Frontiers in Underlying Mechanisms of Neuromuscular Function
A special issue of Brain Sciences (ISSN 2076-3425). This special issue belongs to the section "Systems Neuroscience".
Deadline for manuscript submissions: closed (5 January 2022) | Viewed by 500
Special Issue Editor
Interests: neurophysiology; neuroimaging; rehabilitation; brain injury; stroke; mobility; balance
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
Neuromuscular control involves the integration of information between the central and peripheral nervous systems to control movement through coordinated muscle activity. This physiology control system is well understood in animal and human models. However, the impact of neurological and neuromuscular disorders on this control system and its consequential effects on mobility and balance opens up many unanswered questions related to the underlying mechanisms of neuromuscular function and how it is modulated by disease and treatment. A poor understanding of the underlying mechanisms of neuromuscular function contributes to delay in making significant progress in the rehabilitation of individuals with neuromuscular disorders.
This research topic aims to host research that focuses on using electrophysiological and behavioral measures to understand the mechanisms of neuromuscular function, specifically the communication between central nervous system and muscles. The research topic will not be restricted to research related to specific patient population but it requires that the research contribute to better understanding of the underlying causes of mobility and balance deficits in patient populations.
We welcome innovative research that applies state-of-the-art technology to understand the neurophysiology of neuromuscular function and motor recovery in aging population, and in populations with disorders in the central nervous system (Stroke, Brain Injury, Multiple Sclerosis, Fibromyalgia, Amyotrophic Lateral Sclerosis (ALS), etc.) or peripheral nervous system (autoimmune diseases like myasthenia gravis, peripheral neuropathy, muscular dystrophy, etc.). We solicit original research, clinical reports, reviews, perspective and opinion articles.
Dr. Soha Saleh
Guest Editor
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Keywords
- electrophysiology
- electromyography
- neuromuscular junction
- peripheral neurons
- neuromuscular diseases
- balance
- mobility
- motor neurons
- central nervous system
- neuronal firing
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