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Titlebook: Electrophysiological Recording Techniques; Robert P Vertes,Timothy Allen Book 2022Latest edition Springer Science+Business Media, LLC, par

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书目名称Electrophysiological Recording Techniques
编辑Robert P Vertes,Timothy Allen
视频video
概述Includes cutting-edge methods and protocols.Provides step-by-step detail essential for reproducible results.Contains key notes and implementation advice from the experts
丛书名称Neuromethods
图书封面Titlebook: Electrophysiological Recording Techniques;  Robert P Vertes,Timothy Allen Book 2022Latest edition Springer Science+Business Media, LLC, par
描述This second edition expands on the previous volume by incorporating state-of-the-art electrophysiological and anatomical methods and their application to the study of several systems of the brain involved in a range of functions. Chapters in this edition cover topics such as the value and difficulty of multi-site recordings using depth or surface electrodes; an assessment of different electrophysiological techniques used in non-human animals and humans; applying single-unit and ensemble recordings to the study of temporal dynamics in cognition; approaches to electroencephalography (EEG) recordings applied to mouse research; recordings of the nucleus reuniens of the ventral midline thalamus; and a comprehensive account of intracranial electroencephalography performed in patients with drug resistant epilepsy. In the .Neuromethods. series style, chapters include the type of detail and key advice from specialists needed to obtain successful results in your laboratory. .Comprehensive and thorough, .Electrophysiological Recording Techniques, Second Edition. is a valuable resource for researchers and clinicians to help them utilize the principles and research designs described herein in t
出版日期Book 2022Latest edition
关键词thalamo-cortical regions; hippocampal neurons; human medial temporal lobe; EEG; sensorimotor integration
版次2
doihttps://doi.org/10.1007/978-1-0716-2631-3
isbn_softcover978-1-0716-2633-7
isbn_ebook978-1-0716-2631-3Series ISSN 0893-2336 Series E-ISSN 1940-6045
issn_series 0893-2336
copyrightSpringer Science+Business Media, LLC, part of Springer Nature 2022
The information of publication is updating

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Event-Related Potentials of the Cerebral Cortex,g this activity, researchers have sought to understand its relation to brain function and to use it to monitor and assess brain state. Continuous records of brain activity, examined without regard to particular points in time, are often useful for determining brain state. However, more detailed know
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Assessing Neural Circuit Interactions and Dynamics with Phase-Amplitude Coupling,cluding phase synchronization and amplitude comodulation. Brain rhythms – oscillations in electroencephalogram (EEG) and local field potential (LFP) recordings that are signatures of the coordinated activity of neuronal populations – are believed to play a key role in coordinating the activity of ne
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Candidate Neural Activity for the Encoding of Temporal Content in Memory,ized for measuring time. Instead, temporal content in memory arises from the integration of different time-varying neural activity profiles that can be found throughout the brain including, but not limited to, the medial prefrontal cortex and hippocampus memory system. In order to study temporal cod
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Multisite Recording During Memory-Guided Behavior,ain circuit. Pairing multisite recordings with circuit manipulation and behavior is a powerful approach that allows us to address hypotheses about the precise mechanisms underlying complex behaviors. There are, however, many technical challenges to each of these research methods, and feasibility iss
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Comparative Tasks for Comparative Neurophysiology,ntext of behaving organisms. Drawing from Pavlovian fear conditioning to abstract multistep decision paradigms, no shortage of tasks exists. Any single study may not have the intention of translation or comparison across species, but translational or comparative implications are frequently drawn wit
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Human Intracranial Cognitive Neurophysiology, (MRI) and magneto- or electroencephalography (M/EEG) or invasively in rodents or nonhuman primates. Intracranial EEG as recorded in pharmacoresistant epilepsy patients who undergo evaluation for resective epilepsy surgery provides a unique approach to bridge the gap between noninvasive in humans an
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