Adult Neuroplasticity: More Than 40 Years of Research
Within the last four decades, our view of the mature vertebrate brain has changed significantly. Today it is generally accepted that the adult brain is far from being fixed. A number of factors such as stress, adrenal and gonadal hormones, neurotransmitters, growth factors, certain drugs, environmen...
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Published in | Journal of neural transplantation & plasticity Vol. 2014; no. 2014; pp. 440 - 449 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Cairo, Egypt
Hindawi Limiteds
01.01.2014
Hindawi Publishing Corporation John Wiley & Sons, Inc Wiley |
Subjects | |
Online Access | Get full text |
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Abstract | Within the last four decades, our view of the mature vertebrate brain has changed significantly. Today it is generally accepted that the adult brain is far from being fixed. A number of factors such as stress, adrenal and gonadal hormones, neurotransmitters, growth factors, certain drugs, environmental stimulation, learning, and aging change neuronal structures and functions. The processes that these factors may induce are morphological alterations in brain areas, changes in neuron morphology, network alterations including changes in neuronal connectivity, the generation of new neurons (neurogenesis), and neurobiochemical changes. Here we review several aspects of neuroplasticity and discuss the functional implications of the neuroplastic capacities of the adult and differentiated brain with reference to the history of their discovery. |
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AbstractList | Within the last four decades, our view of the mature vertebrate brain has changed significantly. Today it is generally accepted that the adult brain is far from being fixed. A number of factors such as stress, adrenal and gonadal hormones, neurotransmitters, growth factors, certain drugs, environmental stimulation, learning, and aging change neuronal structures and functions. The processes that these factors may induce are morphological alterations in brain areas, changes in neuron morphology, network alterations including changes in neuronal connectivity, the generation of new neurons (neurogenesis), and neurobiochemical changes. Here we review several aspects of neuroplasticity and discuss the functional implications of the neuroplastic capacities of the adult and differentiated brain with reference to the history of their discovery. Within the last four decades, our view of the mature vertebrate brain has changed significantly. Today it is generally accepted that the adult brain is far from being fixed. A number of factors such as stress, adrenal and gonadal hormones, neurotransmitters, growth factors, certain drugs, environmental stimulation, learning, and aging change neuronal structures and functions. The processes that these factors may induce are morphological alterations in brain areas, changes in neuron morphology, network alterations including changes in neuronal connectivity, the generation of new neurons (neurogenesis), and neurobiochemical changes. Here we review several aspects of neuroplasticity and discuss the functional implications of the neuroplastic capacities of the adult and differentiated brain with reference to the history of their discovery.Within the last four decades, our view of the mature vertebrate brain has changed significantly. Today it is generally accepted that the adult brain is far from being fixed. A number of factors such as stress, adrenal and gonadal hormones, neurotransmitters, growth factors, certain drugs, environmental stimulation, learning, and aging change neuronal structures and functions. The processes that these factors may induce are morphological alterations in brain areas, changes in neuron morphology, network alterations including changes in neuronal connectivity, the generation of new neurons (neurogenesis), and neurobiochemical changes. Here we review several aspects of neuroplasticity and discuss the functional implications of the neuroplastic capacities of the adult and differentiated brain with reference to the history of their discovery. |
Audience | Academic |
Author | Fuchs, Eberhard Flügge, Gabriele |
AuthorAffiliation | 1 German Primate Center, Leibniz Institute for Primate Research, Kellnerweg 4, 37077 Göttingen, Germany 2 Department of Neurology, Medical School, University of Göttingen, 37075 Göttingen, Germany |
AuthorAffiliation_xml | – name: 1 German Primate Center, Leibniz Institute for Primate Research, Kellnerweg 4, 37077 Göttingen, Germany – name: 2 Department of Neurology, Medical School, University of Göttingen, 37075 Göttingen, Germany |
Author_xml | – sequence: 1 fullname: Fuchs, Eberhard – sequence: 2 fullname: Flügge, Gabriele |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24883212$$D View this record in MEDLINE/PubMed |
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ContentType | Journal Article |
Copyright | Copyright © 2014 Eberhard Fuchs and Gabriele Flügge. COPYRIGHT 2014 John Wiley & Sons, Inc. Copyright © 2014 Eberhard Fuchs and Gabriele Flügge. This work is licensed under http://creativecommons.org/licenses/by/4.0/ (the “License”). Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. Copyright © 2014 E. Fuchs and G. Flügge. 2014 |
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Publisher | Hindawi Limiteds Hindawi Publishing Corporation John Wiley & Sons, Inc Wiley |
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SubjectTerms | Adult Animals Apoptosis Brain Brain research Cell Death - physiology Chromatin - physiology History, 20th Century History, 21st Century Humans Hypotheses Mammals Mental depression Morphology Nervous system Neurogenesis Neurogenesis - physiology Neurology - history Neuronal Plasticity - physiology Neurons Neurons - physiology Neurons - ultrastructure Neuroplasticity Review Vertebrates - physiology |
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Title | Adult Neuroplasticity: More Than 40 Years of Research |
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