Combining brain-computer interfaces and assistive technologies: state-of-the-art and challenges
Top Cited Papers
Open Access
- 1 January 2010
- journal article
- review article
- Published by Frontiers Media SA in Frontiers in Neuroscience
- Vol. 1, 1613
- https://doi.org/10.3389/fnins.2010.00161
Abstract
In recent years, new research has brought the field of electroencephalogram (EEG)-based brain–computer interfacing (BCI) out of its infancy and into a phase of relative maturity through many demonstrated prototypes such as brain-controlled wheelchairs, keyboards, and computer games. With this proof-of-concept phase in the past, the time is now ripe to focus on the development of practical BCI technologies that can be brought out of the lab and into real-world applications. In particular, we focus on the prospect of improving the lives of countless disabled individuals through a combination of BCI technology with existing assistive technologies (AT). In pursuit of more practical BCIs for use outside of the lab, in this paper, we identify four application areas where disabled individuals could greatly benefit from advancements in BCI technology, namely, “Communication and Control”, “Motor Substitution”, “Entertainment”, and “Motor Recovery”. We review the current state of the art and possible future developments, while discussing the main research issues in these four areas. In particular, we expect the most progress in the development of technologies such as hybrid BCI architectures, user–machine adaptation algorithms, the exploitation of users’ mental states for BCI reliability and confidence measures, the incorporation of principles in human–computer interaction (HCI) to improve BCI usability, and the development of novel BCI technology including better EEG devices.Keywords
This publication has 118 references indexed in Scilit:
- The MindGame: A P300-based brain–computer interface gameNeural Networks, 2009
- Direct control of paralysed muscles by cortical neuronsNature, 2008
- A P300-based brain–computer interface for people with amyotrophic lateral sclerosisPublished by Elsevier ,2008
- Mental practice-based rehabilitation training to improve arm function and daily activity performance in stroke patients: a randomized clinical trialBMC Neurology, 2008
- Nessi: An EEG-Controlled Web Browser for Severely Paralyzed PatientsComputational Intelligence and Neuroscience, 2007
- Single Trial Classification of Motor Imagination Using 6 Dry EEG ElectrodesPLOS ONE, 2007
- An MEG-based brain–computer interface (BCI)NeuroImage, 2007
- Effect of Constraint-Induced Movement Therapy on Upper Extremity Function 3 to 9 Months After StrokeJAMA, 2006
- Learning to Control a Brain–Machine Interface for Reaching and Grasping by PrimatesPLoS Biology, 2003
- ‘Thought’ – control of functional electrical stimulation to restore hand grasp in a patient with tetraplegiaNeuroscience Letters, 2003