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Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Language: English
Published by Cambridge University Press, Cambridge, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Hardcover. Condition: new. Hardcover. The epilepsies are devastating neurological disorders for which progress developing effective new therapies has slowed over recent decades, primarily due to the complexity of the brain at all scales. This reality has shifted the focus of experimental and clinical practice toward complex systems approaches to overcoming current barriers. Organized by scale from genes to whole brain, the chapters of this book survey the theoretical underpinnings and use of network and dynamical systems approaches to interpreting and modeling experimental and clinical data in epilepsy. The emphasis throughout is on the value of the non-trivial, and often counterintuitive, properties of complex systems, and how to leverage these properties to elaborate mechanisms of epilepsy and develop new therapies. In this essential book, readers will learn key concepts of complex systems theory applied across multiple scales and how each of these scales connects to epilepsy. Provides a comprehensive overview of the complex systems approach to epilepsy and explores this theory across multiple scales from genes to the whole brain. Emphasizes therapeutic opportunities that arise from complex systems thinking that can benefit the thirty percent of patients who do not respond to current treatments. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Hardcover. Condition: Brand New. 1st edition. 160 pages. 10.00x7.00x0.50 inches. In Stock.
Language: English
Published by Cambridge University Press, Cambridge, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Hardcover. Condition: new. Hardcover. The epilepsies are devastating neurological disorders for which progress developing effective new therapies has slowed over recent decades, primarily due to the complexity of the brain at all scales. This reality has shifted the focus of experimental and clinical practice toward complex systems approaches to overcoming current barriers. Organized by scale from genes to whole brain, the chapters of this book survey the theoretical underpinnings and use of network and dynamical systems approaches to interpreting and modeling experimental and clinical data in epilepsy. The emphasis throughout is on the value of the non-trivial, and often counterintuitive, properties of complex systems, and how to leverage these properties to elaborate mechanisms of epilepsy and develop new therapies. In this essential book, readers will learn key concepts of complex systems theory applied across multiple scales and how each of these scales connects to epilepsy. Provides a comprehensive overview of the complex systems approach to epilepsy and explores this theory across multiple scales from genes to the whole brain. Emphasizes therapeutic opportunities that arise from complex systems thinking that can benefit the thirty percent of patients who do not respond to current treatments. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.
Language: English
Published by Cambridge University Press, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Condition: New. Inhaltsverzeichnis1. Overview Rod Scott and Matt Mahoney 2. Systems biological approaches to the genetic complexity of the epilepsies Jeffrey L. Brabec, Montana Kay Lara, Anna L. Tyler and J. Matthew Mahoney 3. Transcriptomic and epige.
Language: English
Published by Cambridge University Press, Cambridge, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
Seller: AussieBookSeller, Truganina, VIC, Australia
Hardcover. Condition: new. Hardcover. The epilepsies are devastating neurological disorders for which progress developing effective new therapies has slowed over recent decades, primarily due to the complexity of the brain at all scales. This reality has shifted the focus of experimental and clinical practice toward complex systems approaches to overcoming current barriers. Organized by scale from genes to whole brain, the chapters of this book survey the theoretical underpinnings and use of network and dynamical systems approaches to interpreting and modeling experimental and clinical data in epilepsy. The emphasis throughout is on the value of the non-trivial, and often counterintuitive, properties of complex systems, and how to leverage these properties to elaborate mechanisms of epilepsy and develop new therapies. In this essential book, readers will learn key concepts of complex systems theory applied across multiple scales and how each of these scales connects to epilepsy. Provides a comprehensive overview of the complex systems approach to epilepsy and explores this theory across multiple scales from genes to the whole brain. Emphasizes therapeutic opportunities that arise from complex systems thinking that can benefit the thirty percent of patients who do not respond to current treatments. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Language: English
Published by Cambridge University Press Mär 2023, 2023
ISBN 10: 1009258087 ISBN 13: 9781009258081
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Buch. Condition: Neu. Neuware - ''Provides a comprehensive overview of the complex systems approach to epilepsy and explores this theory across multiple scales from genes to the whole brain. Emphasizes therapeutic opportunities that arise from complex systems thinking that can benefit the 30% of patients who do not respond to current treatments.''--.