Pain-related somatosensory evoked potentials following CO2 laser stimulation of foot in man. 1995

X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
Department of Brain Pathophysiology, Kyoto University Faculty of Medicine, Japan.

Since our previous study of pain somatosensory evoked potentials (SEPs) following CO2 laser stimulation of the hand dorsum could not clarify whether the early cortical component N1 was generated from the primary somatosensory cortex (SI) or the secondary somatosensory cortex (SII) or both, the scalp topography of SEPs following CO2 laser stimulation of the foot dorsum was studied in 10 normal subjects and was compared with that of the hand pain SEPs and the conventional SEPs following electrical stimulation of the posterior tibial nerve recorded in 8 and 6 of the 10 subjects, respectively. Three components (N1, N2 and P2) were recorded for both foot and hand pain SEPs. N1 of the foot pain SEPs was maximal at the midline electrodes (Cz or CPz) in all data where that potential was recognized, but the potential field distribution was variable among subjects and even between two sides within the same subject. N1 of the hand pain SEPs was maximal at the contralateral central or midtemporal electrode. The scalp distribution of N2 and P2, however, was not different between the foot and hand pain SEPs. The mean peak latency of N1 following stimulation of foot and hand was found to be 191 msec and 150 msec, respectively, but there was no significant difference in the interpeak latency of N1-N2 between foot and hand stimulation. It is therefore concluded that N1 of the foot pain SEPs is generated mainly from the foot area of SI. The variable scalp distribution of the N1 component of the foot pain SEPs is likely due to an anatomical variability among subjects and even between sides.

UI MeSH Term Description Entries
D007834 Lasers An optical source that emits photons in a coherent beam. Light Amplification by Stimulated Emission of Radiation (LASER) is brought about using devices that transform light of varying frequencies into a single intense, nearly nondivergent beam of monochromatic radiation. Lasers operate in the infrared, visible, ultraviolet, or X-ray regions of the spectrum. Masers,Continuous Wave Lasers,Pulsed Lasers,Q-Switched Lasers,Continuous Wave Laser,Laser,Laser, Continuous Wave,Laser, Pulsed,Laser, Q-Switched,Lasers, Continuous Wave,Lasers, Pulsed,Lasers, Q-Switched,Maser,Pulsed Laser,Q Switched Lasers,Q-Switched Laser
D008297 Male Males
D010146 Pain An unpleasant sensation induced by noxious stimuli which are detected by NERVE ENDINGS of NOCICEPTIVE NEURONS. Suffering, Physical,Ache,Pain, Burning,Pain, Crushing,Pain, Migratory,Pain, Radiating,Pain, Splitting,Aches,Burning Pain,Burning Pains,Crushing Pain,Crushing Pains,Migratory Pain,Migratory Pains,Pains, Burning,Pains, Crushing,Pains, Migratory,Pains, Radiating,Pains, Splitting,Physical Suffering,Physical Sufferings,Radiating Pain,Radiating Pains,Splitting Pain,Splitting Pains,Sufferings, Physical
D010812 Physical Stimulation Act of eliciting a response from a person or organism through physical contact. Stimulation, Physical,Physical Stimulations,Stimulations, Physical
D011930 Reaction Time The time from the onset of a stimulus until a response is observed. Response Latency,Response Speed,Response Time,Latency, Response,Reaction Times,Response Latencies,Response Times,Speed, Response,Speeds, Response
D001931 Brain Mapping Imaging techniques used to colocalize sites of brain functions or physiological activity with brain structures. Brain Electrical Activity Mapping,Functional Cerebral Localization,Topographic Brain Mapping,Brain Mapping, Topographic,Functional Cerebral Localizations,Mapping, Brain,Mapping, Topographic Brain
D002245 Carbon Dioxide A colorless, odorless gas that can be formed by the body and is necessary for the respiration cycle of plants and animals. Carbonic Anhydride,Anhydride, Carbonic,Dioxide, Carbon
D004569 Electroencephalography Recording of electric currents developed in the brain by means of electrodes applied to the scalp, to the surface of the brain, or placed within the substance of the brain. EEG,Electroencephalogram,Electroencephalograms
D005073 Evoked Potentials, Somatosensory The electric response evoked in the CEREBRAL CORTEX by stimulation along AFFERENT PATHWAYS from PERIPHERAL NERVES to CEREBRUM. Somatosensory Evoked Potentials,Evoked Potential, Somatosensory,Somatosensory Evoked Potential
D005260 Female Females

Related Publications

X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
January 1989, Electroencephalography and clinical neurophysiology,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
May 1992, Acta neurologica Scandinavica,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
December 1997, Internal medicine (Tokyo, Japan),
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
September 1994, Journal of the neurological sciences,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
June 2010, Pain medicine (Malden, Mass.),
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
November 1993, Acta neurologica Scandinavica,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
September 1996, Experimental brain research,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
March 1979, Journal of neurology,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
May 2000, Journal of clinical neurophysiology : official publication of the American Electroencephalographic Society,
X Xu, and M Kanda, and K Shindo, and N Fujiwara, and T Nagamine, and A Ikeda, and M Honda, and N Tachibana, and G Barrett, and R Kaji
June 1995, Neuroscience letters,
Copied contents to your clipboard!