The first detection of the magnetic field of a stimulated peripheral nerve in man is presented. The measurement was performed noninvasively and in vivo on a healthy subject. The spatio-temporal field distribution is utilized to calculate the location of bioelectric activity on the basis of the equivalent current dipole model. The localization of the active nerve tissue is confirmed by a computer tomography image of the upper arm cross-section. Furthermore, a calculation of the total current distribution in the nerve explains the observed morphology of the signal
Electrodiagnosis is routinely integrated into clinical neurophysiology practice for peripheral nerve...
The purpose of this study was to identify the mechanism of cerebral cortex human isometric contracti...
Brain function can be studied noninvasively by magnetoencephalography (MEG) which measures weak magn...
Currently there does not exist a type of peripheral nerve interface that adequately combines spatial...
A theoretical analysis of magnetic stimulation was done to serve as a background for practical studi...
Prior theoretical studies indicate that the negative spatial derivative of the electric field induce...
Abstract--We determined the location of excitation for different positions of a round and butterfly ...
The 19 channel Neuromagnetometer system in the Clinical Neurophysiology Unit at Aston University is ...
Abstract Background Peripheral nerves are situated in a highly non-homogeneous environment, includin...
The functional topography of peripheral nerves has been studied by various indirect electrophysiolog...
In this paper, a numerical procedure for the analysis of peripheral nerve excitation through magneti...
The somatosensory homunculus has been identified during stimulation of median (at wrist and elbow), ...
The somatosensory homunculus has been identified during stimulation of median (at wrist and elbow), ...
Abstract Background Earlier observations in our lab had indicated that large, time-varying magnetic ...
When patients undergo a magnetic resonance imaging scan, they are subject to both strong static and ...
Electrodiagnosis is routinely integrated into clinical neurophysiology practice for peripheral nerve...
The purpose of this study was to identify the mechanism of cerebral cortex human isometric contracti...
Brain function can be studied noninvasively by magnetoencephalography (MEG) which measures weak magn...
Currently there does not exist a type of peripheral nerve interface that adequately combines spatial...
A theoretical analysis of magnetic stimulation was done to serve as a background for practical studi...
Prior theoretical studies indicate that the negative spatial derivative of the electric field induce...
Abstract--We determined the location of excitation for different positions of a round and butterfly ...
The 19 channel Neuromagnetometer system in the Clinical Neurophysiology Unit at Aston University is ...
Abstract Background Peripheral nerves are situated in a highly non-homogeneous environment, includin...
The functional topography of peripheral nerves has been studied by various indirect electrophysiolog...
In this paper, a numerical procedure for the analysis of peripheral nerve excitation through magneti...
The somatosensory homunculus has been identified during stimulation of median (at wrist and elbow), ...
The somatosensory homunculus has been identified during stimulation of median (at wrist and elbow), ...
Abstract Background Earlier observations in our lab had indicated that large, time-varying magnetic ...
When patients undergo a magnetic resonance imaging scan, they are subject to both strong static and ...
Electrodiagnosis is routinely integrated into clinical neurophysiology practice for peripheral nerve...
The purpose of this study was to identify the mechanism of cerebral cortex human isometric contracti...
Brain function can be studied noninvasively by magnetoencephalography (MEG) which measures weak magn...