Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used for chemical denervation of peripheral O2 receptors in in vivo studies of respiratory control. The underlying assumption whenever using hyperoxia is that there are no direct effects of molecular O2 and reactive O2species (ROS) on brain stem function. In addition, control superfusates used routinely for in vitro studies of neurons in brain slices are, in fact, hyperoxic. Again, the assumption is that there are no direct effects of O2 and ROS on neuronal activity. Research contradicts this assumption by demonstrating that O2has central effects on the brain stem respiratory centers and several effects on neurons in respiratory control areas; th...
Aims: Hyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral f...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Aims: Hyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral f...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia is a popular model of oxidative stress. However, hyperoxic gas mixtures are routinely used...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Hyperoxia, a model of oxidative stress, can disrupt brain stem function, presumably by an increase i...
Aims: Hyperoxic breathing might lead to redox imbalance and signaling changes that affect cerebral f...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...
We previously reported that hyperbaric hyperoxia stimulates firing rate of putative CO2-chemorecepto...