[PDF] Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation - eBooks Review

Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation


Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation
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Download Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages. If the content not found or just blank you must refresh this page



Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation


Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation
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Author : Juan Andrés Orellana
language : en
Publisher: Frontiers Media SA
Release Date : 2022-02-01

Gap Junctions Hemichannels And Pannexons New Implications In Neuroplasticity And Neuroinflammation written by Juan Andrés Orellana and has been published by Frontiers Media SA this book supported file pdf, txt, epub, kindle and other format this book has been release on 2022-02-01 with Science categories.




Glial Physiology And Pathophysiology


Glial Physiology And Pathophysiology
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Author : Alexei Verkhratsky
language : en
Publisher: John Wiley & Sons
Release Date : 2013-04-15

Glial Physiology And Pathophysiology written by Alexei Verkhratsky and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2013-04-15 with Medical categories.


Glial Physiology and Pathophysiology provides a comprehensive, advanced text on the biology and pathology of glial cells. Coverage includes: the morphology and interrelationships between glial cells and neurones in different parts of the nervous systems the cellular physiology of the different kinds of glial cells the mechanisms of intra- and inter-cellular signalling in glial networks the mechanisms of glial-neuronal communications the role of glial cells in synaptic plasticity, neuronal survival and development of nervous system the cellular and molecular mechanisms of metabolic neuronal-glial interactions the role of glia in nervous system pathology, including pathology of glial cells and associated diseases - for example, multiple sclerosis, Alzheimer's, Alexander disease and Parkinson's Neuroglia oversee the birth and development of neurones, the establishment of interneuronal connections (the 'connectome'), the maintenance and removal of these inter-neuronal connections, writing of the nervous system components, adult neurogenesis, the energetics of nervous tissue, metabolism of neurotransmitters, regulation of ion composition of the interstitial space and many, many more homeostatic functions. This book primes the reader towards the notion that nervous tissue is not divided into more important and less important cells. The nervous tissue functions because of the coherent and concerted action of many different cell types, each contributing to an ultimate output. This reaches its zenith in humans, with the creation of thoughts, underlying acquisition of knowledge, its analysis and synthesis, and contemplating the Universe and our place in it. An up-to-date and fully referenced text on the most numerous cells in the human brain Detailed coverage of the morphology and interrelationships between glial cells and neurones in different parts of the nervous system Describes the role of glial cells in neuropathology Focus boxes highlight key points and summarise important facts Companion website with downloadable figures and slides



Handbook Of Neurochemistry And Molecular Neurobiology


Handbook Of Neurochemistry And Molecular Neurobiology
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Author : Ramon Lim
language : en
Publisher: Springer Science & Business Media
Release Date : 2006-09-18

Handbook Of Neurochemistry And Molecular Neurobiology written by Ramon Lim and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2006-09-18 with Medical categories.


"The Handbook is intended to be a service to the neuroscience community, to help in finding available and useful information, to point out gaps in our knowledge, and to encourage continued studies. It represents the valuable contributions of the many authors of the chapters and the guidance of the editors and most important, it represents support for research in this discipline. Based on the rapid advances in the years since the second edition."--Publisher's website.



Enteric Glia


Enteric Glia
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Author : Brian D. Gulbransen
language : en
Publisher: Biota Publishing
Release Date : 2014-07-01

Enteric Glia written by Brian D. Gulbransen and has been published by Biota Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2014-07-01 with Medical categories.


The enteric nervous system (ENS) is a complex neural network embedded in the gut wall that orchestrates the reflex behaviors of the intestine. The ENS is often referred to as the “little brain” in the gut because the ENS is more similar in size, complexity and autonomy to the central nervous system (CNS) than other components of the autonomic nervous system. Like the brain, the ENS is composed of neurons that are surrounded by glial cells. Enteric glia are a unique type of peripheral glia that are similar to astrocytes of the CNS. Yet enteric glial cells also differ from astrocytes in many important ways. The roles of enteric glial cell populations in the gut are beginning to come to light and recent evidence implicates enteric glia in almost every aspect of gastrointestinal physiology and pathophysiology. However, elucidating the exact mechanisms by which enteric glia influence gastrointestinal physiology and identifying how those roles are altered during gastrointestinal pathophysiology remain areas of intense research. The purpose of this e-book is to provide an introduction to enteric glial cells and to act as a resource for ongoing studies on this fascinating population of glia. Table of Contents: Introduction / A Historical Perspective on Enteric Glia / Enteric Glia: The Astroglia of the Gut / Molecular Composition of Enteric Glia / Development of Enteric Glia / Functional Roles of Enteric Glia / Enteric Glia and Disease Processes in the Gut / Concluding Remarks / References / Author Biography



Never Resting Microglia Physiological Roles In The Healthy Brain And Pathological Implications


Never Resting Microglia Physiological Roles In The Healthy Brain And Pathological Implications
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Author : Amanda Sierra
language : en
Publisher: Frontiers E-books
Release Date : 2015-02-11

Never Resting Microglia Physiological Roles In The Healthy Brain And Pathological Implications written by Amanda Sierra and has been published by Frontiers E-books this book supported file pdf, txt, epub, kindle and other format this book has been release on 2015-02-11 with Microglia categories.


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.