Title of article :
The Role of Parvalbumin, Sarcoplasmatic Reticulum Calcium Pump Rate, Rates of Cross-Bridge Dynamics, and Ryanodine Receptor Calcium Current on Peripheral Muscle Fatigue: A Simulation Study
Author/Authors :
Röhrle, Oliver University of Stuttgart - Stuttgart, Germany , Neumann, Verena University of Stuttgart - Stuttgart, Germany , Heidlauf, Thomas University of Stuttgart - Stuttgart, Germany
Abstract :
A biophysical model of the excitation-contraction pathway, which has previously been validated for slow-twitch and fast-twitch
skeletal muscles, is employed to investigate key biophysical processes leading to peripheral muscle fatigue. Special emphasis hereby
is on investigating how the model’s original parameter sets can be interpolated such that realistic behaviour with respect to
contraction time and fatigue progression can be obtained for a continuous distribution of the model’s parameters across the muscle
units, as found for the functional properties of muscles. The parameters are divided into 5 groups describing (i) the sarcoplasmatic
reticulum calcium pump rate, (ii) the cross-bridge dynamics rates, (iii) the ryanodine receptor calcium current, (iv) the rates
of binding of magnesium and calcium ions to parvalbumin and corresponding dissociations, and (v) the remaining processes.
The simulations reveal that the first two parameter groups are sensitive to contraction time but not fatigue, the third parameter
group affects both considered properties, and the fourth parameter group is only sensitive to fatigue progression. Hence, within the
scope of the underlying model, further experimental studies should investigate parvalbumin dynamics and the ryanodine receptor
calcium current to enhance the understanding of peripheral muscle fatigue.
Keywords :
Cross-Bridge , Ryanodine , Simulation , Calcium
Journal title :
Computational and Mathematical Methods in Medicine