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Myelin: Biology and Chemistry provides in-depth reviews and discussions regarding recent findings in the biology and chemistry of myelin. Topics are interdisciplinary and carry readers from the cellular level to that of the gene. Research in demyelinating diseases (naturally occurring and experimentally produced) is described and emphasizes autoimmune and virally induced mechanisms. Advances in molecular biology, such as those that provide details of the structures of the major myelin proteins, demonstrate the control of their synthesis, and explore the mutations within their genes that disrupt the process of myelination, are discussed in depth. Myelin: Biology and Chemistry will be an important addition to the libraries of molecular biologists, biochemists, cell biologists, physical chemists, immunologists, virologists, and pathologists involved in the study of myelin.
Each issue lists papers published during the preceding year.
Each issue lists papers published during the preceding year.
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In June 1987, neurobiologists, immunologists, molecular biologists, virologists and neurologists from several countries met in Vancouver to discuss recent advances of relevance to multiple sclerosis. The symposium was a part of the 22nd Canadian Congress of Neurological Sciences meeting and was sponsored by funds from the Multiple Sclerosis Society of Canada and the Medical Research Council of Canada. The presentations covered five major topics: basic neurobiology, molecular biology, the role of viruses in demyelination, immune function and dysfunction in multiple sclerosis, and clinical magnetic resonance imaging studies. It was heartening to note that scientists from several different disc...
Isozymes, IV: Genetics and Evolution contains manuscripts presented at the Third International Conference on isozymes convened in April 1974 at Yale University. Separating 58 manuscripts into chapters, this book begins by elucidating the usefulness of isozymes as effective markers in studies of various aspects of genetics and evolution. Specific discussions are given to isozymes in evolutionary systematics and isozyme polymorphism maintenance mechanisms viewed from the standpoint of population genetics. This book explains multiple allelism and isozyme diversity in human populations. It also addresses the usefulness of isozyme variants as markers of population movement in man and plant population genetics.
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