Autoradiographic mapping of cerebral blood flow responses to cholinergic stimulation of the rat substantia innominata: modulatory effect of galanin

scientific article published in April 1998

Autoradiographic mapping of cerebral blood flow responses to cholinergic stimulation of the rat substantia innominata: modulatory effect of galanin is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/S0006-8993(98)00022-5
P698PubMed publication ID9602077

P50authorEric T MacKenzieQ46613104
Alexandra BarbelivienQ46889246
P2093author name stringDauphin F
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Autoradiographic evidence for flow-metabolism uncoupling during stimulation of the nucleus basalis of Meynert in the conscious rat.Q36872855
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Galanin hyperinnervates surviving neurons of the human basal nucleus of Meynert in dementias of Alzheimer's and Parkinson's disease: a hypothesis for the role of galanin in accentuating cholinergic dysfunction in dementia.Q41255070
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Cholinergic nucleus basalis neurons may influence the cortex via the thalamusQ42487834
Cholinergic and non-cholinergic neurons of cat basal forebrain project to reticular and mediodorsal thalamic nucleiQ42488004
NGF induction of NGF receptor gene expression and cholinergic neuronal hypertrophy within the basal forebrain of the adult rat.Q42494413
Stimulation of the nucleus basalis of Meynert increases cerebral cortical blood flow in ratsQ42494671
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Distinct choline acetyltransferase (ChAT) and vasoactive intestinal polypeptide (VIP) bipolar neurons project to local blood vessels in the rat cerebral cortexQ42496723
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Neuropeptide modulation of muscarinic receptors and function in cerebral cortex of young and senescent ratsQ48526224
Hypercapnia and stimulation of the substantia innominata increase rat frontal cortical blood flow by different cholinergic mechanismsQ48690838
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Galanin Reduces Carbachol Stimulation of Phosphoinositide Turnover in Rat Ventral Hippocampus by Lowering Ca2+Influx Through Voltage-Sensitive Ca2+ChannelsQ48789103
Responses of regional cerebral blood flow following focal electrical stimulation of the nucleus basalis of Meynert and the medial septum using the [14C]iodoantipyrine method in ratsQ48973475
Stimulation of the nucleus basalis of Meynert and substantia innominata produces widespread increases in cerebral blood flow in the frontal, parietal and occipital cortices.Q49018403
Origins and Pathways of Cerebrovascular Vasoactive Intestinal Polypeptide-Positive Nerves in RatQ50893927
Galanin inhibits the vasodilatatory basalocortical cholinergic system in the anaesthetized rat.Q51592108
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Effects of Substance P on the Binding of Agonists to the Nicotinic Acetylcholine Receptor of Torpedo ElectroplaqueQ52395906
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The ThalamusQ56113095
Effect of stimulation of the sphenopalatine ganglion on cortical blood flow in the ratQ67970923
Cortical blood flow increases induced by stimulation of the substantia innominata in the unanesthetized ratQ69693561
Acetylcholine and vasoactive intestinal peptide in cerebral blood vessels: effect of extirpation of the sphenopalatine ganglionQ69954970
A prospective study of estrogen replacement therapy and the risk of developing Alzheimer's disease: the Baltimore Longitudinal Study of AgingQ73434963
P433issue1
P407language of work or nameEnglishQ1860
P921main subjectcerebral blood flowQ5064096
P304page(s)92-100
P577publication date1998-04-01
P1433published inBrain ResearchQ4955782
P1476titleAutoradiographic mapping of cerebral blood flow responses to cholinergic stimulation of the rat substantia innominata: modulatory effect of galanin
P478volume789

Reverse relations

cites work (P2860)
Q34077399A unifying hypothesis of Alzheimer's disease. IV. Causation and sequence of events
Q48162234Cerebrovascular evidence for a GABAergic modulation of the cholinergic vasodilatatory basalocortical system in the rat.
Q45152015Degeneration of the basalocortical pathway from the cortex induces a functional increase in galaninergic markers in the nucleus basalis magnocellularis of the rat.
Q28145418Galanin receptor subtypes
Q42478601Neurochemical stimulation of the rat substantia innominata increases cerebral blood flow (but not glucose use) through the parallel activation of cholinergic and non-cholinergic pathways
Q34991028The cerebral glucose-fatty acid cycle: evolutionary roots, regulation, and (patho)physiological importance
Q30632825The use of cerebral blood flow as an index of neuronal activity in functional neuroimaging: experimental and pathophysiological considerations

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