BirbaumerNGhanayimNHinterbergerT. A spelling device for the paralysed. Nature1999; 398: 297–298.
2.
SellersEWVaughanTMWolpawJR. A brain-computer interface for long-term independent home use. Amyotroph Lateral Scler2010; 11: 449–455.
3.
VaughanTMMcFarlandDJSchalkG. The Wadsworth BCI Research and Development Program: At home with BCI. IEEE Trans Neural Syst Rehabil Eng2006; 14: 229–233.
4.
Fazel-RezaiRGavettSAhmadWRabbiASchneiderE. A comparison among several P300 brain-computer interface speller paradigms. Clin EEG Neurosci2011; 42(4); 231–235.
5.
TrederMSBlankertzB. (C)overt attention and visual speller design in an ERP-based brain-computer interface. Behav Brain Funct2010; 6: 28.
OrtnerRAloiseFPrücklR. Accuracy of a P300 speller for people with motor impairments: A comparison. Clin EEG Neurosci2011; 42(4); 247–251.
8.
AloiseFSchettiniFAricòP. Asynchronous P300-based brain-computer interface to control a virtual environment: Initial tests on end users. Clin EEG Neurosci2011; 42(4); 241–246.
9.
TsuiCSGanJQHuH. A self-paced motor imagery based brain-computer interface for robotic wheelchair control. Clin EEG Neurosci2011; 42(4); 236–240.
ZicklerCRiccioALeottaF. A brain-computer interface as input channel for a standard assistive technology software. Clin EEG Neurosci2011; 42(4); 222–230.
12.
SilvoniSRamos-MurguialdayACavinatoM. Brain-computer interface in stroke: A review of progress. Clin EEG Neurosci2011; 42(4); 258–265.
13.
AngKKGuanCChuaKS. A large clinical study on the ability of stroke patients in using EEG-based motor imagery brain-computer interface. Clin EEG Neurosci2011; 42(4); 252–257.
14.
ThongpangSRichnerTJBrodnickSK. A micro-electrocorticography platform and deployment strategies for chronic BCI applications. Clin EEG Neurosci2011; 42(4); 209–215.