Microglia In The Regenerating And Degenerating Central Nervous System
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Author | : Wolfgang J. Streit |
Publisher | : Springer Science & Business Media |
Total Pages | : 326 |
Release | : 2013-03-14 |
Genre | : Science |
ISBN | : 1475741391 |
The study of microglial cells has recently gained importance for those researching degeneration and regeneration. Microglia in the regenerating and degenerating CNS supports the assertion that understanding microglial biology could perhaps be pivotal for unraveling the pathogenetic mechanisms that underlie Alzheimer's disease, In addition, microglia are also critical for understanding the sequelae of traumatic brain and spinal cord injury, and for the important post-traumatic repair processes. This book gives an up to date account of the role of microglia in degeneration and regeneration of the nervous system and reviews their cell function and physiology.
Author | : Santiago Ramón y Cajal |
Publisher | : History of Neuroscience |
Total Pages | : 977 |
Release | : 1991 |
Genre | : Nervous system |
ISBN | : 0195065166 |
This book is a reprint of an English translation of Cajal's original work, with abundant notes and commentaries by the editor. This text describes Cajal's fundamental contributions to neuroscience, which continue to be important today. It accurately details Cajal's ideas and data, and providesreaders with the opportunity to learn what Cajal thought about his research career and the significance of his observations. Excerpts from Tello's memorial lectures also provide a contemporary view of Cajal's work.
Author | : William M. Reichert |
Publisher | : CRC Press |
Total Pages | : 300 |
Release | : 2007-12-17 |
Genre | : Medical |
ISBN | : 1420009303 |
Despite enormous advances made in the development of external effector prosthetics over the last quarter century, significant questions remain, especially those concerning signal degradation that occurs with chronically implanted neuroelectrodes. Offering contributions from pioneering researchers in neuroprosthetics and tissue repair, Indwel
Author | : Amanda Sierra |
Publisher | : Frontiers E-books |
Total Pages | : 173 |
Release | : 2015-02-11 |
Genre | : Microglia |
ISBN | : 2889193691 |
Microglia are largely known as the major orchestrators of the brain inflammatory response. As such, they have been traditionally studied in various contexts of disease, where their activation has been assumed to induce a wide range of detrimental effects. In the last few years, a series of discoveries have challenged the current view of microglia, showing their active and positive contribution to normal brain function. This Research Topic reviewed the novel physiological roles of microglia in the developing, mature and aging brain, under non-pathological conditions. In particular, this Research Topic discussed the cellular and molecular mechanisms by which microglia contribute to the formation, pruning and plasticity of synapses; the regulation of adult neurogenesis as well as hippocampal learning and memory; among other important roles. Because these novel findings defy our understanding of microglial function in health as much as in disease, this Research Topic also summarized the current view of microglial nomenclature, phenotypes, origin and differentiation, and contribution to various brain pathologies. Additionally, novel imaging approaches and molecular tools to study microglia in their non-activated state have been discussed. In conclusion, this Research Topic seeked to emphasize how the current research in neuroscience is challenged by never-resting microglia.
Author | : Anna Strunecká |
Publisher | : Bentham Science Publishers |
Total Pages | : 232 |
Release | : 2010-12-24 |
Genre | : Science |
ISBN | : 160805196X |
"Over the past several decades the incidence of autism spectrum disorders (ASD) has increased dramatically. The etiology of ASD remains an unsolved puzzle to scientists, physicians, pediatricians, psychiatrists, and pharmacologists. Our E-book will address"
Author | : Michael Aschner |
Publisher | : CRC Press |
Total Pages | : 477 |
Release | : 2004-12-28 |
Genre | : Medical |
ISBN | : 1420039741 |
Presenting the latest research in glial cell function gleaned from new techniques in imaging and molecular biology, The Role of Glia in Neurotoxicity, Second Edition covers multiple aspects of glial cells, including morphology, physiology, pharmacology, biochemistry, pathology, and their involvement in the pathophysiology of neurological diseases.
Author | : H. Kettenmann |
Publisher | : Springer Science & Business Media |
Total Pages | : 260 |
Release | : 2013-03-14 |
Genre | : Medical |
ISBN | : 3662050730 |
Recent work has implicated inflammatory processes in the pathophysiology of a variety of neurodegenerative diseases such as Alzheimer's disease, stroke and multiple sclerosis. In this book leading experts in the field discuss molecular, in vivo and clinical aspects of neuroinflammation. It is hoped, with the wealth of research being conductied in this area, that novel therapeutic targets will be identified which will allow successful therapeutic intervention in a variety of neurodegenerative diseases.
Author | : Hardy J. Rideout |
Publisher | : Springer |
Total Pages | : 280 |
Release | : 2017-03-28 |
Genre | : Medical |
ISBN | : 3319499696 |
This is the first book to assemble the leading researchers in the field of LRRK2 biology and neurology and provide a snapshot of the current state of knowledge, encompassing all major aspects of its function and dysfunction. The contributors are experts in cell biology and physiology, neurobiology, and medicinal chemistry, bringing a multidisciplinary perspective on the gene and its role in disease. The book covers the identification of LRRK2 as a major contributor to the pathogenesis of Parkinson's Disease. It also discusses the current state of the field after a decade of research, putative normal physiological roles of LRRK2, and the various pathways that have been identified in the search for the mechanism(s) of its induction of neurodegeneration.
Author | : Helmut Kettenmann |
Publisher | : Oxford University Press |
Total Pages | : 628 |
Release | : 2005 |
Genre | : Medical |
ISBN | : 9780195152227 |
Graduate students in neuroanatomy, neurochemistry, neurophysiology, and molecular neurobiology will find the book indispensable. It is also a vital companion for researchers in these fields as well as clinicians in neurology, neurosurgery, neuropathology, neuro-oncology, physiatry, and psychiatry."--BOOK JACKET.
Author | : Robert Vink |
Publisher | : University of Adelaide Press |
Total Pages | : 354 |
Release | : 2011 |
Genre | : Medical |
ISBN | : 0987073052 |
The brain is the most complex organ in our body. Indeed, it is perhaps the most complex structure we have ever encountered in nature. Both structurally and functionally, there are many peculiarities that differentiate the brain from all other organs. The brain is our connection to the world around us and by governing nervous system and higher function, any disturbance induces severe neurological and psychiatric disorders that can have a devastating effect on quality of life. Our understanding of the physiology and biochemistry of the brain has improved dramatically in the last two decades. In particular, the critical role of cations, including magnesium, has become evident, even if incompletely understood at a mechanistic level. The exact role and regulation of magnesium, in particular, remains elusive, largely because intracellular levels are so difficult to routinely quantify. Nonetheless, the importance of magnesium to normal central nervous system activity is self-evident given the complicated homeostatic mechanisms that maintain the concentration of this cation within strict limits essential for normal physiology and metabolism. There is also considerable accumulating evidence to suggest alterations to some brain functions in both normal and pathological conditions may be linked to alterations in local magnesium concentration. This book, containing chapters written by some of the foremost experts in the field of magnesium research, brings together the latest in experimental and clinical magnesium research as it relates to the central nervous system. It offers a complete and updated view of magnesiums involvement in central nervous system function and in so doing, brings together two main pillars of contemporary neuroscience research, namely providing an explanation for the molecular mechanisms involved in brain function, and emphasizing the connections between the molecular changes and behavior. It is the untiring efforts of those magnesium researchers who have dedicated their lives to unraveling the mysteries of magnesiums role in biological systems that has inspired the collation of this volume of work.