DNA Modifications in the Brain

This book PDF is perfect for those who love Science genre, written by Timothy W Bredy and published by Academic Press which was released on 23 December 2016 with total hardcover pages 180. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related DNA Modifications in the Brain books below.

DNA Modifications in the Brain
Author : Timothy W Bredy
File Size : 40,7 Mb
Publisher : Academic Press
Language : English
Release Date : 23 December 2016
ISBN : 9780128017814
Pages : 180 pages
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DNA Modifications in the Brain by Timothy W Bredy Book PDF Summary

DNA Modifications in the Brain: Neuroepigenetic Regulation of Gene Expression begins with an historical overview of the early discoveries surrounding DNA methylation in the mammalian brain and then explores the evidence supporting a role for this epigenetic mechanism in controlling gene expression programs across the lifespan in both normal and diseased states. Chapters describe new directions and technological advances, and provide an overview of what the future holds for this exciting new field. This book is ideal for medical, graduate and advanced undergraduate students, but is also a great resource for researchers who need a broad introduction to the dynamic nature of DNA that sheds light on evolving concepts of gene-environment interaction and their effects on adaptation and neuropsychiatric disease. Provides a comprehensive overview of the many facets of DNA modifications Discusses the impact of this dynamic epigenetic mechanism across brain development and lifespan at behavioral, cognitive, molecular and genetic levels Contains contributions by influential leaders in the field Edited by a Neuroscientist to further promote synthesis between epigenetics, neuroscience, and clinical relevance

DNA Modifications in the Brain

DNA Modifications in the Brain: Neuroepigenetic Regulation of Gene Expression begins with an historical overview of the early discoveries surrounding DNA methylation in the mammalian brain and then explores the evidence supporting a role for this epigenetic mechanism in controlling gene expression programs across the lifespan in both normal and

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