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Expert researchers critically review and evaluate the most common and important neurotoxins used today in neuroscience research. Each informative chapter thoroughly describes the significant mechanisms of action of a neurotoxin, as well as fully discussing the limits on their use and their clinical applicability. Several clinically oriented chapters are significant for neurologists treating Parkinsonism, for psychiatrists treating drug abuse and neurodegenerative disorders, and for primary care physicians treating patients with appetite suppressants. Highly Selective Neurotoxins provides all the basic knowledge needed to obtain a predictable experimental outcome with these neurotoxins.
Expert researchers critically review and evaluate the most common and important neurotoxins used today in neuroscience research. Each informative chapter thoroughly describes the significant mechanisms of action of a neurotoxin, as well as fully discussing the limits on their use and their clinical applicability. Several clinically oriented chapters are significant for neurologists treating Parkinsonism, for psychiatrists treating drug abuse and neurodegenerative disorders, and for primary care physicians treating patients with appetite suppressants. Highly Selective Neurotoxins provides all the basic knowledge needed to obtain a predictable experimental outcome with these neurotoxins.
6-Hydroxydopamine and Related Catecholaminergic Neurotoxins: Molecular Mechanisms, C. L. Blank, R. J. Lewis, and R. E. Lehr. The Use of Neurotoxins to Lesion Catecholamine-Containing Neurons to Model Clinical Disorders: Approach for Defining Adaptive Neural Mechanisms and Role of Neurotrophic Factors in Brain, C. R. Breese and G. R. Breese. 6-Hydroxydopamine as a Tool for Studying Catecholamines in Adult Animals: Lessons from the Neostriatum, M. J. Zigmond and K. A. Keefe. 6-Hydroxydopa, a Catecholamine Neurotoxin and Endogenous Excitotoxin at Non-NMDA ReceptorslSk
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