Area of research
Aging · Endocrine and Autonomic Systems
Research interest
Research interests include Genetics, Aging, and Longevity in Model Organisms, Circadian rhythm and melatonin, Bacterial Genetics and Biotechnology, and Neural dynamics and brain function.
Intricate response dynamics enhances stimulus discrimination in the resource-limited C. elegans chemosensory system
Aberrant Positions of the Chemosensory Neurons in the Neurotransmitter-Release Mutant unc-13
Principles for coding associative memories in a compact neural network
Inheritance of associative memories and acquired cellular changes in C. elegans
The synaptic organization in the <i>Caenorhabditis elegans</i> neural network suggests significant local compartmentalized computations
A negative feedback loop in the GPCR pathway underlies efficient coding of external stimuli
A Memory Circuit for Coping with Impending Adversity
Irrational behavior in C. elegans arises from asymmetric modulatory effects within single sensory neurons
Concerted pulsatile and graded neural dynamics enables efficient chemotaxis in C. elegans
Salient experiences are represented by unique transcriptional signatures in the mouse brain
A multi-animal tracker for studying complex behaviors
Serotonin promotes exploitation in complex environments by accelerating decision-making
The C. elegans Connectome Consists of Homogenous Circuits with Defined Functional Roles
Hierarchical sparse coding in the sensory system of <i>Caenorhabditis elegans</i>
The Response to High CO2 Levels Requires the Neuropeptide Secretion Component HID-1 to Promote Pumping Inhibition
Measuring the effects of high CO2 levels in Caenorhabditis elegans
A Modular Library of Small Molecule Signals Regulates Social Behaviors in Caenorhabditis elegans