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Journal of Neuroimmunology|April 3, 2001
Complement regulatory proteins and selective vulnerability of neurons to lysis on exposure to acetylcholinesterase antibodyH Tang, S BrimijoinBrain Research|February 6, 1976
Rapid retrograde transport of dopamine-beta-hydroxylase as examined by the stop-flow techniqueS Brimijoin, L HellandBrain Research|December 14, 1981
Axonal transport of enzymes and labeled proteins in experimental axonopathy induced by p-bromophenylacetylureaJ Jakobsen, S BrimijoinBiochimica Et Biophysica Acta|November 29, 1985
Immunochemical differences among molecular forms of acetylcholinesterase in brain and bloodZ Rakonczay, S BrimijoinEnvironmental Health Perspectives|May 7, 1999
Cholinesterases in neural development: new findings and toxicologic implicationsS Brimijoin, C KoenigsbergerCellular and Molecular Neurobiology|March 1, 1988
Monoclonal antibodies to human brain acetylcholinesterase: properties and applicationsZ Rakonczay, S BrimijoinJournal of Neurochemistry|October 1, 1988
Butyrylcholinesterase in human brain and acetylcholinesterase in human plasma: trace enzymes measured by two-site immunoassayS Brimijoin, P HammondBrain Research|October 15, 1986
Neurotoxicity of halogenated phenylacetylureas is linked to abnormal onset of rapid axonal transportH Nagata, S BrimijoinJournal of Neurochemistry|February 1, 1982
Turnover of the molecular forms of acetylcholinesterase in the rat diaphragmS Brimijoin, J CarterNeurochemical Research|June 1, 1993
Altered spectrum of retrogradely transported axonal proteins in p-bromophenylacetylurea neuropathyN Oka, S BrimijoinPageof 11