All Relations between dopaminergic and mesencephalon

Publication Sentence Publish Date Extraction Date Species
W Dimpfe. Drug-induced field potential changes in dopaminergic target areas after electrical stimulation of the rat mesencephalon. Neuropsychobiology. vol 14. issue 1. 1986-01-22. PMID:2999640. changes of field potentials electrically evoked from the mesencephalon were studied in two dopaminergic target areas. 1986-01-22 2023-08-11 rat
C Mytilineou, G Cohen, R E Heikkil. 1-Methyl-4-phenylpyridine (MPP+) is toxic to mesencephalic dopamine neurons in culture. Neuroscience letters. vol 57. issue 1. 1985-10-03. PMID:3875812. mpp+ was tested for neurotoxicity on the dopaminergic neurons of embryonic rat midbrain in culture. 1985-10-03 2023-08-11 rat
S D Iverse. Behavioural effects of manipulation of basal ganglia neurotransmitters. Ciba Foundation symposium. vol 107. 1985-01-24. PMID:6149897. topographically organized dopaminergic projections from the extrapyramidal structures of the ventral mesencephalon (substantia nigra and ventral tegmental area) to the dorsal (body of caudate-putamen) and ventral (anterior-ventral caudate, nucleus accumbens, tuberculum olfactorium) striatum subserve sensorimotor integration in the rat. 1985-01-24 2023-08-12 rat
P W Kaliva. Neurotensin in the ventromedial mesencephalon of the rat: anatomical and functional considerations. The Journal of comparative neurology. vol 226. issue 4. 1984-09-19. PMID:6086729. considering the known capacity of neurotensin to activate dopamine neurons in the ventromedial mesencephalon, and the partial mediolateral topographical distribution of dopaminergic projections from this region to the limbic forebrain, it is possible that neurotensin may be activating two distinct populations of dopamine neurons to produce hypothermia and behavioral hyperactivity. 1984-09-19 2023-08-12 rat
L A Chiodo, M J Bannon, A A Grace, R H Roth, B S Bunne. Evidence for the absence of impulse-regulating somatodendritic and synthesis-modulating nerve terminal autoreceptors on subpopulations of mesocortical dopamine neurons. Neuroscience. vol 12. issue 1. 1984-08-24. PMID:6462443. the mean basal discharge rate and degree of burst firing was also different between these subgroups of midbrain dopaminergic neurons. 1984-08-24 2023-08-12 Not clear
L A Chiodo, M J Bannon, A A Grace, R H Roth, B S Bunne. Evidence for the absence of impulse-regulating somatodendritic and synthesis-modulating nerve terminal autoreceptors on subpopulations of mesocortical dopamine neurons. Neuroscience. vol 12. issue 1. 1984-08-24. PMID:6462443. using biochemical techniques, subgroups of midbrain dopaminergic systems were again found to differ. 1984-08-24 2023-08-12 Not clear
R T Matthews, D C Germa. Electrophysiological evidence for excitation of rat ventral tegmental area dopamine neurons by morphine. Neuroscience. vol 11. issue 3. 1984-06-20. PMID:6717805. a considerable body of evidence indicates that opiates have an important influence on midbrain dopaminergic neurons. 1984-06-20 2023-08-12 rat
J Hedne. Neuropharmacological aspects of central respiratory regulation. An experimental study in the rat. Acta physiologica Scandinavica. Supplementum. vol 524. 1984-06-18. PMID:6202094. the initial bradypnoic response might be due to a decreased sensitivity to afferent vagal signals, while the following tachypnoic phase might be elicited by dopaminergic mechanisms at posterior diencephalic and upper midbrain levels (hypoxic, hypercapnic tachypnea). 1984-06-18 2023-08-12 rat
B J Everitt, T Hökfelt, L Terenius, K Tatemoto, V Mutt, M Goldstei. Differential co-existence of neuropeptide Y (NPY)-like immunoreactivity with catecholamines in the central nervous system of the rat. Neuroscience. vol 11. issue 2. 1984-05-30. PMID:6144080. neither the a5 and a7 noradrenergic cells in the pons, nor any of the dopaminergic cell groups in the mesencephalon and forebrain (a8-a15) seemed to contain a neuropeptide y-like peptide. 1984-05-30 2023-08-12 rat
K Reymann, W Pohle, P Müller-Welde, T Ot. Dopaminergic innervation of the hippocampus: evidence for midbrain raphe neurons as the site of origin. Biomedica biochimica acta. vol 42. issue 10. 1984-05-30. PMID:6202300. dopaminergic innervation of the hippocampus: evidence for midbrain raphe neurons as the site of origin. 1984-05-30 2023-08-12 rat
K Reymann, W Pohle, P Müller-Welde, T Ot. Dopaminergic innervation of the hippocampus: evidence for midbrain raphe neurons as the site of origin. Biomedica biochimica acta. vol 42. issue 10. 1984-05-30. PMID:6202300. some of the retrograde labeled neurons of the midbrain raphe nuclei (mainly b8-region) were identified as catecholaminergic, probably dopaminergic. 1984-05-30 2023-08-12 rat
S Denis-Donini, J Glowinski, A Prochiant. Glial heterogeneity may define the three-dimensional shape of mouse mesencephalic dopaminergic neurones. Nature. vol 307. issue 5952. 1984-03-23. PMID:6694754. dopaminergic neurones from the mesencephalon were plated on glial monolayers prepared either from the striatal or the mesencephalic region of the embryonic brain. 1984-03-23 2023-08-12 mouse
D C German, D S Schlusselberg, D J Woodwar. Three-dimensional computer reconstruction of midbrain dopaminergic neuronal populations: from mouse to man. Journal of neural transmission. vol 57. issue 4. 1984-02-24. PMID:6140298. three-dimensional computer reconstruction of midbrain dopaminergic neuronal populations: from mouse to man. 1984-02-24 2023-08-12 mouse
P Bédard, R Boucher, T Di Paolo, F Labri. Biphasic effect of estradiol and domperidone on lingual dyskinesia in monkeys. Experimental neurology. vol 82. issue 1. 1983-12-17. PMID:6628606. in the present study, we tested the effect of a large dose of estradiol (0.5 mg s.c.) administered either acutely or during several days in four female ovariectomized monkeys, displaying a persistent buccolingual dyskinesia due primarily to a midbrain lesion, but which is markedly enhanced by dopaminergic agonists. 1983-12-17 2023-08-12 monkey
C B Jaeger, T H Joh, D J Rei. The effect of forebrain lesions in the neonatal rat: survival of midbrain dopaminergic neurons and the crossed nigrostriatal projection. The Journal of comparative neurology. vol 218. issue 1. 1983-10-28. PMID:6886067. the effect of forebrain lesions in the neonatal rat: survival of midbrain dopaminergic neurons and the crossed nigrostriatal projection. 1983-10-28 2023-08-12 rat
C B Jaeger, T H Joh, D J Rei. The effect of forebrain lesions in the neonatal rat: survival of midbrain dopaminergic neurons and the crossed nigrostriatal projection. The Journal of comparative neurology. vol 218. issue 1. 1983-10-28. PMID:6886067. small lesions in the caudate-putamen had no appreciable effect on the survival of tyrosine hydroxylase-containing neurons in the mesencephalon, but the density of dopaminergic terminals adjacent to the lesion increased in the remaining caudate-putamen. 1983-10-28 2023-08-12 rat
L A Chiodo, B S Bunne. Typical and atypical neuroleptics: differential effects of chronic administration on the activity of A9 and A10 midbrain dopaminergic neurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 3. issue 8. 1983-09-20. PMID:6135762. typical and atypical neuroleptics: differential effects of chronic administration on the activity of a9 and a10 midbrain dopaminergic neurons. 1983-09-20 2023-08-12 rat
H Fukuyama, I Akiguchi, M Kameyama, H Kimura, T Maed. [Anatomical study on the nucleus accumbens. With the special reference to dopaminergic projection from the midbrain]. Rinsho shinkeigaku = Clinical neurology. vol 23. issue 2. 1983-08-17. PMID:6861418. with the special reference to dopaminergic projection from the midbrain]. 1983-08-17 2023-08-12 Not clear
A N Talalaenko, I K Boreĭsh. [Correlation of dopamin- and GABA-ergic mechanisms in the depressive effect of neuroleptics on pedal self-stimulation of the ventral tegmentum of the mesencephalon]. Farmakologiia i toksikologiia. vol 46. issue 2. 1983-07-15. PMID:6133777. the gaba-ergic rather than dopaminergic mechanisms of the positive reinforcement systems realize the fluphenazine-induced reduction of self-stimulation of the midbrain ventral tegmentum. 1983-07-15 2023-08-12 rat
M E Trulson, T Crisp, V M Trulso. Dopamine-containing substantia nigra units are unresponsive to changes in plasma glucose levels induced by dietary factors, glucose infusions or insulin administration in freely moving cats. Life sciences. vol 32. issue 22. 1983-07-15. PMID:6343744. intravenous infusion of glucose in freely moving cats, which elevated plasma glucose levels from 82 to 719 mg/100 ml and midbrain glucose from 4.3 to 12.2 mumoles/g, was also without effect on the activity of dopaminergic neurons. 1983-07-15 2023-08-12 cat