The process of sensing, transducing, and acting on environmental cues is critical to normal physiologic function. Furthermore, dysfunction of this process can lead to the development of disease. This is especially true of the homeostatic mechanisms that have evolved to maintain the carriage of O2 to respiring tissues during acute hypoxic challenge. During periods of reduced O2 availability, three major mechanisms act conjointly to increase ventilation and optimize the ventilation-perfusion ratio throughout the lung by directing pulmonary blood flow to better ventilated areas of the lung. These mechanisms are as follows: (1) increased carotid sinus nerve discharge rate to the respiratory centers of the brain, (2) intrinsic hypoxic vasoconstr...
Purpose of reviewHypoxic pulmonary vasoconstriction (HPV) is driven by the intrinsic response to hyp...
In order to maintain tissue partial pressure of oxygen (P-O2) within physiological limits, vital hom...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...
The process of sensing, transducing, and acting on environmental cues is critical to normal physiolo...
Airway neuroepithelial bodies sense changes in inspired O2, whereas arterial O2 levels are monitored...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
AbstractThe ability to adapt to changes in the availability of O2 provides a critical advantage to a...
Producción CientíficaOxygen-sensing and transduction in purposeful responses in cells and organisms ...
This chapter discusses two specific cell lines—PC12 and H146—as useful model systems for studying ar...
Carotid bodies (CBs) are secondary sensory receptors in which the sensing elements, chemoreceptor ce...
Accumulating evidence suggests that neuroepithelial bodies are airway O2 sensors. Recently, we have ...
The combination of studies in native tissues and immortalised model systems during the last decade h...
Oxygen (O2) is fundamental for cell and whole-body homeostasis. Our understanding of the adaptive pr...
in the central nervous system. J Appl Physiol 96: 367–374, 2004; 10.1152/ japplphysiol.00831.2003.—T...
Detecting and reacting to acute perturbation in the partial pressure of atmospheric oxygen (pO2), pa...
Purpose of reviewHypoxic pulmonary vasoconstriction (HPV) is driven by the intrinsic response to hyp...
In order to maintain tissue partial pressure of oxygen (P-O2) within physiological limits, vital hom...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...
The process of sensing, transducing, and acting on environmental cues is critical to normal physiolo...
Airway neuroepithelial bodies sense changes in inspired O2, whereas arterial O2 levels are monitored...
Oxygen sensing in many tissues is crucially dependent upon hypoxia-evoked suppression of K+ channel ...
AbstractThe ability to adapt to changes in the availability of O2 provides a critical advantage to a...
Producción CientíficaOxygen-sensing and transduction in purposeful responses in cells and organisms ...
This chapter discusses two specific cell lines—PC12 and H146—as useful model systems for studying ar...
Carotid bodies (CBs) are secondary sensory receptors in which the sensing elements, chemoreceptor ce...
Accumulating evidence suggests that neuroepithelial bodies are airway O2 sensors. Recently, we have ...
The combination of studies in native tissues and immortalised model systems during the last decade h...
Oxygen (O2) is fundamental for cell and whole-body homeostasis. Our understanding of the adaptive pr...
in the central nervous system. J Appl Physiol 96: 367–374, 2004; 10.1152/ japplphysiol.00831.2003.—T...
Detecting and reacting to acute perturbation in the partial pressure of atmospheric oxygen (pO2), pa...
Purpose of reviewHypoxic pulmonary vasoconstriction (HPV) is driven by the intrinsic response to hyp...
In order to maintain tissue partial pressure of oxygen (P-O2) within physiological limits, vital hom...
© 2021 by the authorsOxygen is an essential requirement for metabolism in mammals and many other ani...