All Relations between serotonergic and mesencephalon

Publication Sentence Publish Date Extraction Date Species
S Araneda, P Bobillier, M Buda, J F Pujo. Retrograde axonal transport following injection of [3H]serotonin in the olfactory bulb. I. Biochemical study. Brain research. vol 196. issue 2. 1980-10-24. PMID:6156739. a retrograde axonal transport from the serotonergic nerve terminals in the olfactory bulb (ob) to their parent cell bodies in the midbrain raphe nuclei has been demonstrated after stereotaxic injection of [2h]5-ht into the ob of rats pretreated with a monoamine oxidase (mao) inhibitor: at various time intervals thereafter (4-92 h) there was a preferential accumulation of radioactivity mainly in the raphe dorsalis nucleus (rdn). 1980-10-24 2023-08-12 rat
S Araneda, H Gamrani, C Font, A Calas, J F Pujol, P Bobillie. Retrograde axonal transport following injection of [3H]-serotonin into the olfactory bulb. II. Radioautographic study. Brain research. vol 196. issue 2. 1980-10-24. PMID:6156740. radioautography was used to study the intraneuronal distribution of [3h]-serotonin (5-ht) and/or its derivatives selectively taken up by the olfactory bulb (ob) serotonergic terminals and subsequently transported to their parent cell bodies in the midbrain raphe nuclei. 1980-10-24 2023-08-12 rat
J D Dunn, D C Johnson, A J Castro, R Swenso. Twenty-four hour pattern of prolactin levels in female rats subjected to transection of the mesencephalic raphe or ablation of the suprachiasmatic nuclei. Neuroendocrinology. vol 31. issue 2. 1980-09-28. PMID:7190230. the ascending serotonergic system was transected at the level of the rostral mesencephalon using a 1.5 mm wide knife and the scn was ablated with a modified halász-pupp knife. 1980-09-28 2023-08-12 rat
D C Meye. Hypothalamic and raphe serotonergic systems in ovulation control. Endocrinology. vol 103. issue 4. 1979-05-26. PMID:744131. the role of hypothalamic and midbrain serotonergic systems in the control of ovulation in the rat has been investigated using 5,7-dihydroxytryptamine (5,7-dht) lesioning in conjunction with desmethylimipramine pretreatment. 1979-05-26 2023-08-11 rat
L D van de Kar, S A Loren. Differential serotonergic innervation of individual hypothalamic nuclei and other forebrain regions by the dorsal and median midbrain raphe nuclei. Brain research. vol 162. issue 1. 1979-04-28. PMID:761086. differential serotonergic innervation of individual hypothalamic nuclei and other forebrain regions by the dorsal and median midbrain raphe nuclei. 1979-04-28 2023-08-11 Not clear
H J Haigle. Morphine: effects on serotonergic neurons and neurons in areas with a serotonergic input. European journal of pharmacology. vol 51. issue 4. 1979-01-26. PMID:710510. the hypothesis that morphine acts on the serotonergic system to produce analgesia is based on the previous observations that (1) lesions and stimulation of midbrain raphe nuclei after the threshold to nociceptive stimuli; (2) morphine alters the turnover of serotonin (5-hydroxytryptamine; 5-ht). 1979-01-26 2023-08-11 Not clear
H J Haigle. Morphine: effects on serotonergic neurons and neurons in areas with a serotonergic input. European journal of pharmacology. vol 51. issue 4. 1979-01-26. PMID:710510. microiontophoretic experiments were carried out to determine if morphine affected the firing rate of cells in five areas of the serotonergic system consisting of 5-ht containing neurons in the midbrain raphe nuclei (dorsal raphe and median raphe) or neurons in three areas (amygdala, optic tectum and subiculum) which are thought to receive a 5-ht input from the raphe nuclei. 1979-01-26 2023-08-11 Not clear
H J Haigle. Morphine: effects on serotonergic neurons and neurons in areas with a serotonergic input. European journal of pharmacology. vol 51. issue 4. 1979-01-26. PMID:710510. it is concluded that (1) the analgesic effect of morphine is not related to an effect on neurons in the midbrain raphe nuclei and three areas which receive an identified 5-ht input; and (2) the effect of morphine on neurons in these five areas of the serotonergic system is not a specific narcotic effect. 1979-01-26 2023-08-11 Not clear
L C Schenberg, F G Graef. Role of the periaqueductal gray substance in the antianxiety action of benzodiazepines. Pharmacology, biochemistry, and behavior. vol 9. issue 3. 1979-01-15. PMID:568804. in order to study the interactions between serotonergic mechanism and electrical stimulation of the mesencephalic central gray substance, rats were trained to lever-press for terminating aversive electric stimuli applied at the periaqueductal gray and adjoining tectum of the mesencephalon. 1979-01-15 2023-08-11 rat
R Y Wang, G K Aghajania. Antidromically identified serotonergic neurons in the rat midbrain raphe: evidence for collateral inhibition. Brain research. vol 132. issue 1. 1977-10-14. PMID:890477. antidromically identified serotonergic neurons in the rat midbrain raphe: evidence for collateral inhibition. 1977-10-14 2023-08-11 rat
R Y Wang, G K Aghajania. Physiological evidence for habenula as major link between forebrain and midbrain raphe. Science (New York, N.Y.). vol 197. issue 4298. 1977-07-23. PMID:194312. electrical stimulation of the habenula markedly suppressed serotonergic neurons in the midbrain raphe. 1977-07-23 2023-08-11 Not clear
S S Mosko, B L Jacob. Electrophysiological evidence against negative neuronal feedback from the forebrain controlling midbrain raphe unit activity. Brain research. vol 119. issue 2. 1977-02-26. PMID:264274. an action at serotonergic synapses intrinsic to the midbrain raphe is suggested as an explanation for the persistence of drug effects in transected animals. 1977-02-26 2023-08-11 human
R D Broadwell, D M Jacobowit. Olfactory relationships of the telencephalon and diencephalon in the rabbit. III. The ipsilateral centrifugal fibers to the olfactory bulbar and retrobulbar formations. The Journal of comparative neurology. vol 170. issue 3. 1977-01-25. PMID:62770. peroxidase-labeled cell bodies in the locus coeruleus and midbrain raphe are indicative of noradrenergic and serotonergic innervations respectively of the olfactory bulb. 1977-01-25 2023-08-11 rat
J R Couc. Further evidence for a possible excitatory serotonergic synapse on raphe neurons of pons and lower midbrain. Life sciences. vol 19. issue 5. 1976-10-20. PMID:957906. further evidence for a possible excitatory serotonergic synapse on raphe neurons of pons and lower midbrain. 1976-10-20 2023-08-11 Not clear
J S Kizer, M Palkovits, I J Kopin, J M Saavedra, M J Brownstei. Lack of effect of various endocrine manipulations on tryptophan hydroxylase activity of individual nuclei of the hypothalamus, limbic system, and midbrain of the rat. Endocrinology. vol 98. issue 3. 1976-07-06. PMID:1261494. the tryptophan hydroxylase activity of individual nuclei of the limbic system, hypothalamus, and midbrain was determined after various endocrine manipulations in an attempt to identify specific endocrine-responsive serotonergic structures in the rat brain. 1976-07-06 2023-08-11 rat
T H Joh, T Shikimi, V M Pickel, D J Rei. Brain tryptophan hydroxylase: purification of, production of antibodies to, and cellular and ultrastructural localization in serotonergic neurons of rat midbrain. Proceedings of the National Academy of Sciences of the United States of America. vol 72. issue 9. 1976-02-02. PMID:1059145. brain tryptophan hydroxylase: purification of, production of antibodies to, and cellular and ultrastructural localization in serotonergic neurons of rat midbrain. 1976-02-02 2023-08-11 rat
G K Aghajanian, D W Gallage. Raphe origin of serotonergic nerves terminating in the cerebral ventricles. Brain research. vol 88. issue 2. 1975-11-07. PMID:167906. the dorsal and median raphe nuclei of the midbrain are known to contain the perikarya of origin of the major serotonergic (indoleamine) neurons projecting to the parenchyma of the forebrain. 1975-11-07 2023-08-11 rat
H J Sekerke, H E Smith, J A Bushing, E Sanders-Bus. Correlation between brain levels and biochemical effects of the optical isomers of p-chloroamphetamine. The Journal of pharmacology and experimental therapeutics. vol 193. issue 3. 1975-11-01. PMID:1151732. however, in the midbrain, an area containing the cell bodies of serotonergic neurons, only a slight initial decrease in tryptophan hydroxylase activity occurred. 1975-11-01 2023-08-11 Not clear