Abstract Objective The objective of this study was to develop a portable and modular brain–computer interface (BCI) software platform independent of input and output devices. We implemented this platform in a case study of a subject with cervical spinal cord injury (C5 ASIA A). Background BCIs can restore independence for individuals with paralysis by using brain signals to control prosthetics or trigger functional electrical stimulation. Though several studies have successfully implemented this technology in the laboratory and the home, portability, device configuration, and caregiver setup remain challenges that limit deploy...
This study proposes a home care system (HCS) based on a brain-computer interface (BCI) with a smartp...
Noninvasive brain-computer interfaces (BCIs) use scalp-recorded electrical activity from the brain t...
Abstract Background Electroencephalogram-based brain–computer interfaces (BCIs) represent novel huma...
Abstract: The aim of this study was to develop a Brain Computer Interface (BCI) application to contr...
The aim of this study was to develop a Brain Computer Interface (BCI) application to control domotic...
Thesis (Ph.D.)--Boston UniversityBrain-computer interface (BCI) technology has seen tremendous growt...
Current brain-computer interface (BCIs) software is often tailored to the needs of scientists and te...
Current brain-computer interface (BCIs) software is often tailored to the needs of scientists and te...
Our objective was to develop and validate a new brain-computer interface (BCI) system suitable for l...
The quality of life of people suffering from severe motor disabilities can benefit from the use of c...
Brain Computer Interface (BCI) controlled Functional Electrical Stimulation (FES) has been proposed...
Motor rehabilitation using brain-computer interface (BCI) systems may facilitate functional recovery...
Central Neuropathic Pain (CNP) is a frequent chronic condition in people with spinal cord injury (SC...
The aim of this study was to develop a Brain Computer Interface (BCI) application to control domotic...
This paper presents original research investigating a sensor based, ambient assisted smart home plat...
This study proposes a home care system (HCS) based on a brain-computer interface (BCI) with a smartp...
Noninvasive brain-computer interfaces (BCIs) use scalp-recorded electrical activity from the brain t...
Abstract Background Electroencephalogram-based brain–computer interfaces (BCIs) represent novel huma...
Abstract: The aim of this study was to develop a Brain Computer Interface (BCI) application to contr...
The aim of this study was to develop a Brain Computer Interface (BCI) application to control domotic...
Thesis (Ph.D.)--Boston UniversityBrain-computer interface (BCI) technology has seen tremendous growt...
Current brain-computer interface (BCIs) software is often tailored to the needs of scientists and te...
Current brain-computer interface (BCIs) software is often tailored to the needs of scientists and te...
Our objective was to develop and validate a new brain-computer interface (BCI) system suitable for l...
The quality of life of people suffering from severe motor disabilities can benefit from the use of c...
Brain Computer Interface (BCI) controlled Functional Electrical Stimulation (FES) has been proposed...
Motor rehabilitation using brain-computer interface (BCI) systems may facilitate functional recovery...
Central Neuropathic Pain (CNP) is a frequent chronic condition in people with spinal cord injury (SC...
The aim of this study was to develop a Brain Computer Interface (BCI) application to control domotic...
This paper presents original research investigating a sensor based, ambient assisted smart home plat...
This study proposes a home care system (HCS) based on a brain-computer interface (BCI) with a smartp...
Noninvasive brain-computer interfaces (BCIs) use scalp-recorded electrical activity from the brain t...
Abstract Background Electroencephalogram-based brain–computer interfaces (BCIs) represent novel huma...