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Principles of Electrical Neural Interfacing : A Quantitative Approach to Cellular Recording and Stimulation / by Liang Guo

By: Guo, Liang, (Ph. D. in bioengineering), autor
Material type: materialTypeLabelE-bookPublisher: Cham : Springer International Publishing, 2022Edition: 1st edition 2022.Description: 1 recurso en línea (XX, 169 páginas) : 49 ilustraciones, 32 ilustraciones a color.ISBN: 9783030776770.Subject: Neurociencias | BioingenieríaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Introduction -- Equivalent Circuit Models of Neurons -- Recording Electrodes -- Stimulating Electrodes -- Intracellular Recording -- Extracellular Recording -- Extracellular Recording of Propagating Action Potentials -- Recording using Field-Effect Transistors -- Neural Recording using Nanoprotrusion Electrodes -- Recording using Tetrodes -- Intracortical Functional Neural Mapping Using an Integrated 3D Ultra-Density MEA -- Neuronal Stimulation -- Electrical Stimulation to Promote Neuronal Growth -- Applications.
Summary: This textbook fills a gap to supply students with the fundamental principles and tools they need to perform the quantitative analyses of the neuroelectrophysiological approaches, including both conventional and emerging ones, prevalently used in neuroscience research and neuroprosthetics. The content grows out of a course on Neuroengineering and Neuroprosthetics, which the author has taught already several times. The key problems the author addresses include (1) the universal operating mechanisms of neuroelectrophysiological approaches, (2) proper configuration of each approach, and (3) proper interpretation of the resulting signals. Efforts are made both to extract the universal principles underlying this common class of approaches and discern the unique properties of each individual approach. To address these important problems, equivalent electrical circuit modeling and signal analysis are used to unravel the functioning mechanisms and principles and provide sound interpretations to the associated signals and phenomena. This book aims to derive analytical solutions to these equivalent circuits, which can offer clear and complete mechanistic insights to the underlying biophysics. .
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Holdings
Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TA167.5 2022 EB (Browse shelf(Opens below)) Acceso electrónico eBook.09012404
Total holds: 0

Introduction -- Equivalent Circuit Models of Neurons -- Recording Electrodes -- Stimulating Electrodes -- Intracellular Recording -- Extracellular Recording -- Extracellular Recording of Propagating Action Potentials -- Recording using Field-Effect Transistors -- Neural Recording using Nanoprotrusion Electrodes -- Recording using Tetrodes -- Intracortical Functional Neural Mapping Using an Integrated 3D Ultra-Density MEA -- Neuronal Stimulation -- Electrical Stimulation to Promote Neuronal Growth -- Applications.

This textbook fills a gap to supply students with the fundamental principles and tools they need to perform the quantitative analyses of the neuroelectrophysiological approaches, including both conventional and emerging ones, prevalently used in neuroscience research and neuroprosthetics. The content grows out of a course on Neuroengineering and Neuroprosthetics, which the author has taught already several times. The key problems the author addresses include (1) the universal operating mechanisms of neuroelectrophysiological approaches, (2) proper configuration of each approach, and (3) proper interpretation of the resulting signals. Efforts are made both to extract the universal principles underlying this common class of approaches and discern the unique properties of each individual approach. To address these important problems, equivalent electrical circuit modeling and signal analysis are used to unravel the functioning mechanisms and principles and provide sound interpretations to the associated signals and phenomena. This book aims to derive analytical solutions to these equivalent circuits, which can offer clear and complete mechanistic insights to the underlying biophysics. .

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