Optically pumped magnetometers have opened many possibilities for the study of human brain function using wearable moveable technology. In order to fully exploit this capability, a stable low-field environment at the sensors is required. One way to achieve this is to predict (and compensate for) changes in the ambient magnetic field as the subject moves through the room. The ultimate aim is to account for dynamically changing noise environments by updating a model based on measurements from a moving sensor array. We begin by demonstrating how an appropriate environmental spatial noise model can be developed through Free-energy based model selection. We then develop a Kalman-filter based strategy to account for dynamically changing interfere...
The ability to collect high-quality neuroimaging data during ambulatory participant movement would e...
Magnetoelectric (ME) sensors with a form factor of a few millimeters offer a comparatively low magne...
Optically pumped magnetometer-based magnetoencephalography (OP-MEG) can be used to measure neuromagn...
Optically pumped magnetometers have opened many possibilities for the study of human brain function ...
Background: Optically pumped magnetometers (OPMs) have made moving, wearable magnetoencephalography ...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
One of the primary technical challenges facing magnetoencephalography (MEG) is that the magnitude of...
Optically-pumped magnetometers (OPMs) are highly sensitive, compact magnetic field sensors, which of...
EVOKED response data in magneto-encephalography (MEG) typically has a very low signal-to-noise rati...
© 2017 The Authors Advances in the field of quantum sensing mean that magnetic field sensors, operat...
We consider the problem of estimating neural activity from measurements of the magnetic fields reco...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
With MEG, the tiny magnetic fields produced by neuronal currents within the brain can be measured co...
| openaire: EC/FP7/678578/EU//HRMEGObjective: Magnetoencephalography (MEG) signals typically reflect...
Wearable sensors for continuous physiological monitoring have the potential to change the paradigm f...
The ability to collect high-quality neuroimaging data during ambulatory participant movement would e...
Magnetoelectric (ME) sensors with a form factor of a few millimeters offer a comparatively low magne...
Optically pumped magnetometer-based magnetoencephalography (OP-MEG) can be used to measure neuromagn...
Optically pumped magnetometers have opened many possibilities for the study of human brain function ...
Background: Optically pumped magnetometers (OPMs) have made moving, wearable magnetoencephalography ...
Here we propose that much of the magnetic interference observed when using optically pumped magnetom...
One of the primary technical challenges facing magnetoencephalography (MEG) is that the magnitude of...
Optically-pumped magnetometers (OPMs) are highly sensitive, compact magnetic field sensors, which of...
EVOKED response data in magneto-encephalography (MEG) typically has a very low signal-to-noise rati...
© 2017 The Authors Advances in the field of quantum sensing mean that magnetic field sensors, operat...
We consider the problem of estimating neural activity from measurements of the magnetic fields reco...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
With MEG, the tiny magnetic fields produced by neuronal currents within the brain can be measured co...
| openaire: EC/FP7/678578/EU//HRMEGObjective: Magnetoencephalography (MEG) signals typically reflect...
Wearable sensors for continuous physiological monitoring have the potential to change the paradigm f...
The ability to collect high-quality neuroimaging data during ambulatory participant movement would e...
Magnetoelectric (ME) sensors with a form factor of a few millimeters offer a comparatively low magne...
Optically pumped magnetometer-based magnetoencephalography (OP-MEG) can be used to measure neuromagn...