Neural components of the circuits that transform sensory cues into changes in motor activities are largely unknown. Several recent studies have now functionally mapped the sensorimotor circuits responsible for locomotion behaviors under defined environmental conditions in the nematode Caenorhabditis elegans
Multisensory integration refers to sensory inputs from different sensory modalities being processed ...
Maneuverability in animals is unparalleled when compared to the most maneuverable human-engineered m...
In animal locomotion a tradeoff exists between stereotypy and flexibility: fast long-distance travel...
Neural components of the circuits that transform sensory cues into changes in motor activities are l...
SummaryC. elegans is widely used to dissect how neural circuits and genes generate behavior. During ...
SummaryBrain circuits endow behavioral flexibility. Here, we study circuits encoding flexible chemot...
SummaryAnimals have a remarkable ability to track dynamic sensory information. For example, the nema...
The activity of an animal’s brain contains information about that animal’s actions and movements. We...
AbstractHow simple neuronal circuits control behavior is not well understood at the molecular or gen...
With a reconstructed and extensively characterized neural circuit, Caenorhabditis elegans is a fasci...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Brain circuits endow behavioral flexibility. Here, we study circuits encoding flexible chemotaxis in...
To survive, animals must select and execute appropriate actions in response to cues in rich, variabl...
We develop an artificial neural circuit for contour tracking and navigation inspired by the chemotax...
Caenorhabditis elegans is a promising organism for trying to understand how nervous systems generate...
Multisensory integration refers to sensory inputs from different sensory modalities being processed ...
Maneuverability in animals is unparalleled when compared to the most maneuverable human-engineered m...
In animal locomotion a tradeoff exists between stereotypy and flexibility: fast long-distance travel...
Neural components of the circuits that transform sensory cues into changes in motor activities are l...
SummaryC. elegans is widely used to dissect how neural circuits and genes generate behavior. During ...
SummaryBrain circuits endow behavioral flexibility. Here, we study circuits encoding flexible chemot...
SummaryAnimals have a remarkable ability to track dynamic sensory information. For example, the nema...
The activity of an animal’s brain contains information about that animal’s actions and movements. We...
AbstractHow simple neuronal circuits control behavior is not well understood at the molecular or gen...
With a reconstructed and extensively characterized neural circuit, Caenorhabditis elegans is a fasci...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Brain circuits endow behavioral flexibility. Here, we study circuits encoding flexible chemotaxis in...
To survive, animals must select and execute appropriate actions in response to cues in rich, variabl...
We develop an artificial neural circuit for contour tracking and navigation inspired by the chemotax...
Caenorhabditis elegans is a promising organism for trying to understand how nervous systems generate...
Multisensory integration refers to sensory inputs from different sensory modalities being processed ...
Maneuverability in animals is unparalleled when compared to the most maneuverable human-engineered m...
In animal locomotion a tradeoff exists between stereotypy and flexibility: fast long-distance travel...