Short Latency Somatosensory Evoked Responses to Median Nerve Stimulation in Healthy Humans: Electric and Magnetic Recordings
- 1 January 1989
- journal article
- research article
- Published by Taylor & Francis in International Journal of Neuroscience
- Vol. 46 (1-2) , 67-76
- https://doi.org/10.3109/00207458908991617
Abstract
Somatosensory Evoked Potentials (SEPs) and Somatosensory Evoked magnetic Fields (SEFs) to median nerve stimulation at wrist were recorded in 5 healthy subjects and the components between 15 and 30 ms after the stimulus were evaluated on the hemiscalp contralateral to the stimulated wrist. SEPs were measured by means of a 32-channel recorder and compared with SEFs obtained via multiple measurements with a 4-channel sensor. Equivalent dipole localization was carried out for the magnetic components peaking at about 15, 20 and 24 ms. The scalp distribution of SEPs, illustrated by bit mapped color images, were qualitatively explained by three separate sources. The first is described as a tangentially oriented dipole placed behind the Central Sulcus and responsible for the parietal N20-“late P25” waves and for the frontal P20-N30 ones. The second is represented by a radieal dipole placed just in front of the Central Sulcus and pointing towards the motor strip, responsible for the rolandic P22 component. The third is just behind the Central Sulcus and is radically oriented towards the surface of the postcentral sensory area for the “early P25” parietal wave. The SEFs distributions, illustrated by color isofield contour maps, were quantitatively explained by a unique tangential dipole localized, with good resolution, well behind the Sulcus for the 15 ms waves and slightly frontal to this site for the waves peaking at around 20 and 24 ms. The equivalent dipole has been localized at a depth of about 5 cm (15 ms component), 2 cm (20 ms components) and 4 cm (24 ms component), across the studied subjects. It is stressed that the dipole responsible for the magnetic pattern is likely to be the same tangential dipole responsible for a part of the electric pattern. Due to their radieal orientation, the other two dipoles, proposed for the SEPs maps, would be mostly undetectable by a magnetic investigation.Keywords
This publication has 27 references indexed in Scilit:
- Central somatosensory conduction in man: Neural generators and interpeak latencies of the far-field components recorded from neck and right or left scalp and earlobesPublished by Elsevier ,2003
- Monitoring of subcortical and cortical somatosensory evoked potentials during carotid endarterectomy: comparison with stump pressure levelsElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1987
- Bit-mapped color imaging of human evoked potentials with reference to the N20, P22, P27 and N30 somatosensory responsesElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1987
- Separate generators with distinct orientations for N20 and P22 somatosensory evoked potentials to finger stimulation?Electroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1986
- Color imaging of parietal and frontal somatosensory potential fields evoked by stimulation of median or posterior tibial nerve in manElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1985
- Non-cephalic reference recording of early somatosensory potentials to finger stimulation in adult or aging normal: differentiation of widespread N18 and contralateral N20 from the prerolandic p22 and N30 componentsElectroencephalography and Clinical Neurophysiology, 1981
- Topography and intracranial sources of somatosensory evoked potentials in the monkey. II. Cortical componentsElectroencephalography and Clinical Neurophysiology, 1981
- Brain electrical activity mapping (BEAM): A method for extending the clinical utility of EEG and evoked potential dataAnnals of Neurology, 1979
- Topography and intracranial sources of somatosensory evoked potentials in the monkey. I. early componentsElectroencephalography and Clinical Neurophysiology, 1979
- Distribution of cerebral somatosensory evoked responses in normal manElectroencephalography and Clinical Neurophysiology, 1962