New research suggests that magnetoencephalography (MEG) contains rich spatial information for decoding neural states. Even small differences in the angle of neighbouring dipoles generate subtle, but statistically separable field patterns. This implies MEG (and electroencephalography: EEG) is ideal for decoding neural states with high-temporal resolution in the human brain
Virtual reality (VR) provides an immersive environment in which a participant can experience a feeli...
© 2017 The Authors Advances in the field of quantum sensing mean that magnetic field sensors, operat...
International audienceWe provide a brief overview of our recent research into decoding cognitive sta...
New research suggests that magnetoencephalography (MEG) contains rich spatial information for decodi...
New research suggests that magnetoencephalography (MEG) contains rich spatial information for decodi...
Recent developments in performance and practicality of optically-pumped magnetometers (OPMs) have en...
Recent work has demonstrated that Optically Pumped Magnetometers (OPMs) can be utilised to create a ...
Magnetoencephalography (MEG) offers a unique way to non-invasively monitor the neural activity in th...
Magnetoencephalography (MEG) is a sophisticated tool which yields rich information on the spatial, s...
Magnetoencephalography (MEG), with its direct view to the cortex through the magnetically transparen...
Background: Brain-computer interfaces decode intentions directly from the human brain with the aim t...
AbstractMagnetoencephalography (MEG), with its direct view to the cortex through the magnetically tr...
AbstractRecent neurophysiological evidence suggests that a hierarchical neural network of low-to-hig...
This thesis has been concerned with the neuromagnetic fields associated with the processing of faces...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
Virtual reality (VR) provides an immersive environment in which a participant can experience a feeli...
© 2017 The Authors Advances in the field of quantum sensing mean that magnetic field sensors, operat...
International audienceWe provide a brief overview of our recent research into decoding cognitive sta...
New research suggests that magnetoencephalography (MEG) contains rich spatial information for decodi...
New research suggests that magnetoencephalography (MEG) contains rich spatial information for decodi...
Recent developments in performance and practicality of optically-pumped magnetometers (OPMs) have en...
Recent work has demonstrated that Optically Pumped Magnetometers (OPMs) can be utilised to create a ...
Magnetoencephalography (MEG) offers a unique way to non-invasively monitor the neural activity in th...
Magnetoencephalography (MEG) is a sophisticated tool which yields rich information on the spatial, s...
Magnetoencephalography (MEG), with its direct view to the cortex through the magnetically transparen...
Background: Brain-computer interfaces decode intentions directly from the human brain with the aim t...
AbstractMagnetoencephalography (MEG), with its direct view to the cortex through the magnetically tr...
AbstractRecent neurophysiological evidence suggests that a hierarchical neural network of low-to-hig...
This thesis has been concerned with the neuromagnetic fields associated with the processing of faces...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
Virtual reality (VR) provides an immersive environment in which a participant can experience a feeli...
© 2017 The Authors Advances in the field of quantum sensing mean that magnetic field sensors, operat...
International audienceWe provide a brief overview of our recent research into decoding cognitive sta...