The steady state visual evoked protocol has recently become a popular paradigm in brain–computer interface (BCI) applications. Typically (regardless of function) these applications offer the user a binary selection of targets that perform correspondingly discrete actions. Such discrete control systems are appropriate for applications that are inherently isolated in nature, such as selecting numbers from a keypad to be dialled or letters from an alphabet to be spelled. However motivation exists for users to employ proportional control methods in intrinsically analogue tasks such as the movement of a mouse pointer. This paper introduces an online BCI in which control of a mouse pointer is directly proportional to a user's intent. Performance ...
The objective of the project is to design and develop a computer mouse cursor application that is co...
This Document is protected by copyright and was first published by Frontiers. All rights reserved. I...
Abstract. In this paper a brain computer interface (BCI) based on steady state visual evoked potenti...
A brain-computer interface (BCl) establishes a new pathway for control and communication that occurs...
A promising approach for brain-computer interfaces (BCIs) employs the steady-state visual evoked pot...
Brain-computer interfaces (BCI) are useful devices that allow direct control of external devices usi...
This paper describes the development of a synchronous, online brain computer interface (BCI) system ...
People which are afflicted with neurological conditions or neurodegenerative diseases can’t control ...
Brain computer interfaces based on steady-state visually evoked potential (SSVEP-BCI) have been deve...
A brain-computer interface (BCI) provides the possibility to translate brain neural activity pattern...
Brain-computer interface based on steady-state visual evoked potential (SSVEP-BCI) has been widely c...
A Brain Computer Interface (BCI) provides a channel of communication and control amid the human brai...
Background: Brain–computer interfaces (BCIs) are systems able to convert the brain activity into ele...
AbstractBrain-Computer Interface (BCI) has already become a hot spot in recent years. The Steady Sta...
Steady-state visual evoked potential (SSVEP) based brain-computer interface (BCI) has attracted grea...
The objective of the project is to design and develop a computer mouse cursor application that is co...
This Document is protected by copyright and was first published by Frontiers. All rights reserved. I...
Abstract. In this paper a brain computer interface (BCI) based on steady state visual evoked potenti...
A brain-computer interface (BCl) establishes a new pathway for control and communication that occurs...
A promising approach for brain-computer interfaces (BCIs) employs the steady-state visual evoked pot...
Brain-computer interfaces (BCI) are useful devices that allow direct control of external devices usi...
This paper describes the development of a synchronous, online brain computer interface (BCI) system ...
People which are afflicted with neurological conditions or neurodegenerative diseases can’t control ...
Brain computer interfaces based on steady-state visually evoked potential (SSVEP-BCI) have been deve...
A brain-computer interface (BCI) provides the possibility to translate brain neural activity pattern...
Brain-computer interface based on steady-state visual evoked potential (SSVEP-BCI) has been widely c...
A Brain Computer Interface (BCI) provides a channel of communication and control amid the human brai...
Background: Brain–computer interfaces (BCIs) are systems able to convert the brain activity into ele...
AbstractBrain-Computer Interface (BCI) has already become a hot spot in recent years. The Steady Sta...
Steady-state visual evoked potential (SSVEP) based brain-computer interface (BCI) has attracted grea...
The objective of the project is to design and develop a computer mouse cursor application that is co...
This Document is protected by copyright and was first published by Frontiers. All rights reserved. I...
Abstract. In this paper a brain computer interface (BCI) based on steady state visual evoked potenti...