREQUENCY ALTERATION MAPPING: A CLINICAL TECHNIQUE FOR MAPPING THE MOTOR CORTEX , 2007, Neurosurgery.
[2] Rajesh P. N. Rao,et al. Real-time functional brain mapping using electrocorticography , 2007, NeuroImage.
[3] J. Wolpaw,et al. Decoding flexion of individual fingers using electrocorticographic signals in humans , 2009, Journal of neural engineering.
[4] W A SHAFER,et al. Electro-encephalography , 1941, Pennsylvania medical journal.
[5] M. Hallett,et al. Asymmetric spatiotemporal patterns of event-related desynchronization preceding voluntary sequential finger movements: a high-resolution EEG study , 2005, Clinical Neurophysiology.
[6] Rajesh P. N. Rao,et al. Spectral Changes in Cortical Surface Potentials during Motor Movement , 2007, The Journal of Neuroscience.
[7] Jonathan R Wolpaw,et al. Control of a two-dimensional movement signal by a noninvasive brain-computer interface in humans. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[8] J. Binder,et al. Functional magnetic resonance imaging of complex human movements , 1993, Neurology.
[9] M. Hallett,et al. A high performance sensorimotor beta rhythm-based brain–computer interface associated with human natural motor behavior , 2008, Journal of neural engineering.
[10] D.J. McFarland,et al. The wadsworth BCI research and development program: at home with BCI , 2006, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[11] Ethan R. Buch,et al. Physiological regulation of thinking: brain-computer interface (BCI) research. , 2006, Progress in brain research.
[12] M. Hallett,et al. Classifying EEG signals preceding right hand, left hand, tongue, and right foot movements and motor imageries , 2008, Clinical Neurophysiology.
[13] B. Hjorth. An on-line transformation of EEG scalp potentials into orthogonal source derivations. , 1975, Electroencephalography and clinical neurophysiology.
[14] J. Wolpaw,et al. Decoding two-dimensional movement trajectories using electrocorticographic signals in humans , 2007, Journal of neural engineering.
[15] E Donchin,et al. Brain-computer interface technology: a review of the first international meeting. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[16] G. Pfurtscheller,et al. Human cortical 40 Hz rhythm is closely related to EMG rhythmicity , 1996, Neuroscience Letters.
[17] G. Pfurtscheller,et al. Brain-Computer Interfaces for Communication and Control. , 2011, Communications of the ACM.
[18] Xuedong Chen,et al. Decoding human motor activity from EEG single trials for a discrete two-dimensional cursor control , 2009, Journal of neural engineering.
[19] Jonathan R Wolpaw,et al. Brain–computer interfaces as new brain output pathways , 2007, The Journal of physiology.
[20] Gerwin Schalk,et al. A brain–computer interface using electrocorticographic signals in humans , 2004, Journal of neural engineering.
[21] J. A. Wilson,et al. Two-dimensional movement control using electrocorticographic signals in humans , 2008, Journal of neural engineering.
[22] R. C. Oldfield. The assessment and analysis of handedness: the Edinburgh inventory. , 1971, Neuropsychologia.
[23] Dean J Krusienski,et al. Emulation of computer mouse control with a noninvasive brain–computer interface , 2008, Journal of neural engineering.
[24] Daryl R Kipke,et al. Advanced Neurotechnologies for Chronic Neural Interfaces: New Horizons and Clinical Opportunities , 2008, The Journal of Neuroscience.
[25] H. L. Andrews,et al. ELECTRO-ENCEPHALOGRAPHY: III. NORMAL DIFFERENTIATION OF OCCIPITAL AND PRECENTRAL REGIONS IN MAN , 1938 .
[26] W. Marsden. I and J , 2012 .
[27] Eric Leuthardt,et al. Real-time detection of event-related brain activity , 2008, NeuroImage.