Discovering the Brain

Discovering the Brain

Author: National Academy of Sciences

Publisher: National Academies Press

Published: 1992-01-01

Total Pages: 195

ISBN-13: 0309045290

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The brain ... There is no other part of the human anatomy that is so intriguing. How does it develop and function and why does it sometimes, tragically, degenerate? The answers are complex. In Discovering the Brain, science writer Sandra Ackerman cuts through the complexity to bring this vital topic to the public. The 1990s were declared the "Decade of the Brain" by former President Bush, and the neuroscience community responded with a host of new investigations and conferences. Discovering the Brain is based on the Institute of Medicine conference, Decade of the Brain: Frontiers in Neuroscience and Brain Research. Discovering the Brain is a "field guide" to the brainâ€"an easy-to-read discussion of the brain's physical structure and where functions such as language and music appreciation lie. Ackerman examines: How electrical and chemical signals are conveyed in the brain. The mechanisms by which we see, hear, think, and pay attentionâ€"and how a "gut feeling" actually originates in the brain. Learning and memory retention, including parallels to computer memory and what they might tell us about our own mental capacity. Development of the brain throughout the life span, with a look at the aging brain. Ackerman provides an enlightening chapter on the connection between the brain's physical condition and various mental disorders and notes what progress can realistically be made toward the prevention and treatment of stroke and other ailments. Finally, she explores the potential for major advances during the "Decade of the Brain," with a look at medical imaging techniquesâ€"what various technologies can and cannot tell usâ€"and how the public and private sectors can contribute to continued advances in neuroscience. This highly readable volume will provide the public and policymakersâ€"and many scientists as wellâ€"with a helpful guide to understanding the many discoveries that are sure to be announced throughout the "Decade of the Brain."


Evolution of Learning and Memory Mechanisms

Evolution of Learning and Memory Mechanisms

Author: Mark A. Krause

Publisher: Cambridge University Press

Published: 2022-05-19

Total Pages: 521

ISBN-13: 1108487998

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This book examines how evolution influences learning and memory processes in both human and nonhuman animals.


Neural Mechanisms of Learning and Memory

Neural Mechanisms of Learning and Memory

Author: Mark R. Rosenzweig

Publisher: MIT Press (MA)

Published: 1976

Total Pages: 674

ISBN-13:

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This volume presents papers given during a five-day conference dealing with current research approaches being used to find out how learning and memory occur in terms of neural processes -- Preface.


Mechanisms of Memory

Mechanisms of Memory

Author: J. David Sweatt

Publisher: Academic Press

Published: 2009-09-28

Total Pages: 362

ISBN-13: 0080959199

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This fully revised second edition provides the only unified synthesis of available information concerning the mechanisms of higher-order memory formation. It spans the range from learning theory, to human and animal behavioral learning models, to cellular physiology and biochemistry. It is unique in its incorporation of chapters on memory disorders, tying in these clinically important syndromes with the basic science of synaptic plasticity and memory mechanisms. It also covers cutting-edge approaches such as the use of genetically engineered animals in studies of memory and memory diseases. Written in an engaging and easily readable style and extensively illustrated with many new, full-color figures to help explain key concepts, this book demystifies the complexities of memory and deepens the reader's understanding. - More than 25% new content, particularly expanding the scope to include new findings in translational research. - Unique in its depth of coverage of molecular and cellular mechanisms - Extensive cross-referencing to Comprehensive Learning and Memory - Discusses clinically relevant memory disorders in the context of modern molecular research and includes numerous practical examples


Neural Plasticity and Memory

Neural Plasticity and Memory

Author: Federico Bermudez-Rattoni

Publisher: CRC Press

Published: 2007-04-17

Total Pages: 368

ISBN-13: 1420008412

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A comprehensive, multidisciplinary review, Neural Plasticity and Memory: From Genes to Brain Imaging provides an in-depth, up-to-date analysis of the study of the neurobiology of memory. Leading specialists share their scientific experience in the field, covering a wide range of topics where molecular, genetic, behavioral, and brain imaging techniq


How We Remember

How We Remember

Author: Michael E. Hasselmo

Publisher: MIT Press

Published: 2012

Total Pages: 383

ISBN-13: 0262016354

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Episodic memory proves essential for daily function, allowing us to remember where we parked the car, what time we walked the dog, or what a friend said earlier. In this book, Hasselmo presents a new model describing the brain mechanisms for encoding and remembering an episode as a spatiotemporal trajectory.


Neural Mechanisms of Goal-Directed Behavior and Learning

Neural Mechanisms of Goal-Directed Behavior and Learning

Author: Richard B. Thompson

Publisher: Elsevier

Published: 2012-12-02

Total Pages: 660

ISBN-13: 0323143768

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Neural Mechanisms of Goal-Directed Behavior and Learning provides information pertinent to the neuronal mechanisms of motivation and learning. This book focuses on the theoretical frameworks within which researchers analyze specific problems. Organized into six parts encompassing 39 chapters, this book begins with an overview of the problem of goal-directed behavior that occupies a central position in psychology. This text then examines the behavioral investigations that are directed at delineating the role of contiguity and determining the possible mechanisms of reinforcement in classical defense and reward conditioning. Other chapters consider the homeostatic regulation of various functions, such as nutrition, temperature, respiration, blood pressure, and fluid and electrolyte balance. This book discusses as well the effects of experimental treatments on memory. The final chapter deals with the relationship between perception and memory. This book is a valuable resource for psychologists and scientists. Graduate students in behavioral neuroscience will also find this book useful.


From Molecules to Networks

From Molecules to Networks

Author: Ruth Heidelberger

Publisher: Academic Press

Published: 2009-01-27

Total Pages: 654

ISBN-13: 0080920837

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An understanding of the nervous system at virtually any level of analysis requires an understanding of its basic building block, the neuron. From Molecules to Networks provides the solid foundation of the morphologic, biochemical, and biophysical properties of nerve cells. All chapters have been thoroughly revised for this second edition to reflect the significant advances of the past 5 years. The new edition expands on the network aspects of cellular neurobiology by adding a new chapter, Information Processing in Neural Networks, and on the relation of cell biological processes to various neurological diseases. The new concluding chapter illustrates how the great strides in understanding the biochemical and biophysical properties of nerve cells have led to fundamental insights into important aspects of neurodegenerative disease. - Written and edited by leading experts in the field, the second edition completely and comprehensively updates all chapters of this unique textbook - Discusses emerging new understanding of non-classical molecules that affect neuronal signaling - Full colour, professional graphics throughout - Includes two new chapters: Information Processing in Neural Networks - describes the principles of operation of neural networks and the key circuit motifs that are common to many networks in the nervous system. Molecular and Cellular Mechanisms of Neurodegenerative Disease - introduces the progress made in the last 20 years in elucidating the cellular and molecular mechanisms underlying brain disorders, including Amyotrophic Lateral Sclerosis (ALS), Parkinson disease, and Alzheimer's disease