The transverse tubular (t)-system of skeletal muscle couples sarcolemmal electrical excitation with contraction deep within the fibre. Exercise, pathology and the composition of the extracellular fluid (ECF) can alter t-system volume (t-volume). T-volume changes are thought to contribute to fatigue, rhabdomyolysis and disruption of excitation-contraction coupling. However, mechanisms that underlie t-volume changes are poorly understood. A multicompartment, history-independent computer model of rat skeletal muscle was developed to define the minimum conditions for t-volume stability. It was found that the t-system tends to swell due to net ionic fluxes from the ECF across the access resistance. However, a stable t-volume is possible when thi...
Periods of low frequency stimulation are known to increase the net Ca uptake in skeletal muscle but ...
A method was developed that allows conversion of changes in maximum Ca2+-dependent fluorescence of a...
AbstractChronic low-frequency stimulation of rabbit tibialis anterior muscle over a 24-h period indu...
The fundamental cellular parameters of cell volume (Vc) and resting membrane potential (Em) profound...
The purpose of the current investigation was to establish an in-l'itro skeletal muscle model to stu...
The tubular (t-) system of skeletal muscle is an internalization of the plasma membrane that maintai...
Skeletal muscle fibres are very large and elongated. In response to excitation there must be a rapid...
The causative factors in muscle fatigue are multiple, and vary depending on the intensity and durati...
Abstract High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([C...
Capacity transients and slow asymmetric charge-movements are measured in frog skeletal muscle using ...
Session - E33C Free Communacation/Slide Muscle InjuryPURPOSE:To examine the morphology and functiona...
This study investigated the regulation of carbohydrate metabolism through changes in skeletal muscle...
Hypertonic media causes cells to shrink due to water loss through aquaporin channels. After acute sh...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
Ultrastructural features of tubular-sarcoplasmic (T-SR) triad junctions and measures of cell volume ...
Periods of low frequency stimulation are known to increase the net Ca uptake in skeletal muscle but ...
A method was developed that allows conversion of changes in maximum Ca2+-dependent fluorescence of a...
AbstractChronic low-frequency stimulation of rabbit tibialis anterior muscle over a 24-h period indu...
The fundamental cellular parameters of cell volume (Vc) and resting membrane potential (Em) profound...
The purpose of the current investigation was to establish an in-l'itro skeletal muscle model to stu...
The tubular (t-) system of skeletal muscle is an internalization of the plasma membrane that maintai...
Skeletal muscle fibres are very large and elongated. In response to excitation there must be a rapid...
The causative factors in muscle fatigue are multiple, and vary depending on the intensity and durati...
Abstract High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([C...
Capacity transients and slow asymmetric charge-movements are measured in frog skeletal muscle using ...
Session - E33C Free Communacation/Slide Muscle InjuryPURPOSE:To examine the morphology and functiona...
This study investigated the regulation of carbohydrate metabolism through changes in skeletal muscle...
Hypertonic media causes cells to shrink due to water loss through aquaporin channels. After acute sh...
High-force eccentric exercise results in sustained increases in cytoplasmic Ca2+ levels ([Ca2+]cyto)...
Ultrastructural features of tubular-sarcoplasmic (T-SR) triad junctions and measures of cell volume ...
Periods of low frequency stimulation are known to increase the net Ca uptake in skeletal muscle but ...
A method was developed that allows conversion of changes in maximum Ca2+-dependent fluorescence of a...
AbstractChronic low-frequency stimulation of rabbit tibialis anterior muscle over a 24-h period indu...