The objective of the project is to design and develop a computer mouse cursor application that is controlled by Brain Computer Interface (BCI). Steady State Visual Evoked Potentials (SSVEP) is the type of BCI to be implemented. With this BCI controlled cursor, users will be able to perform simple tasks on a computer screen. The project is divided into five phases. They are visual stimulation, signal acquisition, feature extraction, target identification, and cursor control. For visual stimulation, a Graphical User Interface (GUI) is designed with blinking elements for users to make a selection. For signal acquisition, electroencephalography (EEG) signals are captured and recorded through specialized equipment. For feature extraction, Fas...
International audienceA Brain-Computer Interface (BCI) platform can be utilized by a patient to cont...
The project introduces a technique for human computer interface with the help of pupils of eye. Norm...
The steady state visual evoked protocol has recently become a popular paradigm in brain–computer int...
This paper aimed to design an EEG-based mouse system by using brain-computer interface (BCI) to move...
Additional contributors: Audrey Royer; Han Yuan; Minn Rose; Bin He (faculty mentor).Brain-Computer i...
In this project, a system was designed and built to use eye movement as a control device for compute...
This study focuses on developing a method to determine parameters to control cursor movement using n...
This study focuses on developing a method to determine parameters to control cursor movement using n...
The purpose of this research is to design a real-time brain computer interface to find out some EEG ...
This research pursued the conceptualization and real-time verification of a system that allows a com...
Abstract A brain-computer interface (BCI) functions by translating a neural signal, such as the elec...
This document presents the development of a user interface for an EEG motor imagery based Brain-Comp...
Abstract—A new parallel man–machine training approach to brain–computer interface (BCI) succeeded th...
As there is an excellent advancement in the technology in recent years, there has been much improvem...
95 p.Brain Computer Interface (BCI) is a rapidly emerging technology which involves developing a pat...
International audienceA Brain-Computer Interface (BCI) platform can be utilized by a patient to cont...
The project introduces a technique for human computer interface with the help of pupils of eye. Norm...
The steady state visual evoked protocol has recently become a popular paradigm in brain–computer int...
This paper aimed to design an EEG-based mouse system by using brain-computer interface (BCI) to move...
Additional contributors: Audrey Royer; Han Yuan; Minn Rose; Bin He (faculty mentor).Brain-Computer i...
In this project, a system was designed and built to use eye movement as a control device for compute...
This study focuses on developing a method to determine parameters to control cursor movement using n...
This study focuses on developing a method to determine parameters to control cursor movement using n...
The purpose of this research is to design a real-time brain computer interface to find out some EEG ...
This research pursued the conceptualization and real-time verification of a system that allows a com...
Abstract A brain-computer interface (BCI) functions by translating a neural signal, such as the elec...
This document presents the development of a user interface for an EEG motor imagery based Brain-Comp...
Abstract—A new parallel man–machine training approach to brain–computer interface (BCI) succeeded th...
As there is an excellent advancement in the technology in recent years, there has been much improvem...
95 p.Brain Computer Interface (BCI) is a rapidly emerging technology which involves developing a pat...
International audienceA Brain-Computer Interface (BCI) platform can be utilized by a patient to cont...
The project introduces a technique for human computer interface with the help of pupils of eye. Norm...
The steady state visual evoked protocol has recently become a popular paradigm in brain–computer int...