Neural Plasticity

Post-Stroke Neural Plasticity: Functional and Structural Reorganization during Stroke Recovery


Publishing date
01 Jul 2022
Status
Published
Submission deadline
25 Feb 2022

Lead Editor

1The Second Affiliated Hospital and Yuying Children's Hospital, Wenzhou, China

2Hangzhou Normal University, Hangzhou, China

3The First Affiliated Hospital of Nanjing Medical University, Nanjing, China

4University of Lucerne, Lucerne, Switzerland


Post-Stroke Neural Plasticity: Functional and Structural Reorganization during Stroke Recovery

Description

Stroke is a major cause of disability worldwide. It severely impacts daily activities and affects the quality of life of humans. Despite improved treatment strategies, a substantial number of stroke survivors are associated with persistent neurological deficits. Therefore, there is an urgent need to gain more understanding about the neural plasticity that determines functional recovery from stroke.

Advanced neuroimaging techniques are promising, as they enable us to detect neural plasticity changes. Moreover, they provide important information on the brain’s capacity for self-repair in stroke. In addition, novel neurorehabilitation for stroke patients is becoming more popular and has demonstrated to be effective in clinical practice and in research. However, how these promising interventions affect post-stroke neural plasticity is not fully understood. Therefore, post-stroke neural plasticity changes after neurorehabilitation need to be further explored, which may help to elucidate the neural mechanisms of these interventions and provide guidance for future clinical applications.

The aim of this Special Issue is to increase our knowledge of how neurorehabilitation affects neural plasticity. This Special issue welcomes human studies and animal studies discussing the use of advanced methods and techniques to explain the mechanisms of neurorehabilitation. Original research and review articles discussing the state of the art are welcome.

Potential topics include but are not limited to the following:

  • Post-stroke neural plasticity after physical therapy
  • Post-stroke neural plasticity after electrical or magnetic stimulation
  • Post-stroke neural plasticity after robot-assisted training
  • Post-stroke neural plasticity after traditional Chinese medicine therapy
  • Brain structural and functional changes following stroke using neuroimaging techniques (e.g., magnetic resonance imaging, positron emission tomography, electroencephalogram and other related methods)
  • Advanced mechanisms in humans/animals in post-stroke neural plasticity
  • The role of the brain-gut axis, brain-heart axis, extracellular matrix (e.g., inhibitory proteoglycans and their interactions with chondroitinase) in post-stroke neural plasticity
  • Machine learning techniques helping to build predictive models based on post-stroke neural plasticity

Articles

  • Special Issue
  • - Volume 2022
  • - Article ID 5771634
  • - Research Article

Effectiveness of a Novel Contralaterally Controlled Neuromuscular Electrical Stimulation for Restoring Lower Limb Motor Performance and Activities of Daily Living in Stroke Survivors: A Randomized Controlled Trial

Ying Shen | Lan Chen | ... | Tong Wang
  • Special Issue
  • - Volume 2021
  • - Article ID 1469339
  • - Research Article

Distinctive Gut Microbiota Alteration Is Associated with Poststroke Functional Recovery: Results from a Prospective Cohort Study

Yini Dang | Xintong Zhang | ... | Xiao Lu
  • Special Issue
  • - Volume 2021
  • - Article ID 6144304
  • - Research Article

A New Classification System for Postinterventional Cerebral Hyperdensity: The Influence on Hemorrhagic Transformation and Clinical Prognosis in Acute Stroke

Yuan Shao | Yuyun Xu | ... | Xiaodong He
  • Special Issue
  • - Volume 2021
  • - Article ID 3536234
  • - Research Article

Structural and Functional Deficits in Patients with Poststroke Dementia: A Multimodal MRI Study

Huaying Cai | Zhiyong Zhao | ... | Jin Wang
  • Special Issue
  • - Volume 2021
  • - Article ID 7031178
  • - Research Article

Longitudinal Changes of Sensorimotor Resting-State Functional Connectivity Differentiate between Patients with Thalamic Infarction and Pontine Infarction

Peipei Wang | Zhenxiang Zang | ... | Jie Lu
  • Special Issue
  • - Volume 2021
  • - Article ID 4894881
  • - Research Article

Electroacupuncture Promotes the Survival of the Grafted Human MGE Neural Progenitors in Rats with Cerebral Ischemia by Promoting Angiogenesis and Inhibiting Inflammation

Juan Li | Luting Chen | ... | Hong Chen
  • Special Issue
  • - Volume 2021
  • - Article ID 5664647
  • - Research Article

Intrahemispheric EEG: A New Perspective for Quantitative EEG Assessment in Poststroke Individuals

Rodrigo Brito | Adriana Baltar | ... | Kátia Monte-Silva
  • Special Issue
  • - Volume 2021
  • - Article ID 9733926
  • - Research Article

The Frequency and Associated Factors of Asymmetrical Prominent Veins: A Predictor of Unfavorable Outcomes in Patients with Acute Ischemic Stroke

Yue Wang | Jingjing Xiao | ... | Lingjing Jin
  • Special Issue
  • - Volume 2021
  • - Article ID 6718184
  • - Research Article

sLOX-1: A Molecule for Evaluating the Prognosis of Recurrent Ischemic Stroke

Yangmin Zheng | Yuyou Huang | ... | Yumin Luo
  • Special Issue
  • - Volume 2021
  • - Article ID 2662585
  • - Review Article

Neuroplasticity of Acupuncture for Stroke: An Evidence-Based Review of MRI

Jinhuan Zhang | Chunjian Lu | ... | Haibo Yu
Neural Plasticity
 Journal metrics
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Acceptance rate12%
Submission to final decision134 days
Acceptance to publication26 days
CiteScore5.700
Journal Citation Indicator0.610
Impact Factor3.1
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