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Proceedings of the Fourth International Altschul Symposium held at Saskatoon, Saskatchewan, Canada, June 27-29, 1996
The last decades have witnessed a radical change in our views on central nervous system damage and repair. This change is not only due to the emergence of new powerful tools for the analysis of the brain and its reactions to insults, but it also reflects a conceptual change in the way we approach these problems. As an illustration to this development, it is instructive to go back to the proceedings of a meeting at the NIH in 1955 edited by William F. Windle, which summarizes the disillusioned and pessimistic view on CNS regeneration prevailing at the time. While this generation of researchers were well aware of the issues at stake, they felt they had reached the end of the road; the approaches they had pursued had got stuck and the tools available could not take them any further. I can very well imagine that the participants, most of them leaders in the field, left that conference feeling they had heard their field being sentenced to death.
Numerous improvements in our understanding of the mechanisms that underlie neuropathic pain states have come from the development of animal models, most of which involve partial peripheral nerve injury. The animal models have shown that nerve injury initiates a cascade of events resulting in altered neurochemistry and molecular biology of the peripheral neurons, the dorsal root ganglion cell, and changes in neurotransmitter and receptor expression in the dorsal horn of the spinal cord. Moreover, nerve injury produces anatomical changes with functional consequences. This volume summarises the current understanding of the pathophysiological processes in the peripheral and central nervous system that contribute to the neuropathic pain. It provides a timely review of neuropathic pain mechanisms, written by experts in the field.
This is a unique compilation, by experts worldwide, addressing how diabetes impacts the nervous system. For example, diabetic polyneuropathy, a disorder more common than MS, Parkinson's disease, and ALS combined, is a major source of disability to diabetic persons worldwide. This book addresses diabetic polyneuropathy and how diabetes alters other parts of the nervous system. - Offers a unique emphasis on the neurological manifestations of diabetes - Provides thorough coverage of the clinical, experimental, mechanistic, therapeutic, peripheral, and central aspects of diabetic neuropathy - Edited work with chapters authored by leaders in the field around the globe – the broadest, most expert coverage available
No. 2, pt. 2 of November issue each year from v. 19 (1963)-47 (1970) and v. 55 (1972)- contain the Abstracts of papers presented at the Annual Meeting of the American Society for Cell Biology, 3d (1963)-10th (1970) and 12th (1972)-
This volume summarizes research and treatment on focal neuropathies to update clinicians on nerve biology and new diagnostic techniques to guide investigation and treatment of mononeuropathies. The book explores research broadly applicable to all types of mononeuropathies as well as individual mononeuropathy syndromes. Chapters on individual mononeuropathies include anatomy, causes, controversial diagnoses, and current or potential future treatments. - Summarizes new research on treatment for focal neuropathies - Differentiates and advises on controversial diagnoses - Includes neuropathies by location as well as syndrome or type of neuropathy - Covers biology, diagnosis, imaging, etiology, and treatment
This is a unique compilation, by experts worldwide, addressing how diabetes impacts the nervous system. For example, diabetic polyneuropathy, a disorder more common than MS, Parkinson's disease, and ALS combined, is a major source of disability to diabetic persons worldwide. This book addresses diabetic polyneuropathy and how diabetes alters other parts of the nervous system.
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The Proceedings of the National Academy of Sciences (PNAS) publishes research reports, commentaries, reviews, colloquium papers, and actions of the Academy. PNAS is a multidisciplinary journal that covers the biological, physical, and social sciences.