AbstractIn olfactory neurons from Caudiverbera caudiverbera, a mixture of putrid odorants trigger an inhibitory, K+-selective current and a hyperpolarizing receptor potential. The current-voltage relation resembles that of a Ca2+-activated K+ conductance; their amplitude depends on extracellular Ca2+. 10 nM charibdotoxin, a blocker of K+-selective channels, including Ca2+-activated ones, reversibly abolished inhibitory currents and receptor potentials. Focal stimulation demonstrates that the underlying transduction mechanism is confined to the cilia. This represents the first evidence for inhibitory responses in vertebrate olfactory cells mediated by a ciliary CTX-sensitive K+ conductance, most likely a Ca2+-activated one
In vertebrate olfactory receptor neurons, sensory cilia transduce odor stimuli into changes in neuro...
The putative role of nitric oxide (NO) in the physiology of olfactory receptor neurons (ORNs) is con...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...
In olfactory neurons from Caudiverbera caudiverbera, a mixture of putrid odorants trigger an inhibit...
It has previously been proposed that a Ca2+-dependent K + conductance is implicated in the inhibitor...
Odor stimulation may excite or inhibit olfactory receptor neurons (ORNs). It is well established tha...
Odorant responses of isolated olfactory neurons from the toad Caudiverbera caudiverbera were monitor...
Olfactory cilia contain cyclic nucleotide-gated and Ca2+-dependent Cl- conductances that underlie ex...
AbstractOlfactory cilia contain cyclic nucleotide-gated and Ca2+-dependent Cl− conductances that und...
AbstractIn toad olfactory neurons, a putrid odorant mixture inducing inhibitory responses increases ...
In toad olfactory neurons, a putrid odorant mixture inducing inhibitory responses increases Ca2+-act...
Background: Odor transduction, occurring in the chemosensory cilia of vertebrate olfactory sensory n...
Vertebrate olfactory receptor neurons (ORNs) exhibit odor-induced increases in action potential firi...
Nitric oxide (NO) activates a K+ current in dissociated amphibian olfactory receptor neurons. Using ...
AbstractThe olfactory system is thought to accomplish odor adaptation through the ciliary transducti...
In vertebrate olfactory receptor neurons, sensory cilia transduce odor stimuli into changes in neuro...
The putative role of nitric oxide (NO) in the physiology of olfactory receptor neurons (ORNs) is con...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...
In olfactory neurons from Caudiverbera caudiverbera, a mixture of putrid odorants trigger an inhibit...
It has previously been proposed that a Ca2+-dependent K + conductance is implicated in the inhibitor...
Odor stimulation may excite or inhibit olfactory receptor neurons (ORNs). It is well established tha...
Odorant responses of isolated olfactory neurons from the toad Caudiverbera caudiverbera were monitor...
Olfactory cilia contain cyclic nucleotide-gated and Ca2+-dependent Cl- conductances that underlie ex...
AbstractOlfactory cilia contain cyclic nucleotide-gated and Ca2+-dependent Cl− conductances that und...
AbstractIn toad olfactory neurons, a putrid odorant mixture inducing inhibitory responses increases ...
In toad olfactory neurons, a putrid odorant mixture inducing inhibitory responses increases Ca2+-act...
Background: Odor transduction, occurring in the chemosensory cilia of vertebrate olfactory sensory n...
Vertebrate olfactory receptor neurons (ORNs) exhibit odor-induced increases in action potential firi...
Nitric oxide (NO) activates a K+ current in dissociated amphibian olfactory receptor neurons. Using ...
AbstractThe olfactory system is thought to accomplish odor adaptation through the ciliary transducti...
In vertebrate olfactory receptor neurons, sensory cilia transduce odor stimuli into changes in neuro...
The putative role of nitric oxide (NO) in the physiology of olfactory receptor neurons (ORNs) is con...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...