Here we propose that much of the magnetic interference observed when using optically pumped magnetometers for MEG experiments can be modeled as a spatially homogeneous magnetic field. We show that this approximation reduces sensor level variance and substantially improves statistical power. This model does not require knowledge of the underlying neuroanatomy nor the sensor positions. It only needs information about the sensor orientation. Due to the model's low rank there is little risk of removing substantial neural signal. However, we provide a framework to assess this risk for any sensor number, design or subject neuroanatomy. We find that the risk of unintentionally removing neural signal is reduced when multi-axis recordings are perfor...
© 2019 The Authors. Human Brain Mapping published by Wiley Periodicals, Inc. Optically pumped magnet...
| openaire: EC/FP7/678578/EU//HRMEGObjective: Magnetoencephalography (MEG) signals typically reflect...
With MEG, the tiny magnetic fields produced by neuronal currents within the brain can be measured co...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
The optically pumped magnetometer (OPM) is a viable means to detect magnetic fields generated by hum...
Optically-pumped magnetometers (OPMs) are highly sensitive, compact magnetic field sensors, which of...
Magnetoencephalography (MEG) is a neuroimaging technique that measures the magnetic fields of the br...
Magnetoencephalography (MEG) is a sophisticated tool which yields rich information on the spatial, s...
Background: Optically pumped magnetometers (OPMs) have made moving, wearable magnetoencephalography ...
One of the primary technical challenges facing magnetoencephalography (MEG) is that the magnitude of...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
| openaire: EC/H2020/678578/EU//HRMEGThe spatial resolution of magnetoencephalography (MEG) can be i...
Magnetoencephalography (MEG) is a functional neuroimaging technology which allows researchers to pro...
Optically-pumped magnetometers (OPMs) have recently reached sensitivity levels required for magnetoe...
Several new technologies have emerged promising new Magnetoencephalography (MEG) systems in which th...
© 2019 The Authors. Human Brain Mapping published by Wiley Periodicals, Inc. Optically pumped magnet...
| openaire: EC/FP7/678578/EU//HRMEGObjective: Magnetoencephalography (MEG) signals typically reflect...
With MEG, the tiny magnetic fields produced by neuronal currents within the brain can be measured co...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
The optically pumped magnetometer (OPM) is a viable means to detect magnetic fields generated by hum...
Optically-pumped magnetometers (OPMs) are highly sensitive, compact magnetic field sensors, which of...
Magnetoencephalography (MEG) is a neuroimaging technique that measures the magnetic fields of the br...
Magnetoencephalography (MEG) is a sophisticated tool which yields rich information on the spatial, s...
Background: Optically pumped magnetometers (OPMs) have made moving, wearable magnetoencephalography ...
One of the primary technical challenges facing magnetoencephalography (MEG) is that the magnitude of...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
| openaire: EC/H2020/678578/EU//HRMEGThe spatial resolution of magnetoencephalography (MEG) can be i...
Magnetoencephalography (MEG) is a functional neuroimaging technology which allows researchers to pro...
Optically-pumped magnetometers (OPMs) have recently reached sensitivity levels required for magnetoe...
Several new technologies have emerged promising new Magnetoencephalography (MEG) systems in which th...
© 2019 The Authors. Human Brain Mapping published by Wiley Periodicals, Inc. Optically pumped magnet...
| openaire: EC/FP7/678578/EU//HRMEGObjective: Magnetoencephalography (MEG) signals typically reflect...
With MEG, the tiny magnetic fields produced by neuronal currents within the brain can be measured co...