All Relations between dorsal striatum and nac

Publication Sentence Publish Date Extraction Date Species
C Davidson, J A Stamfor. Neurochemical evidence of functional A10 dopamine terminals innervating the ventromedial axis of the neostriatum: in vitro voltammetric data in rat brain slices. Brain research. vol 615. issue 2. 1993-10-04. PMID:8364733. the neostriatum (cpu) and nucleus accumbens (nac) receive their primary dopamine (da) afferents from the a9 and a10 cell groups, respectively. 1993-10-04 2023-08-12 rat
J A Angulo, Y Watanabe, J Cadet, M Ledoux, B S McEwe. Upregulation of forebrain proenkephalin mRNA subsequent to NMDA receptor blockade. European journal of pharmacology. vol 244. issue 3. 1993-04-23. PMID:8458404. blockade of nmda (n-methyl-d-aspartate) receptors for 5 h with mk 801 resulted in elevated levels of proenkephalin mrna (up to 40% above vehicle-injected controls) in medial and anterior aspects of the caudate-putamen (mcpu and acpu) and the nucleus accumbens (nac). 1993-04-23 2023-08-12 rat
S M Lasle. Regulation of dopaminergic activity, but not tyrosine hydroxylase, is diminished after chronic inorganic lead exposure. Neurotoxicology. vol 13. issue 3. 1993-02-03. PMID:1361980. this study was conducted to assess the functional integrity of the regulation of da synthesis in caudate-putamen (c-p) and nucleus accumbens (nac) of chronically pb-exposed rats by measuring tyrosine hydroxylase (th) activity. 1993-02-03 2023-08-11 rat
G H Jones, T W Robbin. Differential effects of mesocortical, mesolimbic, and mesostriatal dopamine depletion on spontaneous, conditioned, and drug-induced locomotor activity. Pharmacology, biochemistry, and behavior. vol 43. issue 3. 1992-12-30. PMID:1448483. groups of rats with 6-hydroxydopamine (6-ohda) lesions of either the medial prefrontal cortex (pfc), nucleus accumbens (nac), or caudate putamen (cpu) were given daily tests for locomotor activity in photocell cages while food deprived. 1992-12-30 2023-08-11 human
G H Jones, T D Hernandez, D A Kendall, C A Marsden, T W Robbin. Dopaminergic and serotonergic function following isolation rearing in rats: study of behavioural responses and postmortem and in vivo neurochemistry. Pharmacology, biochemistry, and behavior. vol 43. issue 1. 1992-11-02. PMID:1384071. in experiment 2, isolates had higher postmortem dopamine (da) concentrations and an altered asymmetry in da function in the medial prefrontal cortex (pfc) but not in the nucleus accumbens (nac) or caudate putamen (cpu). 1992-11-02 2023-08-11 rat
M A Cenci, P Kalén, R J Mandel, A Björklun. Regional differences in the regulation of dopamine and noradrenaline release in medial frontal cortex, nucleus accumbens and caudate-putamen: a microdialysis study in the rat. Brain research. vol 581. issue 2. 1992-10-26. PMID:1393530. dopamine (da) and noradrenaline (na) extracellular levels have been measured by microdialysis in the medial frontal cortex (mfc), nucleus accumbens (nac) and caudate-putamen (cp) under baseline conditions in awake and halothane-anaesthetized rats, and after application of three types of stimuli which are likely to activate the brainstem catecholaminergic systems: mild stressors (handling and tail pinch), rewarded behavior (eating palatable food without prior food deprivation) and electrical stimulation of the lateral habenular nucleus. 1992-10-26 2023-08-11 rat
J A Stamford, R Muscat, J J O'Connor, J Patel, S J Trout, W J Wieczorek, Z L Kruk, P Willne. Voltammetric evidence that subsensitivity to reward following chronic mild stress is associated with increased release of mesolimbic dopamine. Psychopharmacology. vol 105. issue 2. 1992-04-07. PMID:1796133. dopamine (da) release in the nucleus accumbens (nac) and caudate putamen (cpu) was measured in vivo using fast cyclic voltammetry, following electrical stimulation of the medial forebrain bundle. 1992-04-07 2023-08-11 rat
J L Cadet, K Kujirai, S Przedborsk. Bilateral modulation of [3H]neurotensin binding by unilateral intrastriatal 6-hydroxydopamine injections: evidence from a receptor autoradiographic study. Brain research. vol 564. issue 1. 1992-03-12. PMID:1663814. intrastriatal injections of 6-hydroxydopamine which cause almost complete destruction of the mesostriatal dopaminergic pathway also caused a marked loss of neurotensin receptors in the caudate-putamen (cpu), the nucleus accumbens (nac) and in the olfactory tubercle (ot). 1992-03-12 2023-08-11 rat
J A Angulo, H Coirini, M Ledoux, M Schumache. Regulation by dopaminergic neurotransmission of dopamine D2 mRNA and receptor levels in the striatum and nucleus accumbens of the rat. Brain research. Molecular brain research. vol 11. issue 2. 1992-02-06. PMID:1661813. by day 8 of haloperidol treatment, d2 mrna and receptor levels were decreased (up to 20%) in the medial and anterior aspects of the caudate-putamen (mcpu and acpu) and the nucleus accumbens (nac). 1992-02-06 2023-08-11 rat
K Kujirai, S Przedborski, V Kostic, V Jackson-Lewis, S Fahn, J L Cade. Autoradiography of dopamine receptors and dopamine uptake sites in the spontaneously hypertensive rat. Brain research bulletin. vol 25. issue 5. 1991-04-01. PMID:2149666. shr showed significantly higher [3h]sch 23390 and [3h]spiperone binding in the caudate-putamen (cpu), the nucleus accumbens (nac) and the olfactory tubercle (ot) in comparison to the sd rats. 1991-04-01 2023-08-11 rat
J A Angulo, J L Cadet, C S Woolley, F Suber, B S McEwe. Effect of chronic typical and atypical neuroleptic treatment on proenkephalin mRNA levels in the striatum and nucleus accumbens of the rat. Journal of neurochemistry. vol 54. issue 6. 1990-06-18. PMID:1971007. we measured proenkephalin (pek) mrna levels in the anterior and medial aspects of the caudate-putamen (cpu) and in the nucleus accumbens (nac) of the rat by in situ hybridization histochemistry after chronic treatment for 21 days with typical (haloperidol and prolixin) and atypical (molindone, thioridazine, and clozapine) neuroleptics. 1990-06-18 2023-08-11 rat
S R Wachtel, X T Hu, M P Galloway, F J Whit. D1 dopamine receptor stimulation enables the postsynaptic, but not autoreceptor, effects of D2 dopamine agonists in nigrostriatal and mesoaccumbens dopamine systems. Synapse (New York, N.Y.). vol 4. issue 4. 1990-01-31. PMID:2532422. possible functional interactions between d1 and d2 dopamine (da) receptors were examined using extracellular single-cell recording with microiontophoretic application of selective d1 and d2 receptor agonists both postsynaptically, in the rat nucleus accumbens (nac) and caudate-putamen (cpu), and presynaptically, at impulse-regulating somatodendritic da autoreceptors in the ventral tegmental area (a10) and substantia nigra pars compacta (a9). 1990-01-31 2023-08-11 rat
S Kurumiya, S Nakajim. Dopamine D1 receptors in the nucleus accumbens: involvement in the reinforcing effect of tegmental stimulation. Brain research. vol 448. issue 1. 1988-08-25. PMID:2968828. twenty-five rats were implanted with bipolar electrodes into the ventral tegmental area (vta) and cannulae into the nucleus accumbens (nac) or the caudate-putamen complex (cpu). 1988-08-25 2023-08-11 rat
M W Jones, I C Kilpatrick, O T Phillipso. The agranular insular cortex: a site of unusually high dopamine utilisation. Neuroscience letters. vol 72. issue 3. 1987-04-08. PMID:3822236. dopamine (da) utilisation (expressed as homovanillic acid:da) was compared in the medial prefrontal cortex (fcx), the agranular insular cortex (agcx), the caudate-putamen (medial, cpm and lateral, cpl divisions) and the nucleus accumbens (nac). 1987-04-08 2023-08-11 Not clear
H T Chang, S T Kita. Projection neurons of the nucleus accumbens: an intracellular labeling study. Brain research. vol 347. issue 1. 1985-12-13. PMID:2996712. the morphology of these nac projection neurons were determined to be medium spiny neurons similar to those identified in the caudate-putamen. 1985-12-13 2023-08-11 rat