Nessi: An EEG-Controlled Web Browser for Severely Paralyzed Patients
Open Access
- 10 September 2007
- journal article
- research article
- Published by Hindawi Limited in Computational Intelligence and Neuroscience
- Vol. 2007, 1-5
- https://doi.org/10.1155/2007/71863
Abstract
We have previously demonstrated that an EEG-controlled web browser based on self-regulation of slow cortical potentials (SCPs) enables severely paralyzed patients to browse the internet independently of any voluntary muscle control. However, this system had several shortcomings, among them that patients could only browse within a limited number of web pages and had to select links from an alphabetical list, causing problems if the link names were identical or if they were unknown to the user (as in graphical links). Here we describe a new EEG-controlled web browser, called Nessi, which overcomes these shortcomings. In Nessi, the open source browser, Mozilla, was extended by graphical in-place markers, whereby different brain responses correspond to different frame colors placed around selectable items, enabling the user to select any link on a web page. Besides links, other interactive elements are accessible to the user, such as e-mail and virtual keyboards, opening up a wide range of hypertext-based applications.Keywords
Funding Information
- Deutsche Forschungsgemeinschaft (Ro1030/12-1)
This publication has 12 references indexed in Scilit:
- Neural Internet: Web Surfing with Brain Potentials for the Completely ParalyzedNeurorehabilitation and Neural Repair, 2006
- Control of a two-dimensional movement signal by a noninvasive brain-computer interface in humansProceedings of the National Academy of Sciences, 2004
- Learning to Control a Brain–Machine Interface for Reaching and Grasping by PrimatesPLoS Biology, 2003
- Direct Cortical Control of 3D Neuroprosthetic DevicesScience, 2002
- Instant neural control of a movement signalNature, 2002
- Automatic differentiation of multichannel EEG signalsIEEE Transactions on Biomedical Engineering, 2001
- The mental prosthesis: assessing the speed of a P300-based brain-computer interfaceIEEE Transactions on Rehabilitation Engineering, 2000
- The thought translation device (TTD) for completely paralyzed patientsIEEE Transactions on Rehabilitation Engineering, 2000
- A spelling device for the paralysedNature, 1999
- Self-regulation of slow cortical potentials in completely paralyzed human patientsNeuroscience Letters, 1998