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Cellular and Molecular Biology (Noisy-Le-Grand, France)|June 29, 2000
Measurement of loosely-bound iron in brain regions using redox cycling and salicylateS R Nelson, T L Pazdernik, F E samsonJournal of Neuroscience Methods|October 1, 1996
Nitric oxide detection with intracerebral microdialysis: important considerations in the application of the hemoglobin-trapping techniqueY Zhang, F E Samson, S R Nelson, et al.Neurochemical Research|January 1, 1992
The osmotic/calcium stress theory of brain damage: are free radicals involved?T L Pazdernik, M Layton, S R Nelson, et al.Brain Research|April 27, 1999
Hypoxia preconditioning attenuates brain edema associated with kainic acid-induced status epilepticus in ratsM R Emerson, S R Nelson, F E Samson, et al.Brain Research. Brain Research Protocols|December 11, 1999
A global hypoxia preconditioning model: neuroprotection against seizure-induced specific gravity changes (edema) and brain damage in ratsM R Emerson, S R Nelson, F E Samson, et al.Toxicology and Applied Pharmacology|November 1, 1988
Soman-induced convulsions affect the inositol lipid signaling system: potentiation by lithium; attenuation by atropine and diazepamK M Savolainen, S R Nelson, F E Samson, et al.Journal of Neurochemistry|August 1, 1987
Changes in extracellular amino acids during soman- and kainic acid-induced seizuresJ V Wade, F E Samson, S R Nelson, et al.Pharmacology & Toxicology|May 1, 1991
Lithium modifies convulsions and brain phosphoinositide turnover induced by organophosphatesK M Savolainen, O Muona, S R Nelson, et al.Neurotoxicology|January 1, 1990
Soman- or kainic acid-induced convulsions decrease muscarinic receptors but not benzodiazepine receptorsL Churchill, T L Pazdernik, R S Cross, et al.Journal of Applied Toxicology : JAT|March 29, 2002
Soman-induced seizures: limbic activity, oxidative stress and neuroprotective proteinsT L Pazdernik, M R Emerson, R Cross, et al.Pageof 10