Locomotion requires coordinated motor activity throughout an animal@s body. In both vertebrates and invertebrates, chains of coupled central pattern generators (CPGs) are commonly evoked to explain local rhythmic behaviors. In C. elegans, we report that proprioception within the motor circuit is responsible for propagating and coordinating rhythmic undulatory waves from head to tail during forward movement. Proprioceptive coupling between adjacent body regions transduces rhythmic movement initiated near the head into bending waves driven along the body by a chain of reflexes. Using optogenetics and calcium imaging to manipulate and monitor motor circuit activity of moving C. elegans held in microfluidic devices, we found that the B-type cho...
This paper presents a simple yet biologicallygrounded model for the neural control of Caenorhabditi...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
C. elegans locomotes in an undulatory fashion, generating thrust by propagating dorsoventral bends a...
SummaryLocomotion requires coordinated motor activity throughout an animal’s body. In both vertebrat...
Coordinated rhythmic movements are ubiquitous in animal behavior. In many organisms, chains of neura...
Animal locomotion is mediated by a sensory system referred to as proprioception. Defects in the prop...
<div><p>Animal locomotion is mediated by a sensory system referred to as proprioception. Defects in ...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
Animals use a form of sensory feedback termed proprioception to monitor their body position and modi...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Locomotion circuits developed in simple animals, and circuit motifs further evolved in higher animal...
Cell- or network-driven oscillators underlie motor rhythmicity. The identity of C. elegans oscillato...
Presented on November 19, 2012 from 2 – 3:00 pm in Marcus Nanotechnology Conference room 1116.Runti...
Understanding the neuronal control of movement has been a central goal of neuroscience for decades. ...
Understanding the neuronal control of movement has been a central goal of neuroscience for decades. ...
This paper presents a simple yet biologicallygrounded model for the neural control of Caenorhabditi...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
C. elegans locomotes in an undulatory fashion, generating thrust by propagating dorsoventral bends a...
SummaryLocomotion requires coordinated motor activity throughout an animal’s body. In both vertebrat...
Coordinated rhythmic movements are ubiquitous in animal behavior. In many organisms, chains of neura...
Animal locomotion is mediated by a sensory system referred to as proprioception. Defects in the prop...
<div><p>Animal locomotion is mediated by a sensory system referred to as proprioception. Defects in ...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
Animals use a form of sensory feedback termed proprioception to monitor their body position and modi...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Locomotion circuits developed in simple animals, and circuit motifs further evolved in higher animal...
Cell- or network-driven oscillators underlie motor rhythmicity. The identity of C. elegans oscillato...
Presented on November 19, 2012 from 2 – 3:00 pm in Marcus Nanotechnology Conference room 1116.Runti...
Understanding the neuronal control of movement has been a central goal of neuroscience for decades. ...
Understanding the neuronal control of movement has been a central goal of neuroscience for decades. ...
This paper presents a simple yet biologicallygrounded model for the neural control of Caenorhabditi...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
C. elegans locomotes in an undulatory fashion, generating thrust by propagating dorsoventral bends a...