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Journal of Neurochemistry|January 1, 1997
Inhibitors of histamine methylation in brain promote formation of imidazoleacetic acid, which interacts with GABA receptorsG D Prell, A M Morrishow, E Duoyon, et al.Journal of Pharmacological Methods|March 1, 1981
An improved GCMS method to measure tele-methylhistamineL B Hough, J K Khandelwal, A M Morrishow, et al.Journal of Neurochemistry|May 1, 1996
Disposition of histamine, its metabolites, and pros-methylimidazoleacetic acid in brain regions of rats chronically infused with alpha-fluoromethylhistidineG D Prell, E Douyon, W F Sawyer, et al.Agents and Actions|December 1, 1982
Measurement of tele-methylhistamine and histamine in human cerebrospinal fluid, urine, and plasmaJ K Khandelwal, L B Hough, A M Morrishow, et al.American Journal of Physiology. Renal Physiology|February 22, 2001
Glucose scavenging of nitric oxideS V Brodsky, A M Morrishow, N Dharia, et al.Journal of Neurochemistry|April 1, 1989
Presence and measurement of imidazoleacetic acid, a gamma-aminobutyric acid agonist, in rat brain and human cerebrospinal fluidJ K Khandelwal, G D Prell, A M Morrishow, et al.The Journal of Biological Chemistry|November 10, 1982
Presence and measurement of methylimidazoleacetic acids in brain and body fluidsJ K Khandelwal, L B Hough, B Pazhenchevsky, et al.Journal of Neural Transmission. Parkinson'S Disease and Dementia Section|January 1, 1991
Levels of pros-methylimidazoleacetic acid: correlation with severity of Parkinson's disease in CSF of patients and with the depletion of striatal dopamine and its metabolites in MPTP-treated miceG D Prell, J K Khandelwal, R S Burns, et al.Schizophrenia Research|January 1, 1995
Histamine metabolites in cerebrospinal fluid of patients with chronic schizophrenia: their relationships to levels of other aminergic transmitters and ratings of symptomsG D Prell, J P Green, C A Kaufmann, et al.Pageof 1