Most animal species are cold-blooded, and their neuronal circuits must maintain function despite environmental temperature fluctuations. The central pattern generating circuits that produce rhythmic motor patterns depend on the orderly activation of circuit neurons. We describe the effects of temperature on the pyloric rhythm of the stomatogastric ganglion of the crab, Cancer borealis. The pyloric rhythm is a triphasic motor pattern in which the Pyloric Dilator (PD), Lateral Pyloric (LP), and Pyloric (PY) neurons fire in a repeating sequence. While the frequency of the pyloric rhythm increased about 4-fold (Q(10) approximately 2.3) as the temperature was shifted from 7 degrees C to 23 degrees C, the phase relationships of the PD, LP, and PY...
In the rhythmically active pyloric circuit of the spiny lobster, the pyloric dilator (PD) neurons ar...
Many nervous systems contain rhythmically active subnet-works that interact despite oscillating at w...
Temperature perturbations affect neuronal activities by altering the intrinsic ionic conductances th...
The crab Cancer borealis undergoes large daily fluctuations in environmental temperature (8–24uC) an...
Coupled oscillatory circuits are ubiquitous in nervous systems. Given that most biological processes...
Neurons in poikilotherms must operate over the animal's natural temperature range if they are to sur...
Stable rhythmic neural activity depends on the well-coordinated interplay of synaptic and cell-intri...
Stable rhythmic neural activity depends on the well-coordinated interplay of synaptic and cell-intri...
The precise timing of action potentials generated in the nervous system is crucial for generating ad...
Many species of cold-blooded animals experience substantial and rapid fluctuations in body temperatu...
peer reviewedNeuronal activity depends on ion channels and biophysical processes that are strongly a...
Neuronal networks produce reliable functional output throughout the lifespan of an animal despite ce...
Temperature-robust timing of action potentials is essential for neuronal communication and a prerequ...
Neurons in cold-blooded animals remarkably maintain their function over a wide range of temperatures...
Action potentials are a key component of neuronal communication and their precise timing is critical...
In the rhythmically active pyloric circuit of the spiny lobster, the pyloric dilator (PD) neurons ar...
Many nervous systems contain rhythmically active subnet-works that interact despite oscillating at w...
Temperature perturbations affect neuronal activities by altering the intrinsic ionic conductances th...
The crab Cancer borealis undergoes large daily fluctuations in environmental temperature (8–24uC) an...
Coupled oscillatory circuits are ubiquitous in nervous systems. Given that most biological processes...
Neurons in poikilotherms must operate over the animal's natural temperature range if they are to sur...
Stable rhythmic neural activity depends on the well-coordinated interplay of synaptic and cell-intri...
Stable rhythmic neural activity depends on the well-coordinated interplay of synaptic and cell-intri...
The precise timing of action potentials generated in the nervous system is crucial for generating ad...
Many species of cold-blooded animals experience substantial and rapid fluctuations in body temperatu...
peer reviewedNeuronal activity depends on ion channels and biophysical processes that are strongly a...
Neuronal networks produce reliable functional output throughout the lifespan of an animal despite ce...
Temperature-robust timing of action potentials is essential for neuronal communication and a prerequ...
Neurons in cold-blooded animals remarkably maintain their function over a wide range of temperatures...
Action potentials are a key component of neuronal communication and their precise timing is critical...
In the rhythmically active pyloric circuit of the spiny lobster, the pyloric dilator (PD) neurons ar...
Many nervous systems contain rhythmically active subnet-works that interact despite oscillating at w...
Temperature perturbations affect neuronal activities by altering the intrinsic ionic conductances th...