Understanding how information about external stimuli is transformed into behavior is one of the central goals of neuroscience. Here we characterize the information flow through a com-plete sensorimotor circuit: from stimulus, to sensory neurons, to interneurons, to motor neu-rons, to muscles, to motion. Specifically, we apply a recently developed framework for quantifying information flow to a previously published ensemble of models of salt klinotaxis in the nematode worm Caenorhabditis elegans. Despite large variations in the neural parameters of individual circuits, we found that the overall information flow architecture cir-cuit is remarkably consistent across the ensemble. This suggests structural connectivity is not necessarily predict...
We approach the C. elegans connectome as an information processing network that receives input from ...
The complete structure and connectivity of the Caenorhabditis elegans nervous system (“mind of...
The detailed knowledge of C. elegans connectome for 3 decades has not contributed dramatically to ou...
Understanding how information about external stimuli is transformed into behavior is one of the cent...
<div><p>Understanding how information about external stimuli is transformed into behavior is one of ...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
The nervous system is a complex organ that functions in most metazoans to sense and respond to a con...
We approach the C. elegans connectome as an information processing network that receives input from ...
Despite considerable effort over the past several decades, it is unclear how an organism’s nervous s...
We approach the C. elegans connectome as an information processing network that receives input from ...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
Caenorhabditis elegans, a soil dwelling nematode, is evolutionarily rudimentary and con-tains only *...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
We approach the C. elegans connectome as an information processing network that receives input from ...
The complete structure and connectivity of the Caenorhabditis elegans nervous system (“mind of...
The detailed knowledge of C. elegans connectome for 3 decades has not contributed dramatically to ou...
Understanding how information about external stimuli is transformed into behavior is one of the cent...
<div><p>Understanding how information about external stimuli is transformed into behavior is one of ...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
The nervous system is a complex organ that functions in most metazoans to sense and respond to a con...
We approach the C. elegans connectome as an information processing network that receives input from ...
Despite considerable effort over the past several decades, it is unclear how an organism’s nervous s...
We approach the C. elegans connectome as an information processing network that receives input from ...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
Caenorhabditis elegans, a soil dwelling nematode, is evolutionarily rudimentary and con-tains only *...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
We approach the C. elegans connectome as an information processing network that receives input from ...
The complete structure and connectivity of the Caenorhabditis elegans nervous system (“mind of...
The detailed knowledge of C. elegans connectome for 3 decades has not contributed dramatically to ou...