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Design and implementation of a brain-computer interface with high transfer rates

IEEE Transactions on Biomedical Engineering · 2002 · Vol. 49(10) · pp. 1181–1186
Ming Jen ChengXiaorong GaoShangkai GaoDingfeng Xu

Abstract

This paper presents a brain-computer interface (BCI) that can help users to input phone numbers. The system is based on the steady-state visual evoked potential (SSVEP). Twelve buttons illuminated at different rates were displayed on a computer monitor. The buttons constituted a virtual telephone keypad, representing the ten digits 0-9, BACKSPACE, and ENTER. Users could input phone number by gazing at these buttons. The frequency-coded SSVEP was used to judge which button the user desired. Eight of the thirteen subjects succeeded in ringing the mobile phone using the system. The average transfer rate over all subjects was 27.15 bits/min. The attractive features of the system are noninvasive signal recording, little training required for use, and high information transfer rate. Approaches to improve the performance of the system are discussed.

EEG and Brain-Computer InterfacesNeuroscience and Neural EngineeringNeural dynamics and brain functionKeypadBrain–computer interfaceComputer scienceInterface (matter)Transfer (computing)Information transferPhoneComputer hardwareRingingHeadphones

MeSH terms

Activities of Daily LivingAdolescentAdultBrainChildComputing MethodologiesData DisplayElectroencephalographyEquipment DesignEvoked Potentials, VisualFalse Positive ReactionsFemaleHumansMaleSensitivity and Specificity
Citations
809
FWCI
3.55
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References
22
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References
An EEG-based brain-computer interface for cursor control
Electroencephalography and Clinical Neurophysiology · 1991 · 1,117 citations
Talking off the top of your head: toward a mental prosthesis utilizing event-related brain potentials
Electroencephalography and Clinical Neurophysiology · 1988 · 3,172 citations
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