Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alternative means to interact with the environment. Many BCIs are "synchronous" systems, in which the system sets the timing of the interaction and tries to infer what control command the subject is issuing at each prompting. In contrast, in "asynchronous" BCIs subjects pace the interaction and the system must determine when the subject's control command occurs. In this paper we propose a new idea for BCI which draws upon the strengths of both approaches. The subjects are externally paced and the BCI is able to determine when control commands are issued by decoding the subject's intention for initiating control in dedicated time slots. A single ta...
This thesis investigates the feasibility of a ternary brain-computer interface (BCI) using the singl...
A Brain computer interface (BCI) is a prosthetic system which augments the capabilities of an impair...
We present the self-paced 3-class Graz brain-computer interface (BCI) which is based on the det...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Brain computer interface (BCI) systems aim at helping individuals with motor disabilities by providi...
Brain computer interface (BCI) systems aim at helping individuals with motor disabilities by providi...
This paper describes our work on a portable non-invasive brain-computer interface (BCI), called Adap...
Objective. Self-paced EEG-based BCIs (SP-BCIs) have traditionally been avoided due to two sources of...
Modern electrophysiological studies in animals show that the spectrum of neural oscillations encodin...
This thesis investigates the feasibility of a ternary brain-computer interface (BCI) using the singl...
A Brain computer interface (BCI) is a prosthetic system which augments the capabilities of an impair...
We present the self-paced 3-class Graz brain-computer interface (BCI) which is based on the det...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Brain computer interfaces (BCIs) offer a broad class of neurologically impaired individuals an alter...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Much attention has been directed towards synchronous Brain Computer Interfaces (BCIs). For these BCI...
Brain computer interface (BCI) systems aim at helping individuals with motor disabilities by providi...
Brain computer interface (BCI) systems aim at helping individuals with motor disabilities by providi...
This paper describes our work on a portable non-invasive brain-computer interface (BCI), called Adap...
Objective. Self-paced EEG-based BCIs (SP-BCIs) have traditionally been avoided due to two sources of...
Modern electrophysiological studies in animals show that the spectrum of neural oscillations encodin...
This thesis investigates the feasibility of a ternary brain-computer interface (BCI) using the singl...
A Brain computer interface (BCI) is a prosthetic system which augments the capabilities of an impair...
We present the self-paced 3-class Graz brain-computer interface (BCI) which is based on the det...