Differential morphine effects on short- and long-latency laser-evoked cortical responses in the rat
- 1 August 2004
- journal article
- research article
- Published by Wolters Kluwer Health in Pain
- Vol. 110 (3) , 665-674
- https://doi.org/10.1016/j.pain.2004.05.016
Abstract
Evoked potential and ensemble neuronal activities were used to study the responses of the primary sensorimotor cortex (SmI) to noxious CO(2) laser irradiation of the middle part of the tail in conscious behaving rats. The hypothesis that systemic morphine treatment preferentially attenuates the longer-latency laser-evoked cortical responses was also tested. Laser-evoked potentials (LEPs) and multiple single-unit (SU) activities were, respectively, recorded from chronically implanted stainless-steel screws and microwire electrodes. When examined individually, many SmI neurons showed either short-latency (<100 ms) or long-latency (300-500 ms) responses to laser irradiation. These neurons are widely dispersed in the tail region and hind limb region of the SmI, and also in the forelimb and head regions of the primary motor cortex (MI). Quantitatively, a higher percentage of neurons in the SmI tail region responded with shorter latencies compared to those in the SmI hind limb region or in the MI. When responses of many simultaneously recorded SU were examined together, short-latency and long-latency SmI ensemble activities matched the LEP1 and LEP2, respectively. Systemic morphine significantly attenuated the long-latency but not the short-latency component in both LEPs as well as ensemble neuronal activity in the tail region of the SmI. These effects were blocked by naloxone pretreatment.Keywords
This publication has 21 references indexed in Scilit:
- Intrathecally applied morphine inhibits nociceptive C fiber input to the primary somatosensory cortex (SI) of the ratPain, 1998
- Nociceptive C fibre input to the primary somatosensory cortex (SI). A field potential study in the ratBrain Research, 1993
- Effects of systemic morphine upon Aδ- and C-fibre evoked activities of subnucleus reticularis dorsalis neurones in the rat medullaEuropean Journal of Pharmacology, 1989
- Selective reduction of second pain sensations by systemic morphine in humansPain, 1986
- Evidence that the opiate receptors of the substantia gelatinosa contribute to the depression, by intravenous morphine, of the spinal transmission of impulses in unmyelinated primary afferentsBrain Research, 1981
- Vertebral Muscles of the Back and Tail of the Albino Rat (Rattus norvegicus albinus); pp. 1–23Brain, Behavior and Evolution, 1980
- Differential effects of morphine and opioid analgesics on A and C fibre-evoked activity in ascending axons of the rat spinal cordBrain Research, 1979
- Presynaptic excitability changes induced by morphine in single cutaneous afferent C- and A-fibersPflügers Archiv - European Journal of Physiology, 1979
- Correlation of subjective pain experience with cerebral evoked responses to noxious thermal stimulationsExperimental Brain Research, 1978
- Evoked cerebral responses to noxious thermal stimuli in humansExperimental Brain Research, 1976