Fr. 188.00

Developmental Plasticity of Inhibitory Circuitry

English · Paperback / Softback

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Description

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Neuroscience has long been focused on understanding neural plasticity in both development and adulthood. Experimental work in this area has focused almost entirely on plasticity at excitatory synapses. A growing body of evidence suggests that plasticity at inhibitory GABAergic and glycinergic synapses is of critical importance during both development and aging.
The book brings together the work of researchers investigating inhibitory plasticity at many levels of analysis and in several different preparations. This topic is of wide relevance across a number of different areas of research in neuroscience and neurology. Medical problems such as epilepsy, mental illness, drug abuse, and movement disorders can result from malfunctioning inhibitory circuits. Further, the maturation of inhibitory circuits may trigger the onset of critical periods of neural circuit plasticity, raising the possibility that such plastici periods could be reactivated for medical benefit by manipulating inhibitory circuitry.

List of contents

The Origins and Specification of Cortical Interneurons.- Role of Spontaneous Activity in the Maturation of GABAergic Synapses in Embryonic Spinal Circuits.- Regulation of Inhibitory Synapse Function in the Developing Auditory CNS.- Developmental Plasticity of Inhibitory Receptive Field Properties in the Auditory and Visual Systems.- Postnatal Maturation and Experience-Dependent Plasticity of Inhibitory Circuits in Barrel Cortex.- GABAergic Transmission and Neuronal Network Events During Hippocampal Development.- Endocannabinoids and Inhibitory Synaptic Plasticity in Hippocampus and Cerebellum.- Interneuron Pathophysiologies: Paths to Neurodevelopmental Disorders.

Summary

Neuroscience has long been focused on understanding neural plasticity in both development and adulthood. Experimental work in this area has focused almost entirely on plasticity at excitatory synapses. A growing body of evidence suggests that plasticity at inhibitory GABAergic and glycinergic synapses is of critical importance during both development and aging.

The book brings together the work of researchers investigating inhibitory plasticity at many levels of analysis and in several different preparations. This topic is of wide relevance across a number of different areas of research in neuroscience and neurology. Medical problems such as epilepsy, mental illness, drug abuse, and movement disorders can result from malfunctioning inhibitory circuits. Further, the maturation of inhibitory circuits may trigger the onset of critical periods of neural circuit plasticity, raising the possibility that such plastici periods could be reactivated for medical benefit by manipulating inhibitory circuitry.

Additional text

From the reviews:

“For basic and clinical researchers and students in neuroscience and neurology, Pallas (neuroscience and biology, Georgia State U) brings together nine chapters that examine how inhibitory circuits are formed during development and how they are involved in plasticity of developing sensory and motor circuitry. … The book originated in a symposium on the topic at the 2006 Society for Neuroscience meeting in Atlanta, Georgia.” (SciTech Book News, June, 2010)

Report

From the reviews: "For basic and clinical researchers and students in neuroscience and neurology, Pallas (neuroscience and biology, Georgia State U) brings together nine chapters that examine how inhibitory circuits are formed during development and how they are involved in plasticity of developing sensory and motor circuitry. ... The book originated in a symposium on the topic at the 2006 Society for Neuroscience meeting in Atlanta, Georgia." (SciTech Book News, June, 2010)

Product details

Assisted by Sara L Pallas (Editor), Sarah L Pallas (Editor), Sarah L. Pallas (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2014
 
EAN 9781489982834
ISBN 978-1-4899-8283-4
No. of pages 190
Dimensions 155 mm x 11 mm x 235 mm
Weight 320 g
Illustrations XI, 190 p.
Subjects Natural sciences, medicine, IT, technology > Medicine > Clinical medicine

B, Rehabilitation, Life Sciences, Neurology, Neuroscience, Neurology & clinical neurophysiology, Neurosciences, Health Sciences, Biomedical and Life Sciences, Zoology, Rehabilitation Medicine, Developmental biology, Neurobiology

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