Background Brain-computer interfaces (BCIs) were recently recognized as a method to promote neuroplastic effects in motor rehabilitation. The core of a BCI is a decoding stage by which signals from the brain are classified into different brain-states. The goal of this paper was to test the feasibility of a single trial classifier to detect motor execution based on signals from cortical motor regions, measured by functional near-infrared spectroscopy (fNIRS), and the response of the autonomic nervous system. An approach that allowed for individually tuned classifier topologies was opted for. This promises to be a first step towards a novel form of active movement therapy that could be operated and controlled by paretic patients. Methods ...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neu-roprosthetics a...
ObjectivePilot testing of real time functional magnetic resonance imaging (rt-fMRI) and real time fu...
Background: Thus far, most of the brain–computer interfaces (BCIs) developed for motor re...
BACKGROUND: Brain-computer interfaces (BCIs) were recently recognized as a method to promote neuropl...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
This paper presents the concept and initial results of a novel approach for robot assisted sensorimo...
This work serves as an initial investigation into improvements to classification accuracy of an imag...
Objective. In order to increase the number of states classified by a brain-computer interface (BCI),...
Enhanced classification accuracy and a sufficient number of commands are highly demanding in brain c...
In this chapter we present an overview of the area of electroencephalographyfunctional near infrare...
Neuroimaging classification with functional Near Infrared Spectroscopy (fNIRS) can be used for appl...
Functional near-infrared spectroscopy (fNIRS) is a non-invasive optical technique for detecting brai...
Brain Computer Interface (BCI) is a communication and control system that establishes a non-muscular...
Brain-Computer Interfaces (BCI) utilise neurophysiological signals originating in the brain to activ...
© 2020 Abdalmalak, Milej, Yip, Khan, Diop, Owen and St. Lawrence. Brain-computer interfaces (BCIs) a...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neu-roprosthetics a...
ObjectivePilot testing of real time functional magnetic resonance imaging (rt-fMRI) and real time fu...
Background: Thus far, most of the brain–computer interfaces (BCIs) developed for motor re...
BACKGROUND: Brain-computer interfaces (BCIs) were recently recognized as a method to promote neuropl...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neuroprosthetics an...
This paper presents the concept and initial results of a novel approach for robot assisted sensorimo...
This work serves as an initial investigation into improvements to classification accuracy of an imag...
Objective. In order to increase the number of states classified by a brain-computer interface (BCI),...
Enhanced classification accuracy and a sufficient number of commands are highly demanding in brain c...
In this chapter we present an overview of the area of electroencephalographyfunctional near infrare...
Neuroimaging classification with functional Near Infrared Spectroscopy (fNIRS) can be used for appl...
Functional near-infrared spectroscopy (fNIRS) is a non-invasive optical technique for detecting brai...
Brain Computer Interface (BCI) is a communication and control system that establishes a non-muscular...
Brain-Computer Interfaces (BCI) utilise neurophysiological signals originating in the brain to activ...
© 2020 Abdalmalak, Milej, Yip, Khan, Diop, Owen and St. Lawrence. Brain-computer interfaces (BCIs) a...
Non-invasive Brain-Computer Interfaces (BCI) have demonstrated great promise for neu-roprosthetics a...
ObjectivePilot testing of real time functional magnetic resonance imaging (rt-fMRI) and real time fu...
Background: Thus far, most of the brain–computer interfaces (BCIs) developed for motor re...