Brain-computer interfaces (BCIs) are speedily constructing right into a mainstream, all over the world study activity. With such a lot of new teams and tasks, it may be tricky to spot the simplest ones. This publication summarizes ten best tasks from around the globe. approximately 60 submissions have been obtained in 2011 for the hugely aggressive BCI learn Award, and a global jury chosen the head ten. This short provides a concise yet conscientiously illustrated and entirely updated description of every of those initiatives, including an advent and concluding bankruptcy by way of the editors.
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Extra info for Brain-Computer Interface Research: A State-of-the-Art Summary (SpringerBriefs in Electrical and Computer Engineering)
Gassert, in the direction of a BCI for sensorimotor education: preliminary effects from simultaneous fNIRS and biosignal recordings, in Annual overseas convention of the IEEE Engineering in medication and Biology Society 2011 (EMBC 2011), pp. 6339–6343 (2011) R. Zimmermann, L. Marchal-Crespo, J. Edelmann, O. Lambercy, M. C. Fluet, R. Riener, M. Wolf, R. Gassert, Detection of motor execution utilizing a hybrid fNIRS-biosignal BCI: a feasibility research. J. NeuroEng. Rehabil. 10, four (2013) J. C. Metzger, O. Lambercy, D. Chapuis, R. Gassert, layout and characterization of the ReHapticKnob, a robotic for review and treatment of hand functionality, in IEEE/RSJ overseas convention on clever Robots and structures (IROS), 2011, 25–30 Sept 2011, pp. 3074–3080 (2011) J. C. Metzger, O. Lambercy, R. Gassert, High-Fidelity rendering of digital gadgets with the ReHapticKnob—Novel avenues in robot-assisted rehabilitation of hand functionality, in IEEE Haptics Symposium, 4–7 March 2012, pp. 51–56 (2012) A. S. Merians, D. Jack, R. Boian, M. Tremaine, G. C. Burdea, S. V. Adamovich, M. Recce, H. Poizner, digital reality-augmented rehabilitation for sufferers following stroke. Phys. Ther. eighty two, 898–915 (2002) L. Holper, T. Muehlemann, F. Scholkmann, ok. Eng, D. Kiper, M. Wolf, checking out the potential for a digital fact neurorehabilitation approach in the course of functionality of commentary, imagery and imitation of motor activities recorded through instant useful near-infrared spectroscopy (fNIRS). J. NeuroEng. Rehabil. 7, fifty seven (2010) J. model, O. Geisseler, L. Holper, M. C. Hepp-Reymond, M. Morari, D. Kiper, ok. Eng, the results of manipulation of visible suggestions in digital truth on cortical task: a pilot examine, in 2011 overseas convention on digital Rehabilitation (ICVR), 27–29 June 2011, pp. 1–2 (2011) A overview of functionality adaptations in SMR-Based Brain–Computer Interfaces (BCIs) Moritz Grosse-Wentrup and Bernhard Schölkopf summary the facility to function a brain-computer interface (BCI) varies not just throughout topics but additionally throughout time inside of each one person topic. listed here, we evaluation contemporary growth in knowing the origins of such diversifications for BCIs in line with the sensorimotor-rhythm (SMR). we suggest a class of reports based on 4 different types, and argue that an research of the neuro-physiological correlates of within-subject diversifications is probably going to have a wide effect at the layout of destiny BCIs. We position a distinct emphasis on our personal paintings at the neuro-physiological explanations of functionality diversifications, and argue that attentional networks within the gamma-range ( [ forty Hz) tend to play a severe function during this context. We finish the assessment with a dialogue of exceptional difficulties. a quick historical past of BCI-Research From the early days of study on brain-computer interfaces (BCIs) till a couple of decade in the past, topics needed to endure in depth education with a view to gather the recent ability of working a BCI (Vidal 1973; Wolpaw and McFarland 1994; Birbaumer et al. 2000; Pfurtscheller and Neuper 2001; Wolpaw et al. 2002; Wolpaw and McFarland 2004; Kübler et al.