Cerebral ischemia and resuscitation

書誌事項

Cerebral ischemia and resuscitation

editors, Avital Schurr, Benjamin M. Rigor

CRC Press, c1990

大学図書館所蔵 件 / 10

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注記

Includes bibliographical references and index

内容説明・目次

内容説明

This fascinating monograph is filled with information formerly found only in periodicals and symposia proceedings. Chapters discuss the different models of cerebral ischemia in use today, including their advantages and disadvantages. This one-of-a-kind resource also contains essential chapters on cellular mechanisms of ion and acid-base homeostases, and energy metabolism of the ischemic brain. It reviews the possible role of lipids, free fatty acids, and free radicals. Four chapters are devoted to neurotransmitters and neuroregulators in cerebral ischemia. This extraordinary work also covers aspects of protection against and resuscitation from cerebral ischemia. An extremely informative volume, this book is an absolute must for every student in the field of cerebral ischemia, as well as the clinician or scientist who is already involved with this worldwide problem.

目次

Models of Cerebral Ischemia in the Rodent. The Mongolian Gerbil as a Model for Cerebral Ischemia. A Stroke Model Designed for Preclinical Trials. The Use of Brain Slices in the Study of Cerebral Hypoxia-Ischemia and Resuscitation. Ion Homeostasis and Cerebral Ischemia. Astrocytic Acid-Base Homeostasis in Cerebral Ischemia. Aspects of Brain Energy Metabolism and Cerebral Ischemia. Mechanisms for Ischemia-Induced Release of Free Fatty Acids in Brain. Calcium and Free Fatty Acids in Cerebral Ischemic Cell Damage. Free Radicals and Lipid Changes in Cerebral Ischemia. Excitatory Amino Acids and Hypoxic-Schemic Damage in the Immature Brain. Monoamines and Cerebral Ischemia. Adenosine, Inosine, and the Oxypurines in Cerebral Ischemia. Cyclic Nucleotides and Cerebral Ischemia. Cell Damage in Cerebral Ischemia: Physiological, Biochemical, and Structural Aspects. Structural Damage in Experimental Cerebral Ischemia. Selective Neuronal Damage in Cerebral Ischemia and Protective Mechanisms. Mitochondrial and Synaptic Activity in Cerebral Ischemia. Brain Mitochondrial Function in Cerebral Ischemia and Resuscitation. Mechanisms of the Reversible Arrest of Function During Transient Cerebral Hypoxia and Ischemia. Cerebral Ischemia and Aging: Oxidative and Energy Metabolism. Protection Against Cerebral Ischemia: Physiological and Clinical Considerations. Pharmacology and Drug Therapy of Cerebral Ischemia. Free Radical Scavengers and Protection Against Ischemic Brain Damage. Immunohistochemical Assessment of Cerebral Ischemia. Monitoring of Cerebral Ischemia.

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