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This book reviews the relationship between cytokines, glia, and neurons in the pathophysiology of neuropsychiatric disorders and examines the mechanisms of action of the drugs used for the treatment of these disorders. Increasing evidence has suggested that glia perform important roles in various brain functions, but much remains to be learned about these crucial cells and their interplay with neurons. In addition, a better understanding of the interaction between inflammatory mediators, such as cytokines, and the activated immune response will be of critical importance for the development of new therapeutic strategies. These key areas are the focus of this book, which documents the latest research findings in the field. Evidence is provided for the role of inflammation-induced toxic metabolites from the tryptophan pathway in a wide range of neuropsychiatric disorders, including depression, schizophrenia, and Alzheimer's disease. In presenting state of the art knowledge on the interactions between cytokines, glia, and neurons, the book will help to pave the way for the development of novel targets for the prevention and treatment of neuropsychiatric disorders.
Background on Semimagnetic Semiconductors.- Thermodynamics and Crystal Growth of Diluted Magnetic Semiconductors.- Band Structure and Theory of Magnetic Interactions in Diluted Magnetic Semiconductors.- Transport phenomena in Semimagnetic Semiconductors.- Experimental Studies of the d-d Exchange Interactions in Diluted Magnetic Semiconductors.- Bound Magnetic Polarons in Diluted Magnetic Semiconductors.- Magnetooptic Properties of Wide Gap II1?xMnxVI Semimagnetic Semiconductors.- II-Fe-VI Semimagnetic Semiconductors.- Semimagnetic IV-VI Compound Semiconductors.- Semimagnetic Semiconductor Superlattices.- Magnetism of Fe-Based Diluted Magnetic Semiconductors.
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