Loss of zinc staining from hippocampal mossy fibers during kainic acid induced seizures: a histofluorescence study
Author:
Publisher
Elsevier BV
Subject
Developmental Biology,Clinical Neurology,Molecular Biology,General Neuroscience
Reference28 articles.
1. Release of endogenous Zn++ from brain tissue during activity;Assaf;Nature (Lond.),1984
2. Limbic seizure and brain damage produced by kainic acid: mechanisms and relevance to human temporal lobe epilepsy;Ben-Ari;Neuroscience,1985
3. Electrographic, clinical and pathological alterations following systemic administration of kainic acid, bicuculline of pentetrazole: metabolic mapping using the deoxyglucose method with special reference to the pathology of epilepsy;Ben-Ari;Neuroscience,1981
4. Spontaneous and evoked release of endogenous Zn2+ in the hippocampal mossy fiber zone of the rat in situ;Charton;Exp. Brain Res.,1985
5. Exogenous selenium in the brain. A histochemical technique for light and electron microscopical localization of catalytic selenium bonds;Danscher;Histochemistry,1982
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