How neurons are capable of decoding stimulus intensity and translate this information into complex behavioral outputs is poorly defined. Here, we demonstrate that the C. elegans interneuron AIB regulates two types of behaviors: reversal initiation and feeding suppression in response to different concentrations of quinine. Low concentrations of quinine are decoded in AIB by a low-threshold, fast-inactivation glutamate receptor GLR-1 and translated into reversal initiation. In contrast, high concentrations of quinine are decoded by a high-threshold, slow-inactivation glutamate receptor GLR-5 in AIB. After activation, GLR-5 evokes sustained Ca2+ release from the inositol 1,4,5-trisphosphate (IP3)-sensitive Ca2+ stores and triggers neuropeptide...
Optimization of the types and timing of avoidance behaviors depending on the intensity of a noxious ...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
AbstractHow simple neuronal circuits control behavior is not well understood at the molecular or gen...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
AbstractThe C. elegans polymodal ASH sensory neurons detect mechanical, osmotic, and chemical stimul...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
Thesis (Ph.D.)--University of Washington, 2019In order to respond to changing environments and fluct...
Cell surface immunoglobulin superfamily (IgSF) proteins play important roles in the development and ...
An important function of the nervous system is to respond to changes in the environment. The nematod...
Brains organize behavior and physiology to optimize the response to threats or opportunities. We dis...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
Glutamatergic neurotransmission is evolutionarily conserved across animal phyla. A major class of gl...
Glutamatergic neurotransmission is evolutionarily conserved across animal phyla. A major class of gl...
SummaryModel organisms usually possess a small nervous system but nevertheless execute a large array...
Brains organize behavior and physiology to optimize the response to threats or opportunities. We dis...
Optimization of the types and timing of avoidance behaviors depending on the intensity of a noxious ...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
AbstractHow simple neuronal circuits control behavior is not well understood at the molecular or gen...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
AbstractThe C. elegans polymodal ASH sensory neurons detect mechanical, osmotic, and chemical stimul...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
Thesis (Ph.D.)--University of Washington, 2019In order to respond to changing environments and fluct...
Cell surface immunoglobulin superfamily (IgSF) proteins play important roles in the development and ...
An important function of the nervous system is to respond to changes in the environment. The nematod...
Brains organize behavior and physiology to optimize the response to threats or opportunities. We dis...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
Glutamatergic neurotransmission is evolutionarily conserved across animal phyla. A major class of gl...
Glutamatergic neurotransmission is evolutionarily conserved across animal phyla. A major class of gl...
SummaryModel organisms usually possess a small nervous system but nevertheless execute a large array...
Brains organize behavior and physiology to optimize the response to threats or opportunities. We dis...
Optimization of the types and timing of avoidance behaviors depending on the intensity of a noxious ...
The neural networks that regulate animal behaviors are encoded in terms of neuronal excitation and i...
AbstractHow simple neuronal circuits control behavior is not well understood at the molecular or gen...