Area of research
Cellular and Molecular Neuroscience · Global and Planetary Change
Research interest
Research focused on Aplysia and Neuroscience, with related work in Neuropeptide, Interneuron, Peptide. Notable publications include 'A d -Amino Acid-Containing Neuropeptide Discovery Funnel', 'Molecular and Physiological Characterization of a Receptor for d -Amino Acid-Containing Neuropeptides', and 'Discovery of leucokinin-like neuropeptides that modulate a specific parameter of feeding motor programs in the molluscan model, Aplysia'.
A Single Central Pattern Generator for the Control of a Locomotor Rolling Wave in Mollusc<i>Aplysia</i>
Molecular Characterization of Two Wamide Neuropeptide Signaling Systems in Mollusk <i>Aplysia</i>
Identification of an allatostatin C signaling system in mollusc Aplysia
AI protein structure prediction-based modeling and mutagenesis of a protostome receptor and peptide ligands reveal key residues for their interaction
Synaptic mechanisms for motor variability in a feedforward network
Molecular and Physiological Characterization of a Receptor for <scp>d</scp>-Amino Acid-Containing Neuropeptides
Newly Identified Aplysia SPTR-Gene Family-Derived Peptides: Localization and Function
Discovery of leucokinin-like neuropeptides that modulate a specific parameter of feeding motor programs in the molluscan model, Aplysia
A clarifying method that improves imaging of Aplysia ganglia.
PubMed 2017cited by 0position: middle
A <scp>d</scp>-Amino Acid-Containing Neuropeptide Discovery Funnel
Aplysia Locomotion: Network and Behavioral Actions of GdFFD, a D-Amino Acid-Containing Neuropeptide
Functional Characterization of a Vesicular Glutamate Transporter in an Interneuron That Makes Excitatory and Inhibitory Synaptic Connections in a Molluscan Neural Circuit