<p>Left: Magnetometer positions used for the low-<i>T</i><sub>c</sub> system (blue; based on the Elekta Neuromag TRIUX). Right: Magnetometer positions used for the on-scalp system (red). Localization is performed for each magnetometer individually.</p
While commercial magnetoencephalography (MEG) systems are the functional neuroimaging stateof- the-a...
Contains fulltext : 181359.pdf (publisher's version ) (Open Access)The development...
Magnetoencephalography (MEG) can non-invasively measure the electromagnetic activity of the brain. A...
<p>Left: classical head localization where a large array of sensors (blue; here: the low-<i>T</i><su...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (solid blue) and on-scalp (solid red) syste...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
<p>Placement of localization coils (green) in a small (here: 7-coil) array around an on-scalp magnet...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
| openaire: EC/H2020/678578/EU//HRMEGRecent advances in magnetic sensing has made on-scalp magnetoen...
<p>Example of a small array of on-scalp magnetometers (red) that are fit as a group with a 32-coil l...
<p>A localization coil used in the Elekta Neuromag TRIUX system (ruler scale is in cm).</p
<p>Mean localization error with low-<i>T</i><sub>c</sub> (solid) and on-scalp (dashed) systems for d...
Accurate estimation of the neural activity underlying magnetoencephalography (MEG) signals requires ...
<p>Scalp locations used to calculate power, as well as inter-hemispheric (purple) and intra-hemisphe...
While commercial magnetoencephalography (MEG) systems are the functional neuroimaging stateof- the-a...
Contains fulltext : 181359.pdf (publisher's version ) (Open Access)The development...
Magnetoencephalography (MEG) can non-invasively measure the electromagnetic activity of the brain. A...
<p>Left: classical head localization where a large array of sensors (blue; here: the low-<i>T</i><su...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (solid blue) and on-scalp (solid red) syste...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
<p>Placement of localization coils (green) in a small (here: 7-coil) array around an on-scalp magnet...
<p>Mean localization error with low-<i>T</i><sub>c</sub> (blue) and on-scalp (red) systems for diffe...
| openaire: EC/H2020/678578/EU//HRMEGRecent advances in magnetic sensing has made on-scalp magnetoen...
<p>Example of a small array of on-scalp magnetometers (red) that are fit as a group with a 32-coil l...
<p>A localization coil used in the Elekta Neuromag TRIUX system (ruler scale is in cm).</p
<p>Mean localization error with low-<i>T</i><sub>c</sub> (solid) and on-scalp (dashed) systems for d...
Accurate estimation of the neural activity underlying magnetoencephalography (MEG) signals requires ...
<p>Scalp locations used to calculate power, as well as inter-hemispheric (purple) and intra-hemisphe...
While commercial magnetoencephalography (MEG) systems are the functional neuroimaging stateof- the-a...
Contains fulltext : 181359.pdf (publisher's version ) (Open Access)The development...
Magnetoencephalography (MEG) can non-invasively measure the electromagnetic activity of the brain. A...