Progress and Prospects in EEG-Based Brain-Computer Interface: Clinical Applications in Neurorehabilitation
暂无分享,去创建一个
[1] G. R. Muller,et al. Brain oscillations control hand orthosis in a tetraplegic , 2000, Neuroscience Letters.
[2] H. Flor,et al. A spelling device for the paralysed , 1999, Nature.
[3] Monica A. Perez,et al. Neural interface technology for rehabilitation: exploiting and promoting neuroplasticity. , 2010, Physical medicine and rehabilitation clinics of North America.
[4] B. Blankertz,et al. (C)overt attention and visual speller design in an ERP-based brain-computer interface , 2010, Behavioral and Brain Functions.
[5] J. Wolpaw,et al. Clinical Applications of Brain-Computer Interfaces: Current State and Future Prospects , 2009, IEEE Reviews in Biomedical Engineering.
[6] Clemens Brunner,et al. Mu rhythm (de)synchronization and EEG single-trial classification of different motor imagery tasks , 2006, NeuroImage.
[7] D. McFarland,et al. An auditory brain–computer interface (BCI) , 2008, Journal of Neuroscience Methods.
[8] A. Engel,et al. An independent brain–computer interface using covert non-spatial visual selective attention , 2010, Journal of neural engineering.
[9] F. L. D. Silva,et al. Event-related EEG/MEG synchronization and desynchronization: basic principles , 1999, Clinical Neurophysiology.
[10] Brendan Z. Allison,et al. The Hybrid BCI , 2010, Frontiers in Neuroscience.
[11] G. Pfurtscheller,et al. Designing optimal spatial filters for single-trial EEG classification in a movement task , 1999, Clinical Neurophysiology.
[12] Niels Birbaumer,et al. Neurofeedback and brain-computer interface clinical applications. , 2009, International review of neurobiology.
[13] Bettina Sorger,et al. Another kind of 'BOLD Response': answering multiple-choice questions via online decoded single-trial brain signals. , 2009, Progress in brain research.
[14] Ethan R. Buch,et al. Physiological regulation of thinking: brain-computer interface (BCI) research. , 2006, Progress in brain research.
[15] G Pfurtscheller,et al. Current trends in Graz Brain-Computer Interface (BCI) research. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[16] E Donchin,et al. The mental prosthesis: assessing the speed of a P300-based brain-computer interface. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[17] G. Pfurtscheller,et al. ‘Thought’ – control of functional electrical stimulation to restore hand grasp in a patient with tetraplegia , 2003, Neuroscience Letters.
[18] Touradj Ebrahimi,et al. An efficient P300-based brain–computer interface for disabled subjects , 2008, Journal of Neuroscience Methods.
[19] Klaus-Robert Müller,et al. The Berlin Brain-Computer Interface: Accurate performance from first-session in BCI-naive subjects , 2008, IEEE Transactions on Biomedical Engineering.
[20] Keinosuke Fukunaga,et al. Introduction to statistical pattern recognition (2nd ed.) , 1990 .
[21] A. Cichocki,et al. Optimization of SSVEP brain responses with application to eight-command Brain–Computer Interface , 2010, Neuroscience Letters.
[22] G Calhoun,et al. Brain-computer interfaces based on the steady-state visual-evoked response. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[23] Jean Pailhous,et al. Interactions Between Cognitive and Sensorimotor Functions in the Motor Cortex: Evidence from the Preparatory Motor Sets Anticipating a Perturbation , 2004, Reviews in the neurosciences.
[24] Wolfgang Rosenstiel,et al. Brain-Computer Interfaces for Communication in Paralysis: A Clinical Experimental Approach , 2007 .
[25] Gert Pfurtscheller,et al. Walking from thought , 2006, Brain Research.
[26] François Tyc,et al. Cortical Plasticity and Motor Activity Studied with Transcranial Magnetic Stimulation , 2006, Reviews in the neurosciences.
[27] U. Strehl,et al. Modification of Slow Cortical Potentials in Patients with Refractory Epilepsy: A Controlled Outcome Study , 2001, Epilepsia.
[28] José del R. Millán,et al. Adaptive brain interfaces , 2003, Commun. ACM.
[29] John J. Foxe,et al. Visual spatial attention tracking using high-density SSVEP data for independent brain-computer communication , 2005, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[30] C. Neuper,et al. Combining Brain–Computer Interfaces and Assistive Technologies: State-of-the-Art and Challenges , 2010, Front. Neurosci..
[31] Werner Lutzenberger,et al. Cortical self-regulation in patients with epilepsies , 1993, Epilepsy Research.
[32] G. Pfurtscheller,et al. EEG-based neuroprosthesis control: A step towards clinical practice , 2005, Neuroscience Letters.
[33] Dennis J. McFarland,et al. Brain–computer interfaces for communication and control , 2002, Clinical Neurophysiology.
[34] G. Pfurtscheller,et al. Motor imagery and action observation: Modulation of sensorimotor brain rhythms during mental control of a brain–computer interface , 2009, Clinical Neurophysiology.
[35] Z J Koles,et al. EEG source localization: implementing the spatio-temporal decomposition approach. , 1998, Electroencephalography and clinical neurophysiology.
[36] 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.
[37] Dennis J. McFarland,et al. Brain-computer interface (BCI) operation: signal and noise during early training sessions , 2005, Clinical Neurophysiology.
[38] G. Pfurtscheller,et al. 15 years of BCI research at graz university of technology: current projects , 2006, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[39] E. Donchin,et al. A P300-based brain–computer interface: Initial tests by ALS patients , 2006, Clinical Neurophysiology.
[40] Dean J Krusienski,et al. Brain-computer interface research at the wadsworth center developments in noninvasive communication and control. , 2009, International review of neurobiology.
[41] A. Buttfield,et al. Towards a robust BCI: error potentials and online learning , 2006, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[42] Dean J Krusienski,et al. Emulation of computer mouse control with a noninvasive brain–computer interface , 2008, Journal of neural engineering.
[43] G Pfurtscheller,et al. Toward a hybrid brain–computer interface based on imagined movement and visual attention , 2010, Journal of neural engineering.
[44] G. Pfurtscheller,et al. Brain-computer interfaces for control of neuroprostheses: from synchronous to asynchronous mode of operation. , 2006, Biomedizinische Technik. Biomedical engineering.
[45] C. Braun,et al. Combination of Brain-Computer Interface Training and Goal-Directed Physical Therapy in Chronic Stroke: A Case Report , 2010, Neurorehabilitation and neural repair.
[46] Brendan Z. Allison,et al. Harmonic coupling of steady-state visual evoked potentials , 2008, 2008 30th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[47] N. Birbaumer. Breaking the silence: brain-computer interfaces (BCI) for communication and motor control. , 2006, Psychophysiology.
[48] J. Mourino,et al. Asynchronous BCI and local neural classifiers: an overview of the adaptive brain interface project , 2003, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[49] José del R. Millán,et al. Noninvasive brain-actuated control of a mobile robot by human EEG , 2004, IEEE Transactions on Biomedical Engineering.
[50] Cuntai Guan,et al. Unsupervised Brain Computer Interface Based on Intersubject Information and Online Adaptation , 2009, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[51] Benjamin Blankertz,et al. Towards a Cure for BCI Illiteracy , 2009, Brain Topography.
[52] Niels Birbaumer,et al. Brain–computer-interface research: Coming of age , 2006, Clinical Neurophysiology.
[53] Kim D Nielsen,et al. Biopotentials as command and feedback signals in functional electrical stimulation systems. , 2003, Medical engineering & physics.
[54] Rajesh P. N. Rao,et al. Towards adaptive classification for BCI , 2006, Journal of neural engineering.
[55] Tadashi Isa,et al. Recent advances in brain-machine interfaces , 2009, Neural Networks.
[56] Christa Neuper,et al. EEG-Based Brain-Computer Interface System , 2006 .
[57] G. Birch,et al. Initial on-line evaluations of the LF-ASD brain-computer interface with able-bodied and spinal-cord subjects using imagined voluntary motor potentials , 2002, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[58] J. A. Wilson,et al. Two-dimensional movement control using electrocorticographic signals in humans , 2008, Journal of neural engineering.
[59] N. Thakor,et al. Journal of Neuroengineering and Rehabilitation Open Access a Brain-computer Interface with Vibrotactile Biofeedback for Haptic Information , 2007 .
[60] J. Wolpaw,et al. Towards an independent brain–computer interface using steady state visual evoked potentials , 2008, Clinical Neurophysiology.
[61] Cuntai Guan,et al. A clinical study of motor imagery-based brain-computer interface for upper limb robotic rehabilitation , 2009, 2009 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[62] F. Piccione,et al. P300-based brain computer interface: Reliability and performance in healthy and paralysed participants , 2006, Clinical Neurophysiology.
[63] N. Birbaumer,et al. Brain-computer communication: self-regulation of slow cortical potentials for verbal communication. , 2001, Archives of physical medicine and rehabilitation.
[64] 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.
[65] Gernot R. Müller-Putz,et al. Brain-computer interfaces for control of neuroprostheses: from synchronous to asynchronous mode of operation / Brain-Computer Interfaces zur Steuerung von Neuroprothesen: von der synchronen zur asynchronen Funktionsweise , 2006 .
[66] K.-R. Muller,et al. The Berlin brain-computer interface: EEG-based communication without subject training , 2006, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[67] L. Cohen,et al. Brain–computer interfaces: communication and restoration of movement in paralysis , 2007, The Journal of physiology.
[68] G Pfurtscheller,et al. Real-time EEG analysis with subject-specific spatial patterns for a brain-computer interface (BCI). , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[69] Reinhold Scherer,et al. Flexibility and practicality graz brain-computer interface approach. , 2009, International review of neurobiology.
[70] Christa Neuper,et al. An asynchronously controlled EEG-based virtual keyboard: improvement of the spelling rate , 2004, IEEE Transactions on Biomedical Engineering.
[71] Febo Cincotti,et al. Vibrotactile Feedback for Brain-Computer Interface Operation , 2007, Comput. Intell. Neurosci..
[72] Christa Neuper,et al. Motor imagery and EEG-based control of spelling devices and neuroprostheses. , 2006, Progress in brain research.
[73] Jonathan R Wolpaw,et al. Brain–computer interface systems: progress and prospects , 2007, Expert review of medical devices.
[74] Klaus-Robert Müller,et al. The non-invasive Berlin Brain–Computer Interface: Fast acquisition of effective performance in untrained subjects , 2007, NeuroImage.
[75] Conrad V. Kufta,et al. Event-related desynchronization and movement-related cortical potentials on the ECoG and EEG. , 1994, Electroencephalography and clinical neurophysiology.
[76] H. Flor,et al. The thought translation device (TTD) for completely paralyzed patients. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[77] P H Peckham,et al. Applications of cortical signals to neuroprosthetic control: a critical review. , 2000, IEEE transactions on rehabilitation engineering : a publication of the IEEE Engineering in Medicine and Biology Society.
[78] Karla Felix Navarro,et al. A Comprehensive Survey of Brain Interface Technology Designs , 2007, Annals of Biomedical Engineering.
[79] N. Birbaumer. slow Cortical Potentials: Plasticity, Operant Control, and Behavioral Effects , 1999 .
[80] Christa Neuper,et al. Future prospects of ERD/ERS in the context of brain-computer interface (BCI) developments. , 2006, Progress in brain research.
[81] J. Wolpaw. Chapter 64 Brain-computer interfaces (BCIs) for communication and control: a mini-review , 2004 .
[82] M. Grosse-Wentrup,et al. Biased feedback in brain-computer interfaces , 2010, Journal of NeuroEngineering and Rehabilitation.
[83] J. Wolpaw,et al. Brain-computer communication: unlocking the locked in. , 2001, Psychological bulletin.
[84] K. Jellinger. Toward Brain-Computer Interfacing , 2009 .
[85] E. Naito,et al. Internal Simulation of Expected Sensory Experiences Before Movements Get Started , 2003, Reviews in the neurosciences.
[86] M. Stokes,et al. Cognitive tasks for driving a brain-computer interfacing system: a pilot study , 2004, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[87] Lars Muckli,et al. Functional Magnetic Resonance Adaptation in Visual Neuroscience , 2008, Reviews in the neurosciences.
[88] Niels Birbaumer,et al. Hemodynamic brain-computer interfaces for communication and rehabilitation , 2009, Neural Networks.
[89] J. Wolpaw,et al. Patients with ALS can use sensorimotor rhythms to operate a brain-computer interface , 2005, Neurology.
[90] Klaus-Robert Müller,et al. Machine learning for real-time single-trial EEG-analysis: From brain–computer interfacing to mental state monitoring , 2008, Journal of Neuroscience Methods.