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The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review

Neuroplasticity, which is the ability of the brain to adapt to internal and external environmental changes, physiologically occurs during growth and in response to damage. The brain's response to damage is of particular interest in multiple sclerosis, a chronic disease characterized by inflamma...

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Autores principales: Laura, De Giglio, Silvia, Tommasin, Nikolaos, Petsas, Patrizia, Pantano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332922/
https://www.ncbi.nlm.nih.gov/pubmed/30693023
http://dx.doi.org/10.1155/2018/3419871
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author Laura, De Giglio
Silvia, Tommasin
Nikolaos, Petsas
Patrizia, Pantano
author_facet Laura, De Giglio
Silvia, Tommasin
Nikolaos, Petsas
Patrizia, Pantano
author_sort Laura, De Giglio
collection PubMed
description Neuroplasticity, which is the ability of the brain to adapt to internal and external environmental changes, physiologically occurs during growth and in response to damage. The brain's response to damage is of particular interest in multiple sclerosis, a chronic disease characterized by inflammatory and neurodegenerative damage to the central nervous system. Functional MRI (fMRI) is a tool that allows functional changes related to the disease and to its evolution to be studied in vivo. Several studies have shown that abnormal brain recruitment during the execution of a task starts in the early phases of multiple sclerosis. The increased functional activation during a specific task observed has been interpreted mainly as a mechanism of adaptive plasticity designed to contrast the increase in tissue damage. More recent fMRI studies, which have focused on the activity of brain regions at rest, have yielded nonunivocal results, suggesting that changes in functional brain connections represent mechanisms of either adaptive or maladaptive plasticity. The few longitudinal studies available to date on disease evolution have also yielded discrepant results that are likely to depend on the clinical features considered and the length of the follow-up. Lastly, fMRI has been used in interventional studies to investigate plastic changes induced by pharmacological therapy or rehabilitation, though whether such changes represent a surrogate of neuroplasticity remains unclear. The aim of this paper is to systematically review the existing literature in order to provide an overall description of both the neuroplastic process itself and the evolution in the use of fMRI techniques as a means of assessing neuroplasticity. The quantitative and qualitative approach adopted here ensures an objective analysis of published, peer-reviewed research and yields an overview of up-to-date knowledge.
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spelling pubmed-63329222019-01-28 The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review Laura, De Giglio Silvia, Tommasin Nikolaos, Petsas Patrizia, Pantano Neural Plast Review Article Neuroplasticity, which is the ability of the brain to adapt to internal and external environmental changes, physiologically occurs during growth and in response to damage. The brain's response to damage is of particular interest in multiple sclerosis, a chronic disease characterized by inflammatory and neurodegenerative damage to the central nervous system. Functional MRI (fMRI) is a tool that allows functional changes related to the disease and to its evolution to be studied in vivo. Several studies have shown that abnormal brain recruitment during the execution of a task starts in the early phases of multiple sclerosis. The increased functional activation during a specific task observed has been interpreted mainly as a mechanism of adaptive plasticity designed to contrast the increase in tissue damage. More recent fMRI studies, which have focused on the activity of brain regions at rest, have yielded nonunivocal results, suggesting that changes in functional brain connections represent mechanisms of either adaptive or maladaptive plasticity. The few longitudinal studies available to date on disease evolution have also yielded discrepant results that are likely to depend on the clinical features considered and the length of the follow-up. Lastly, fMRI has been used in interventional studies to investigate plastic changes induced by pharmacological therapy or rehabilitation, though whether such changes represent a surrogate of neuroplasticity remains unclear. The aim of this paper is to systematically review the existing literature in order to provide an overall description of both the neuroplastic process itself and the evolution in the use of fMRI techniques as a means of assessing neuroplasticity. The quantitative and qualitative approach adopted here ensures an objective analysis of published, peer-reviewed research and yields an overview of up-to-date knowledge. Hindawi 2018-12-31 /pmc/articles/PMC6332922/ /pubmed/30693023 http://dx.doi.org/10.1155/2018/3419871 Text en Copyright © 2018 De Giglio Laura et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Review Article
Laura, De Giglio
Silvia, Tommasin
Nikolaos, Petsas
Patrizia, Pantano
The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title_full The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title_fullStr The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title_full_unstemmed The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title_short The Role of fMRI in the Assessment of Neuroplasticity in MS: A Systematic Review
title_sort role of fmri in the assessment of neuroplasticity in ms: a systematic review
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6332922/
https://www.ncbi.nlm.nih.gov/pubmed/30693023
http://dx.doi.org/10.1155/2018/3419871
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