Mental imagery-based brain-computer interfaces (BCIs) allow to interact with the external environment by naturally bypassing the musculoskeletal system. Making BCIs efficient and accurate is paramount to improve the reliability of real-life and clinical applications, from open-loop device control to closed-loop neurorehabilitation. By promoting sense of agency and embodiment, realistic setups including multimodal channels of communication, such as eye-gaze, and robotic prostheses aim to improve BCI performance. However, how the mental imagery command should be integrated in those hybrid systems so as to ensure the best interaction is still poorly understood. To address this question, we performed a hybrid EEG-based BCI experiment involving ...
Brain-Computer Interfaces (BCIs) in combination with robot-assisted physical therapy may become a va...
International audienceIn this article, we study how combined motor imageries can be detected to deli...
Abstract Background Motor imagery (MI) induced EEG patterns are widely used as control signals for b...
Mental imagery-based brain-computer interfaces (BCIs) allow to interact with the external environmen...
International audienceIn the recent years, brain computer interfaces (BCI) using motor imagery have ...
The controlling of robotic arms based on brain–computer interface (BCI) can revolutionize the qualit...
Brain-computer interface (BCI) technologies aim to provide a bridge between the human brain and exte...
Brain computer interfaces (BCIs) have been developed and implemented in many areas as a new communic...
This chapter provides an overview of the functionality and the underlying principles of the brain-co...
Abstract — Existing brain-computer interface (BCI) control of highly dexterous robotic manipulators ...
Thesis (Ph.D.)--University of Washington, 2014Brain-computer interface (BCI) technology is evolving ...
Brain-computer interfaces (BCIs) translate oscillatory electroencephalogram (EEG) patterns into acti...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
Brain-computer interfaces (BCIs) translate oscillatory electroencephalogram (EEG) patterns into acti...
Brain-Computer Interface (BCI) is the technology that enables bodyless communication with machines o...
Brain-Computer Interfaces (BCIs) in combination with robot-assisted physical therapy may become a va...
International audienceIn this article, we study how combined motor imageries can be detected to deli...
Abstract Background Motor imagery (MI) induced EEG patterns are widely used as control signals for b...
Mental imagery-based brain-computer interfaces (BCIs) allow to interact with the external environmen...
International audienceIn the recent years, brain computer interfaces (BCI) using motor imagery have ...
The controlling of robotic arms based on brain–computer interface (BCI) can revolutionize the qualit...
Brain-computer interface (BCI) technologies aim to provide a bridge between the human brain and exte...
Brain computer interfaces (BCIs) have been developed and implemented in many areas as a new communic...
This chapter provides an overview of the functionality and the underlying principles of the brain-co...
Abstract — Existing brain-computer interface (BCI) control of highly dexterous robotic manipulators ...
Thesis (Ph.D.)--University of Washington, 2014Brain-computer interface (BCI) technology is evolving ...
Brain-computer interfaces (BCIs) translate oscillatory electroencephalogram (EEG) patterns into acti...
Brain-computer interfaces (BCI) have the potential to improve and enhance our lives, enabling us to ...
Brain-computer interfaces (BCIs) translate oscillatory electroencephalogram (EEG) patterns into acti...
Brain-Computer Interface (BCI) is the technology that enables bodyless communication with machines o...
Brain-Computer Interfaces (BCIs) in combination with robot-assisted physical therapy may become a va...
International audienceIn this article, we study how combined motor imageries can be detected to deli...
Abstract Background Motor imagery (MI) induced EEG patterns are widely used as control signals for b...