This study presents a model-based sensitivity analysis of the strength of voluntary muscle contraction with respect to different patterns of motor unit loss. A motor unit pool model was implemented including simulation of a motor neuron pool, muscle force, and surface electromyogram (EMG) signals. Three different patterns of motor unit loss were simulated, including (1) motor unit loss restricted to the largest ones, (2) motor unit loss restricted to the smallest ones, and (3) motor unit loss without size restriction. The model outputs including muscle force amplitude, variability, and the resultant EMG-force relation were quantified under two different motor neuron firing strategies. It was found that motor unit loss restricted to the larg...
Copyright © 2013 Rositsa Raikova et al.This is an open access article distributed under the Creative...
One major limitation in motor unit (MU) studies is the difficulty in assessing the properties of hig...
AbstractA dynamical model is presented as a framework for muscle activation, fatigue, and recovery. ...
Muscles consists of multiple motor units (MUs) that produce the force required for our movements. Mo...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Muscle fatigue is a temporary decline in the force and power capacity of skeletal muscle resulting f...
Abstract Background Mathematical muscle models may be useful for the determination of appropriate mu...
AbstractMuscles contain a collection of motor units that can have different mechanical properties. I...
Reduction in number of motor units (nMU) and fast fibre ratio (FFR) is associated with disease or at...
The electrophysiology of neuromuscular function can be analyzed at the level of the individual motor...
Muscle force is regulated by varying two main motor unit properties: the recruitment and the firing ...
Approximate entropy of isometric force is a popular measure to characterize behavioral changes acros...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Neutral factors have been found to play a significant role in human muscular strength development, a...
The computational simulation of human voluntary muscle contraction is possible with EMG-driven Hill-...
Copyright © 2013 Rositsa Raikova et al.This is an open access article distributed under the Creative...
One major limitation in motor unit (MU) studies is the difficulty in assessing the properties of hig...
AbstractA dynamical model is presented as a framework for muscle activation, fatigue, and recovery. ...
Muscles consists of multiple motor units (MUs) that produce the force required for our movements. Mo...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Muscle fatigue is a temporary decline in the force and power capacity of skeletal muscle resulting f...
Abstract Background Mathematical muscle models may be useful for the determination of appropriate mu...
AbstractMuscles contain a collection of motor units that can have different mechanical properties. I...
Reduction in number of motor units (nMU) and fast fibre ratio (FFR) is associated with disease or at...
The electrophysiology of neuromuscular function can be analyzed at the level of the individual motor...
Muscle force is regulated by varying two main motor unit properties: the recruitment and the firing ...
Approximate entropy of isometric force is a popular measure to characterize behavioral changes acros...
Neuromuscular physiology is a vibrant research field that has recently seen exciting advances. Previ...
Neutral factors have been found to play a significant role in human muscular strength development, a...
The computational simulation of human voluntary muscle contraction is possible with EMG-driven Hill-...
Copyright © 2013 Rositsa Raikova et al.This is an open access article distributed under the Creative...
One major limitation in motor unit (MU) studies is the difficulty in assessing the properties of hig...
AbstractA dynamical model is presented as a framework for muscle activation, fatigue, and recovery. ...