Nitric oxide (NO) is essential for optimal myofilament function of the rat diaphragm in vitro during active shortening. Little is known about the role of NO in muscle contraction under hypoxic conditions. Hypoxia might increase the NO synthase (NOS) activity within the rat diaphragm. We hypothesized that NO plays a protective role in isotonic contractile and fatigue properties during hypoxia in vitro. The effects of the NOS inhibitor N(G)-monomethyl-l-arginine (l-NMMA), the NO scavenger hemoglobin, and the NO donor spermine NONOate on shortening velocity, power generation, and isotonic fatigability during hypoxia were evaluated (Po(2) approximately 7 kPa). l-NMMA and hemoglobin slowed the shortening velocity, depressed power generation, and...
Hypoxia impairs skeletal muscle function, but the precise mechanisms are incompletely understood. In...
Respiratory muscle dysfunction documented in sleep apnoea patients is perhaps due to oxidative stres...
In rats, the nitric oxide (NO)-synthase pathway is present in skeletal muscle, vascular smooth muscl...
Nitric oxide (NO) is essential for optimal myofilament function of the rat diaphragm in vitro during...
Hypoxia disturbs Ca(2+) regulation and increases the intracellular Ca(2+) concentration ([Ca(2+)](i)...
Hypoxia disturbs Ca2+ regulation and increases the intracellular Ca2+ concentration ([Ca2+]i), which...
Hypoxia impairs neuromuscular transmission in the rat diaphragm. In previous studies, we have shown ...
Hypoxia impairs neuromuscular transmission in the rat diaphragm. In previous studies, we have shown ...
Oxidants may play a role in hypoxia-induced respiratory muscle dysfunction. In the present study we ...
Oxidants may play a role in hypoxia-induced respiratory muscle dysfunction. In the present study we ...
Hypoxia is known to reduce isometric contractile properties of isolated rat diaphragm bundles. Its e...
Hypoxia is known to reduce isometric contractile properties of isolated rat diaphragm bundles. Its e...
Recent evidence indicates that hypoxia enhances the generation of oxidants. Little is known about th...
Recent evidence indicates that hypoxia enhances the generation of oxidants. Little is known about th...
Hypoxia impairs skeletal muscle function, but the precise mechanisms are incompletely understood. In...
Hypoxia impairs skeletal muscle function, but the precise mechanisms are incompletely understood. In...
Respiratory muscle dysfunction documented in sleep apnoea patients is perhaps due to oxidative stres...
In rats, the nitric oxide (NO)-synthase pathway is present in skeletal muscle, vascular smooth muscl...
Nitric oxide (NO) is essential for optimal myofilament function of the rat diaphragm in vitro during...
Hypoxia disturbs Ca(2+) regulation and increases the intracellular Ca(2+) concentration ([Ca(2+)](i)...
Hypoxia disturbs Ca2+ regulation and increases the intracellular Ca2+ concentration ([Ca2+]i), which...
Hypoxia impairs neuromuscular transmission in the rat diaphragm. In previous studies, we have shown ...
Hypoxia impairs neuromuscular transmission in the rat diaphragm. In previous studies, we have shown ...
Oxidants may play a role in hypoxia-induced respiratory muscle dysfunction. In the present study we ...
Oxidants may play a role in hypoxia-induced respiratory muscle dysfunction. In the present study we ...
Hypoxia is known to reduce isometric contractile properties of isolated rat diaphragm bundles. Its e...
Hypoxia is known to reduce isometric contractile properties of isolated rat diaphragm bundles. Its e...
Recent evidence indicates that hypoxia enhances the generation of oxidants. Little is known about th...
Recent evidence indicates that hypoxia enhances the generation of oxidants. Little is known about th...
Hypoxia impairs skeletal muscle function, but the precise mechanisms are incompletely understood. In...
Hypoxia impairs skeletal muscle function, but the precise mechanisms are incompletely understood. In...
Respiratory muscle dysfunction documented in sleep apnoea patients is perhaps due to oxidative stres...
In rats, the nitric oxide (NO)-synthase pathway is present in skeletal muscle, vascular smooth muscl...