International audienceAbstract Background To describe the effect of mechanical ventilation on diaphragm mitochondrial oxygen consumption, ATP production, reactive oxygen species (ROS) generation, and cytochrome c oxidase activity and content, and their relationship to diaphragm strength in an experimental model of sepsis. Methods A cecal ligation and puncture (CLP) protocol was performed in 12 rats while 12 controls underwent sham operation. Half of the rats in each group were paralyzed and mechanically ventilated. We performed blood gas analysis and lactic acid assays 6 h after surgery. Afterwards, we measured diaphragm strength and mitochondrial oxygen consumption, ATP and ROS generation, and cytochrome c oxidase activity. We also measure...
<p><b>Tumor necrosis factor (TNF)-α (Panel A), interleukin (IL)-1β (Panel B) and IL-6 (Panel C) prot...
Redox status of the unloaded diaphragm 1 Oxidative stress is an important mediator of diaphragm musc...
OBJECTIVE:: Controlled mechanical ventilation results in diaphragmatic dysfunction, and oxidative st...
International audienceAbstract Background To describe the effect of mechanical ventilation on diaphr...
International audienceBACKGROUND:Short-term mechanical ventilation (MV) protects against sepsis-indu...
BACKGROUND:Short-term mechanical ventilation (MV) protects against sepsis-induced diaphragmatic dysf...
WHAT WE ALREADY KNOW ABOUT THIS TOPIC: Diaphragm dysfunction and atrophy develop during controlled m...
Diaphragm dysfunction is prevalent in the progress of respiratory dysfunction in various critical il...
Introduction: Diaphragm weakness induced by prolonged mechanical ventilation may contribute to diffi...
Mechanical ventilation (MV) is a life-saving intervention in patients in respiratory failure. Unfort...
Mechanical ventilation (MV) results in the rapid development of ventilator-induced diaphragm dysfunc...
Mechanical ventilation (MV) is essential for patients with sepsis-related respiratory failure but ca...
Background: Mechanical ventilation (MV) induces diaphragmatic muscle fiber atrophy and contractile d...
<p><b>Tumor necrosis factor (TNF)-α (Panel A), interleukin (IL)-1β (Panel B) and IL-6 (Panel C) prot...
Redox status of the unloaded diaphragm 1 Oxidative stress is an important mediator of diaphragm musc...
OBJECTIVE:: Controlled mechanical ventilation results in diaphragmatic dysfunction, and oxidative st...
International audienceAbstract Background To describe the effect of mechanical ventilation on diaphr...
International audienceBACKGROUND:Short-term mechanical ventilation (MV) protects against sepsis-indu...
BACKGROUND:Short-term mechanical ventilation (MV) protects against sepsis-induced diaphragmatic dysf...
WHAT WE ALREADY KNOW ABOUT THIS TOPIC: Diaphragm dysfunction and atrophy develop during controlled m...
Diaphragm dysfunction is prevalent in the progress of respiratory dysfunction in various critical il...
Introduction: Diaphragm weakness induced by prolonged mechanical ventilation may contribute to diffi...
Mechanical ventilation (MV) is a life-saving intervention in patients in respiratory failure. Unfort...
Mechanical ventilation (MV) results in the rapid development of ventilator-induced diaphragm dysfunc...
Mechanical ventilation (MV) is essential for patients with sepsis-related respiratory failure but ca...
Background: Mechanical ventilation (MV) induces diaphragmatic muscle fiber atrophy and contractile d...
<p><b>Tumor necrosis factor (TNF)-α (Panel A), interleukin (IL)-1β (Panel B) and IL-6 (Panel C) prot...
Redox status of the unloaded diaphragm 1 Oxidative stress is an important mediator of diaphragm musc...
OBJECTIVE:: Controlled mechanical ventilation results in diaphragmatic dysfunction, and oxidative st...