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Norton H Neff
Norton H Neff
Professor, Emeritus, The Ohio State University College of Medicine Department of Pharmacology
Verified email at osu.edu
Title
Cited by
Cited by
Year
Application of steady state kinetics to the estimation of synthesis rate and turnover time of tissue catecholamines
BB Brodie, E Costa, A Dlabac, NH Neff, HH Smookler
Journal of Pharmacology and Experimental Therapeutics 154 (3), 493-498, 1966
9091966
Acetylcholine and choline in neuronal tissue measured by HPLC with electrochemical detection
PE Potter, JL Meek, NH Neff
Journal of neurochemistry 41 (1), 188-194, 1983
4881983
β-Phenylethylamine: a specific substrate for type B monoamine oxidase of brain
HYT Yang, NH Neff
Journal of Pharmacology and Experimental Therapeutics 187 (2), 365-371, 1973
4871973
Light stimulates tyrosine hydroxylase activity and dopamine synthesis in retinal amacrine neurons
PM Iuvone, CL Galli, CK Garrison-Gund, NH Neff
Science 202 (4370), 901-902, 1978
4441978
Another look at the monoamine oxidases and the monoamine oxidase inhibitor drugs
NH Neff, HYT Yang
Life sciences 14 (11), 2061-2074, 1974
4131974
Application of steady state kinetics to the synthesis rate and turnover time of serotonin in the brain of normal and reserpine-treated rats
TN Tozer, NH Neff, BB Brodie
Journal of Pharmacology and Experimental Therapeutics 153 (2), 177-182, 1966
4071966
Application of steady-state kinetics to studies of the transfer of 5-hydroxyindoleacetic acid from brain to plasma
NH Neff, TN Tozer, BB Brodie
Journal of Pharmacology and experimental Therapeutics 158 (2), 214-218, 1967
3901967
Distribution and properties of angiotensin converting enzyme of rat brain
HYT Yang, NH Neff
Journal of Neurochemistry 19 (10), 2443-2450, 1972
3891972
The monoamine oxidases of brain: selective inhibition with drugs and the consequences for the metabolism of the biogenic amines
HYT Yang, NH Neff
Journal of Pharmacology and Experimental therapeutics 189 (3), 733-740, 1974
3851974
gamma-aminobutyric acid B receptors are negatively coupled to adenylate cyclase in brain, and in the cerebellum these receptors may be associated with granule cells.
WJ Wojcik, NH Neff
Molecular pharmacology 25 (1), 24-28, 1984
2501984
A simple procedure for calculating the synthesis rate of norepinephrine, dopamine and serotonin in rat brain
NH Neff, PF Spano, A Groppetti, CT Wang, E Costa
Journal of Pharmacology and Experimental Therapeutics 176 (3), 701-710, 1971
2401971
In vivo measurement of brain serotonin turnover
NH Neff, TN Tozer
Advances in Pharmacology 6, 97-109, 1968
2031968
Selective depletion of caudate nucleus dopamine and serotonin during chronic manganese dioxide administration to squirrel monkeys
NH Neff, RE Barrett, E Costa
Experientia 25 (11), 1140-1141, 1969
1991969
Fluorometric estimation of 4-hydroxy-3-methoxyphenylethyleneglycol sulphate in brain
JL Meek, NH Neff
British Journal of Pharmacology 45 (3), 435, 1972
1901972
Adenylate cyclase activity of synaptic membranes from rat striatum. Inhibition by muscarinic receptor agonists.
MC Olianas, P Onali, NH Neff, E Costa
Molecular Pharmacology 23 (2), 393-398, 1983
1831983
A new projection from locus coeruleus to the spinal ventral columns: histochemical and biochemical evidence
JW Commissiong, SO Hellström, NH Neff
Brain Research 148 (1), 207-213, 1978
1831978
The influence of monoamine oxidase inhibition on catecholamine synthesis
NH Neff, E Costa
Life Sciences 5 (10), 951-959, 1966
1801966
Evidence for a specific monoamine oxidase associated with sympathetic nerves
C Goridis, NH Neff
Neuropharmacology 10 (5), 557-564, 1971
1791971
Monoamine oxidase in sympathetic nerves: a transmitter specific enzyme type
C Goridis, NH Neff
British Journal of Pharmacology 43 (4), 814-818, 1971
1751971
1-Methyl-4-phenyl-1, 2, 3, 6-tetrahydropyridine (MPTP) and free radicals in vitro
ZL Rossetti, A Sotgiu, DE Sharp, M Hadjiconstantinou, NH Neff
Biochemical pharmacology 37 (23), 4573-4574, 1988
1671988
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