Complex mechanisms that detect changes in brainstem parenchymal PCO2/[H+] and trigger adaptive changes in lung ventilation are responsible for central respiratory CO2 chemosensitivity. Previous studies of chemosensory signalling pathways suggest that at the level of the ventral surface of the medulla oblongata (VMS), CO2-induced changes in ventilation are (at least in part) mediated by the release and actions of ATP and/or acetylcholine (ACh). Here we performed simultaneous real-time biosensor recordings of CO2-induced ATP and ACh release from the VMS in vivo and in vitro, to test the hypothesis that central respiratory CO2 chemosensory transduction involves simultaneous recruitment of purinergic and cholinergic signalling pathways. In anae...
In patients with acute respiratory failure, gas exchange is impaired due to the accumulation of flui...
The Breuer–Hering inflation reflex is initiated by activation of the slowly adapting pulmonary stret...
Brainstem regulation of CO2 chemoreception is essential in matching ventilation to the metabolic dem...
Complex mechanisms that detect changes in brainstem parenchymal PCO2/[H+] and trigger adaptive chang...
Recent evidence suggests that ATP is a mediator of central (within the ventral surface of the medull...
Arterial P-CO2, a major determinant of breathing, is detected by chemosensors located in the brainst...
Extracellular signalling by the purine nucleotide ATP has long been associated with sensory function...
Central chemoreception is the mechanism by which the brain regulates breathing in response to change...
P2X2 receptor subunits of the ATP-gated ion channels are expressed by physiologically identified res...
Locus coeruleus (LC) noradrenergic neurons are chemosensitive to CO2 and pH in mammals and amphibian...
AbstractöThe ventrolateral medulla has a critical role in the generation and patterning of respirati...
AbstractThe medullary raphe (MR) is a putative central chemoreceptor site, contributing to hypercapn...
The medullary raphe (MR) is a putative central chemoreceptor site, contributing to hypercapnic respi...
<p>(<b>A</b>) Representative recordings obtained sequentially in the same experiment illustrating th...
Multiple brainstem sites are proposed to contribute to central respiratory chemosensitivity, however...
In patients with acute respiratory failure, gas exchange is impaired due to the accumulation of flui...
The Breuer–Hering inflation reflex is initiated by activation of the slowly adapting pulmonary stret...
Brainstem regulation of CO2 chemoreception is essential in matching ventilation to the metabolic dem...
Complex mechanisms that detect changes in brainstem parenchymal PCO2/[H+] and trigger adaptive chang...
Recent evidence suggests that ATP is a mediator of central (within the ventral surface of the medull...
Arterial P-CO2, a major determinant of breathing, is detected by chemosensors located in the brainst...
Extracellular signalling by the purine nucleotide ATP has long been associated with sensory function...
Central chemoreception is the mechanism by which the brain regulates breathing in response to change...
P2X2 receptor subunits of the ATP-gated ion channels are expressed by physiologically identified res...
Locus coeruleus (LC) noradrenergic neurons are chemosensitive to CO2 and pH in mammals and amphibian...
AbstractöThe ventrolateral medulla has a critical role in the generation and patterning of respirati...
AbstractThe medullary raphe (MR) is a putative central chemoreceptor site, contributing to hypercapn...
The medullary raphe (MR) is a putative central chemoreceptor site, contributing to hypercapnic respi...
<p>(<b>A</b>) Representative recordings obtained sequentially in the same experiment illustrating th...
Multiple brainstem sites are proposed to contribute to central respiratory chemosensitivity, however...
In patients with acute respiratory failure, gas exchange is impaired due to the accumulation of flui...
The Breuer–Hering inflation reflex is initiated by activation of the slowly adapting pulmonary stret...
Brainstem regulation of CO2 chemoreception is essential in matching ventilation to the metabolic dem...