activity
20162025
most citedNeural signal propagation atlas of C. elegans

163 citations · 233 across the 9 of their papers we have counts for

collaborators
Showing q-bio.NCShow all

13 papers · 1 filter

q-bio.NC2025

State-switching navigation strategies in C. elegans are beneficial for chemotaxis

Kevin S. Chen, Andrew M. Leifer, Jonathan W. Pillow

Animals employ different strategies for relating sensory input to behavioral output to navigate sensory environments, but what strategy to use, when to switch and why remain unclea…

q-bio.NC2025

Measuring amount of computation done by C.elegans using whole brain neural activity

Junang Li, Andrew M. Leifer, David H. Wolpert

Many dynamical systems found in biology, ranging from genetic circuits to the human brain to human social systems, are inherently computational. Although extensive research has exp…

q-bio.NC2024★ 4 cited

Diverging network architecture of the connectome and signaling network

Sophie Dvali, Caio Seguin, Richard Betzel +1

The connectome describes the complete set of synaptic contacts through which neurons communicate. While the architecture of the connectome has been extensivel…

q-bio.NC2023

Olfactory learning alters navigation strategies and behavioral variability in C. elegans

Kevin S. Chen, Anuj K. Sharma, Jonathan W. Pillow +1

Animals adjust their behavioral response to sensory input adaptively depending on past experiences. The flexible brain computation is crucial for survival and is of great interest…

q-bio.NC2023★ 1 cited

Continuous odor profile monitoring to study olfactory navigation in small animals

Kevin S. Chen, Rui Wu, Marc H. Gershow +1

Olfactory navigation is observed across species and plays a crucial role in locating resources for survival. In the laboratory, understanding the behavioral strategies and neural c…

q-bio.NC2023★ 15 cited

Inhibitory feedback from the motor circuit gates mechanosensory processing in C. elegans

Sandeep Kumar, Anuj K Sharma, Andrew Tran +1

Animals must integrate sensory cues with their current behavioral context to generate a suitable response. How this integration occurs is poorly understood. Previously we developed…