All Relations between dorsal striatum and nucleus accumbens

Publication Sentence Publish Date Extraction Date Species
Y Nagai, S Narumi, Y Saji, Y Nagaw. [A TRH analog (DN-1417). Antagonistic effects on reserpine-induced decreases in local cerebral glucose utilization and cerebral monoamine levels]. Nihon yakurigaku zasshi. Folia pharmacologica Japonica. vol 85. issue 5. 1985-10-09. PMID:3928465. significantly reversed the reduction of lcgu induced by reserpine in the thalamus dorsomedial nucleus, mamillary body, septal nucleus, caudate-putamen and nucleus accumbens. 1985-10-09 2023-08-11 mouse
R Quirion, C C Chiueh, H D Everist, A Per. Comparative localization of neurotensin receptors on nigrostriatal and mesolimbic dopaminergic terminals. Brain research. vol 327. issue 1-2. 1985-06-10. PMID:2985182. nt receptor sites are mainly found on presynaptic dopaminergic terminals in the caudate-putamen while they are pre- and post-synaptically located in the nucleus accumbens and the olfactory tubercule. 1985-06-10 2023-08-11 Not clear
J A Javitch, R J D'Amato, S M Strittmatter, S H Snyde. Parkinsonism-inducing neurotoxin, N-methyl-4-phenyl-1,2,3,6 -tetrahydropyridine: uptake of the metabolite N-methyl-4-phenylpyridine by dopamine neurons explains selective toxicity. Proceedings of the National Academy of Sciences of the United States of America. vol 82. issue 7. 1985-05-10. PMID:3872460. the km values for [3h]mpp+ uptake are 170 and 65 nm and the vmax values are 2 and 0.1 nmol/g of tissue per min in rat striatum and cortex, respectively, similar to values for [3h]dopamine uptake, autoradiography of accumulated [3h]mpp+ in slices of rat brain shows high densities in the caudate-putamen and nucleus accumbens. 1985-05-10 2023-08-11 mouse
P Winn, T W Robbin. Comparative effects of infusions of 6-hydroxydopamine into nucleus accumbens and anterolateral hypothalamus induced by 6-hydroxydopamine on the response to dopamine agonists, body weight, locomotor activity and measures of exploration in the rat. Neuropharmacology. vol 24. issue 1. 1985-05-10. PMID:3920545. consistent with this, regional assay using high pressure liquid chromatography (hplc) showed profound loss of dopamine in the caudate-putamen as well as in the nucleus accumbens and frontal cortex. 1985-05-10 2023-08-11 rat
A J Bradbury, B Costall, R J Naylo. Inhibition and facilitation of motor responding of the mouse by actions of dopamine agonists in the forebrain. Neuropharmacology. vol 23. issue 9. 1985-01-31. PMID:6514141. injections of tetralin (0.1 micrograms) not only into the nucleus accumbens but also into the tuberculum olfactorium, septal nucleus, anterior olfactory nucleus, anteromedial fibre system, claustrum and caudate-putamen could effect inhibition of motor activity. 1985-01-31 2023-08-12 mouse
M T Nakada, C M Wieczorek, T C Rainbo. Localization and characterization by quantitative autoradiography of [125I]LSD binding sites in rat brain. Neuroscience letters. vol 49. issue 1-2. 1984-11-26. PMID:6493586. however, co-incubation with ketanserin to block 5-ht2 receptors resulted in a pattern of binding that was similar to previous descriptions of the location of d-2 receptors, with high levels of residual binding in caudate-putamen, olfactory tubercle, nucleus accumbens and inferior olive. 1984-11-26 2023-08-12 rat
G A Ricaurte, R W Guillery, L S Seiden, C R Schuster, R Y Moor. Dopamine nerve terminal degeneration produced by high doses of methylamphetamine in the rat brain. Brain research. vol 235. issue 1. 1984-08-13. PMID:6145488. it has been found that methylamphetamine induces terminal degeneration along with correlative da neurochemical deficits in the neostriatum and nucleus accumbens; furthermore, that in cresyl violet-stained sections of the substantia nigra (sn), pars compacta, and ventral tegmental area (vta), there is no evidence of cell body loss in rats in which 50-60% of neostriatal da terminals have been destroyed. 1984-08-13 2023-08-12 rat
B Costall, J F Eniojukan, R J Naylo. The mesolimbic nucleus accumbens is critically involved with the mediation of the motor inhibitory and facilitatory effects of dopamine agonists on mouse spontaneous climbing behaviour. European journal of pharmacology. vol 96. issue 3-4. 1984-07-09. PMID:6426976. the intra-accumbens effectiveness of the dopamine agonists could not be mimicked by injections above the nucleus accumbens (into the head of the caudate-putamen complex) or below the nucleus accumbens (into the tuberculum olfactorium) (with the exception of the effectiveness of bromocriptine administered into the tuberculum olfactorium). 1984-07-09 2023-08-12 mouse
S R Philip. In vivo release of endogenous dopamine from rat caudate putamen and nucleus accumbens by 40 mM potassium chloride. Progress in neuro-psychopharmacology & biological psychiatry. vol 7. issue 4-6. 1984-03-08. PMID:6686714. in vivo release of endogenous dopamine from rat caudate putamen and nucleus accumbens by 40 mm potassium chloride. 1984-03-08 2023-08-12 rat
S R Philip. In vivo release of endogenous dopamine from rat caudate putamen and nucleus accumbens by 40 mM potassium chloride. Progress in neuro-psychopharmacology & biological psychiatry. vol 7. issue 4-6. 1984-03-08. PMID:6686714. the resting and k+-stimulated release rates of endogenous dopamine (da) have been measured in vivo at four different sites in the rat caudate putamen and nucleus accumbens. 1984-03-08 2023-08-12 rat
A J Dunn, S E Fil. Cold restraint alters dopamine metabolism in frontal cortex, nucleus accumbens and neostriatum. Physiology & behavior. vol 31. issue 4. 1984-02-14. PMID:6657772. cold restraint alters dopamine metabolism in frontal cortex, nucleus accumbens and neostriatum. 1984-02-14 2023-08-12 rat
T C Rainbow, A Biego. Quantitative autoradiography of [3H]prazosin binding sites in rat forebrain. Neuroscience letters. vol 40. issue 3. 1984-01-07. PMID:6316208. low levels of prazosin binding occurred in the caudate-putamen and the accumbens nucleus. 1984-01-07 2023-08-12 rat
L Svensson, S Ahleniu. Suppression of exploratory locomotor activity by the local application of dopamine or l-noradrenaline to the nucleus accumbens of the rat. Pharmacology, biochemistry, and behavior. vol 19. issue 4. 1984-01-07. PMID:6647505. adult male sprague-dawley rats were administered dopamine (da) or l-noradrenaline (l-na) locally into the nucleus accumbens or in the neostriatum. 1984-01-07 2023-08-12 rat
E M Joyce, L Stinus, S D Iverse. Effect of injections of 6-OHDA into either nucleus accumbens septi or frontal cortex on spontaneous and drug-induced activity. Neuropharmacology. vol 22. issue 9. 1983-12-21. PMID:6415508. biochemical assay data revealed that dopamine levels were significantly reduced both in nucleus accumbens septi (nas) and olfactory tubercle (ot) but not neostriatum; thus it was concluded that amphetamine- and apomorphine-induced locomotor activity is mediated by the mesolimbic dopamine system. 1983-12-21 2023-08-12 rat
M R Kozlowski, J F Marshal. Recovery of function and basal ganglia [14C]2-deoxyglucose uptake after nigrostriatal injury. Brain research. vol 259. issue 2. 1983-04-15. PMID:6297671. for structures that normally receive a dopaminergic innervation (e.g., neostriatum, nucleus accumbens septi, olfactory tubercle) the autoradiographic density of the injured side was decreased relative to the intact hemisphere. 1983-04-15 2023-08-12 rat
G K Hodge, L L Butche. Pars compacta of the substantia nigra modulates motor activity but is not involved importantly in regulating food and water intake. Naunyn-Schmiedeberg's archives of pharmacology. vol 313. issue 1. 1981-05-21. PMID:7207636. these behavioral effects were correlated with considerable, histochemically assessed loss of dopamine terminals in the caudate-putamen complex, but dopamine innervation in nucleus accumbens and other forebrain areas was only slightly affected. 1981-05-21 2023-08-12 rat
G V Rebec, K D Alloway, T R Bashor. Differential actions of classical and atypical antipsychotic drugs on spontaneous neuronal activity in the amygdaloid complex. Pharmacology, biochemistry, and behavior. vol 14. issue 1. 1981-04-24. PMID:6110210. despite these behavioral differences, a cataleptic dose of haloperidol (2.0 mg/kg) produces changes in neuronal activity in the neostriatum and nucleus accumbens comparable to those produced by a non-cataleptic dose of clozapine (20.0 mg/kg). 1981-04-24 2023-08-12 rat
T Taxt, J Storm-Mathise. Tentative localization of glutamergic and aspartergic nerve endings in brain. Journal de physiologie. vol 75. issue 6. 1980-08-15. PMID:547067. autoradiographically the uptake of aspartate was very high in the dorsal part of the lateral septum, moderately high in nucleus accumbens septi and neostriatum, and very low in the medial septum. 1980-08-15 2023-08-11 Not clear
G V Rebec, T R Bashore, K S Zimmerman, K D Allowa. "Classical" and "atypical" antipsychotic drugs: differential antagonism of amphetamine- and apomorphine-induced alterations of spontaneous neuronal activity in the neostriatum and nucleus accumbens. Pharmacology, biochemistry, and behavior. vol 11. issue 5. 1980-04-25. PMID:43515. the ability of clozapine and haloperidol to antagonize the depression of firing rate produced by d-amphetamine and apomorphine in the neostriatum and nucleus accumbens was tested in immobilized, locally anesthetized rats. 1980-04-25 2023-08-11 rat
A R Cools, V M Wiegant, W H Gispe. Distinct dopaminergic systems in ACTH-induced grooming. European journal of pharmacology. vol 50. issue 3. 1978-11-22. PMID:211042. excessive grooming behavior induced in rats by intraventricular injection of acth1-24 was inhibited by selective pharmacological manipulation of two functionally distinct types of dopaminergic terminals (dae and dai) in the neostriatum or the nucleus accumbens. 1978-11-22 2023-08-11 rat