Human gait is a complex activity that requires high coordination between the central nervous system, the limb, and the musculoskeletal system. More research is needed to understand the latter coordination's complexity in designing better and more effective rehabilitation strategies for gait disorders. Electroencephalogram (EEG) and functional near-infrared spectroscopy (fNIRS) are among the most used technologies for monitoring brain activities due to portability, non-invasiveness, and relatively low cost compared to others. Fusing EEG and fNIRS is a well-known and established methodology proven to enhance brain–computer interface (BCI) performance in terms of classification accuracy, number of control commands, and response time. Although ...
Neural coding of gait intent and continuous gait kinematics have advanced brain computer interface (...
Background:Functional near-infrared spectroscopy (fNIRS) is increasingly used in the field of postur...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
In the last few years, significant progress has been made in the field of walk rehabilitation. Motor...
In the last few years, significant progress has been made in the field of walk rehabilitation. Motor...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neu-roprosthetics a...
Gait and balance impairments are frequently considered as the most significant concerns among indivi...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
This work serves as an initial investigation into improvements to classification accuracy of an imag...
Brain Computer Interface (BCI) is a communication and control system that establishes a non-muscular...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
Background Brain-computer interfaces (BCIs) were recently recognized as a method to promote neuropl...
Rehabilitation training is essential for motor dysfunction patients, and the training through their ...
Walking is a complex motor behavior with a special relevance in clinical neurology. Many neurologica...
Despite the advances in the field of brain computer interfaces (BCI), the use of the sole electroenc...
Neural coding of gait intent and continuous gait kinematics have advanced brain computer interface (...
Background:Functional near-infrared spectroscopy (fNIRS) is increasingly used in the field of postur...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
In the last few years, significant progress has been made in the field of walk rehabilitation. Motor...
In the last few years, significant progress has been made in the field of walk rehabilitation. Motor...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neu-roprosthetics a...
Gait and balance impairments are frequently considered as the most significant concerns among indivi...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
This work serves as an initial investigation into improvements to classification accuracy of an imag...
Brain Computer Interface (BCI) is a communication and control system that establishes a non-muscular...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
Background Brain-computer interfaces (BCIs) were recently recognized as a method to promote neuropl...
Rehabilitation training is essential for motor dysfunction patients, and the training through their ...
Walking is a complex motor behavior with a special relevance in clinical neurology. Many neurologica...
Despite the advances in the field of brain computer interfaces (BCI), the use of the sole electroenc...
Neural coding of gait intent and continuous gait kinematics have advanced brain computer interface (...
Background:Functional near-infrared spectroscopy (fNIRS) is increasingly used in the field of postur...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...