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Modern Electroencephalographic Assessment Techniques
to the Animal Models Volumes This volume describes animal models of drug addiction. Because of increasing public concern over the ethical treatment of animals in research, we felt it incumbent upon us to include this general preface in order to indicate why we think further research using animals is necessary.
Similar reasons exist for Volume 4 on receptor binding techniques, since experimental details are provided for all types of ligand-receptor binding, including chapters on general principles, drug discovery and development, and a most useful appendix on computer programs for Scatchard, nonlinear, and competitive d- placement analyses.
Wonderlin, French, Arispe, and Jones describe new (single channel) and more traditional (whole cell) techniques for studying the role of ion channels in cellular pr- esses, a field that is currently developing very rapidly.
Wonderlin, French, Arispe, and Jones describe new (single channel) and more traditional (whole cell) techniques for studying the role of ion channels in cellular pr- esses, a field that is currently developing very rapidly.
Similar reasons exist for Volume 4 on receptor binding techniques since experimental details are provided for all types of ligand-receptor binding, including chapters on general principles, drug discovery and development, and a most useful-appendix on computer programs for Scatchard, nonlinear, and competitive d- placement analyses.
to the Animal Models Volumes This and several other volumes in the Neuromethods series will describe a number of animal models of neuropsychiatric disorders.
Microfluidic and Compartmentalized Platforms for Neurobiological Research
This volume describes the methods of both in vivo and in vitro electroporation using ferrets, rats, mice, chickens, and zebrafish.
As such, many techniques are required to understand the contribution and functions of neuropeptides in health and disease processes. Research in the neuropeptide field is aimed toward a better understanding of the physiology of the human body and toward the development of better diagnostics and therapeutics.
As such, many techniques are required to understand the contribution and functions of neuropeptides in health and disease processes. Research in the neuropeptide field is aimed toward a better understanding of the physiology of the human body and toward the development of better diagnostics and therapeutics.
Viral Vector Approaches in Neurobiology and Brain Diseases
Bringing together techniques and methods currently being applied to the study of exocytosis, Exocytosis Methods collects chapters from experts in the field, examining this fundamental process essential to functions ranging from protein secretion to hormone release and neurotransmission.
Describes techniques for studying neuronal cell death. This work features methods that solve research problems, including the detection of the key proteins involved in neuronal apoptosis, direct assessment of the role of pro-apoptotic proteins in neurons by viral infections and microinjections, and detection of pro-apoptotic proteins in situ.
Providing a spectrum of models that is reflective of the various species that can be utilized in experimentation on disorders across a broad range of developmental disabilities, this volume collects expert contributions involved in investigation of the causes, outcomes, treatment, and prevention.
Muscarinic Receptor: From Structure to Animal Models
This detailed volume explores key technologies that are used currently to investigate iGluR structure, function and physiology.
This volume provides current methods to analyze the properties of designer receptors exclusively activated by designer drugs (DREADDs) in vitro and to measure the biological responses of DREADD activation in different neuronal populations in vivo.
Discovering Hidden Temporal Patterns in Behavior and Interaction
Receptor and Ion Channel Detection in the Brain provides state-of-the-art and up-to-date methodological information on molecular, neuroanatomical and functional techniques that are currently used to study neurotransmitter receptors and ion channels in the brain.
Electrophysiological methods are used at nearly all levels of biological research today. Dr. Yan Dong, an expert in utilizing electrophysiological techniques for brain research with fifteen years of experience, and Peter Neumann hope this work can act as a concise and practical aid to remedy the current situation.
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