Stress-induced depression of motor activity correlates with regional changes in brain norepinephrine but not in dopamine
- 1 January 1980
- journal article
- research article
- Published by Springer Nature in Neurochemical Research
- Vol. 5 (1) , 9-22
- https://doi.org/10.1007/bf00964456
Abstract
This experiment examined how inescapable tail shock alters the level of dopamine and norepinephrine within various brain regions of the rat and the relationship of these changes to the depression of motor activity produced by the shock. Following exposure to tail shock that is known to interfere with acquisition of active behavioral tasks, animals were briefly tested for spontaneous motor activity and then sacrificed for neurochemical measures. Norepinephrine and dopamine levels in the frontal cortex, brain stem, striatum, olfactory tubercle, hypothalamus, hippocampus, septum, and amygdala were measured by a sensitive radicenzymatic technique. Exposure to 45 min of tail shock did not alter motor activity significantly, but shock sessions of 60 and 75 min duration produced a marked decrease in motor activity. Levels of dopamine were found to be very little changed in all brain regions studied except for the hypothalamus, in which a substantial rise in dopamine level was observed. Norepinephrine levels, in contrast, fell in many brain regions in response to shock. The fall in norepinephrine levels observed in twi brain regions was significantly correlated with the decline in motor activity (brain stemr=+0.70, hypothalamusr=+0.60) These data suggest that deficits in active motor behavior produced by shock parameters similar to those used in this study may reflect concomitant disturbances of noradrenergic function in specific brain regions.This publication has 44 references indexed in Scilit:
- Effects of selective forebrain depletions of norepinephrine and serotonin on the activity and food intake effects of amphetamine and fenfluraminePharmacology Biochemistry and Behavior, 1976
- Solid-state animal detection system: Its application to open field activity and freezing behaviorPhysiology & Behavior, 1975
- Time-dependent variations in aversively motivated behaviors: Nonassociative effects of cholinergic and catecholaminergic activity.Psychological Review, 1975
- The relative importance of dopaminergic and noradrenergic neuronal systems for the stimulation of locomotor activity induced by amphetamine and other drugsNeuropharmacology, 1973
- CATECHOLAMINES IN FETAL AND NEWBORN RAT BRAINJournal of Neurochemistry, 1973
- Effect of central catecholamine alterations by 6-hydroxydopamine on shuttle box avoidance acquistionPhysiology & Behavior, 1972
- Effects of coping behavior in different warning signal conditions on stress pathology in rats.Journal of Comparative and Physiological Psychology, 1971
- The effect of immobilization stress on the activity of central monoamine neuronsLife Sciences, 1968
- Failure to escape traumatic shock.Journal of Experimental Psychology, 1967
- Effects of α-methyltyrosine on brain catecholamines and conditioned behavior in guinea pigsLife Sciences, 1966