Könyv Handbook of Neural Engineering Stephanie Willerth

Handbook of Neural Engineering

A Modern Approach

Nyelv: Angol
Kötés: Puha kötésű
Kiadó: Elsevier Inc
Elérhetőség: Beszállítói készleten
Küldés 14-21 napon belül
79 099 Ft
Handbook of Neural Engineering: A Modern Approach provides a comprehensive overview of the field fro...

Információk a könyvről

Nyelv
Angol
Kötés
Könyv - Puha kötésű
Kiadva
2024
oldal
450
EAN
9780323957304
ISBN
0323957307
Enbook ID
44597360
Kiadó
Súly
1359
Méretek
191 x 234

Teljes leírás

Handbook of Neural Engineering: A Modern Approach provides a comprehensive overview of the field from biology to recent technological advances through an interdisciplinary lens. The book is divided into three sections: 1) Biological Considerations for Neural Engineering, 2) Neural Engineering Strategies, and 3) Emerging Technologies for Neural Engineering. The Handbook is accessible to upper-level undergraduate students, graduate students, scientific researchers, clinicians, neural engineers, and professionals working in industry. As the field of Neural Engineering is emerging, new technologies have emerged as strategies for treating neurological diseases and disorders which will be discussed alongside established technologies such as neural interfaces and neural prostheses. Handbook of Neural Engineering is the first comprehensive text that addresses this combination of subjects. Neurodegenerative diseases, including Alzheimer’s, Parkinson’s and Multiple Sclerosis, represent an enormous healthcare burden, and many of these diseases lack true cures, making it imperative to study the biological systems that become disordered to understand potential treatment options. The COVID-19 pandemic dramatically illustrated the need for trained Biomedical Engineers, as this rapidly growing field applies the principles of engineering design for applications in human health. Neural Engineering – a subset of Biomedical Engineering – focuses on the study and understanding of the nervous system and the development of strategies to repair or regenerate diseased or damaged neural tissue or enhance the function of the nervous system. Most of the major neurological diseases and disorders lack true cures, generating a large burden on the healthcare system and the patients suffering from these conditions. Neural Engineering can help to address these burdens caused by Alzheimer’s disease, Parkinson’s disease, traumatic brain injury and other conditions. One of the major areas of interest is studying how non-living components interact with the nervous system, and this work requires an in-depth knowledge of both the engineering components and constraints as well as an understanding of the biology present in the nervous system. Thus, there is a need for a foundational Handbook of Neural Engineering to cover the topics relevant to this field in order to address this growing area of research. Handbook of Neural Engineering covers the basic neurobiology and physiology, common neural engineering strategies, and emerging technologies in this field. It is designed to support an upper year/graduate elective course in neural engineering, and will provide a foundational overview of the field for interdisciplinary researchers, clinicians, engineers, and industry professionals. The handbook provides readers with a strong base in both biological and engineering principles along with the concepts necessary to implement solutions using Neural Engineering. Includes coverage of foundational concepts of the fast-moving field of Neural Engineering, from overview and structure of the nervous system, cellular biology of the nervous system, extracellular matrix of the nervous system, role of the immune system in the nervous system, disease states of the nervous system, and the effects of trauma and chronic pain on the nervous systemProvides readers with understanding of Neural Engineering strategies, in key areas such as imagining, examining nervous system function, neural interfaces, Brain-Computer Interfaces, neural prostheses, neurorobotics, and neural tissue engineeringIncludes a complete section on emerging technologies for neural engineering applications, such as optogenetics, gene editing, brain organoids, and modeling with organ-on-a-chip systems

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