Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neurobiology and Insect Physiology Research, Neural dynamics and brain function, Photoreceptor and optogenetics research, and Neuropeptides and Animal Physiology.
A brain-gut excitatory peptide/CCHamide homolog regulates satiation and motivational state transitions in the Aplysia feeding circuit
Synaptic and intrinsic plasticity mediated by CCK-type signaling coordinates behavioral changes during motivational state shifts
Identification of a G Protein-Coupled Receptor for Buccalin-Type Peptides in the Mollusk <i>Aplysia</i>: Evolutionary Insights into Neuropeptide Signaling
Two C-terminal isoforms of Aplysia tachykinin–related peptide receptors exhibit phosphorylation-dependent and phosphorylation-independent desensitization mechanisms
A Single Central Pattern Generator for the Control of a Locomotor Rolling Wave in Mollusc<i>Aplysia</i>
Variable task switching in the feeding network of <i>Aplysia</i> is a function of differential command input
Persistent modulatory actions and task switching in the feeding network of Aplysia
Convergent effects of neuropeptides on the feeding central pattern generator of <i>Aplysia californica</i>
The Complement of Projection Neurons Activated Determines the Type of Feeding Motor Program in Aplysia
An Anticipatory Circuit Modification That Modifies Subsequent Task Switching
Synaptic mechanisms for motor variability in a feedforward network
Background calcium induced by subthreshold depolarization modifies homosynaptic facilitation at a synapse in Aplysia
Network Degeneracy and the Dynamics of Task Switching in the Feeding Circuit in<i>Aplysia</i>
Persistent effects of cyclic adenosine monophosphate are directly responsible for maintaining a neural network state
Peptide Cotransmitters as Dynamic, Intrinsic Modulators of Network Activity
Newly Identified Aplysia SPTR-Gene Family-Derived Peptides: Localization and Function
Cellular Effects of Repetition Priming in the <i>Aplysia</i> Feeding Network Are Suppressed during a Task-Switch But Persist and Facilitate a Return to the Primed State
Discovery of leucokinin-like neuropeptides that modulate a specific parameter of feeding motor programs in the molluscan model, Aplysia
Use of the<i>Aplysia</i>feeding network to study repetition priming of an episodic behavior
Activity-dependent increases in [Ca<sup>2+</sup>]<sub>i</sub> contribute to digital-analog plasticity at a molluscan synapse
A clarifying method that improves imaging of Aplysia ganglia.
PubMed 2017cited by 0position: middle
Repetition priming of motor activity mediated by a central pattern generator: the importance of extrinsic vs. intrinsic program initiators
Aplysia Locomotion: Network and Behavioral Actions of GdFFD, a D-Amino Acid-Containing Neuropeptide
Repetition priming-induced changes in sensorimotor transmission
Functional Characterization of a Vesicular Glutamate Transporter in an Interneuron That Makes Excitatory and Inhibitory Synaptic Connections in a Molluscan Neural Circuit
Specificity of Repetition Priming: The Role of Chemical Coding
Complementary Interactions between Command-Like Interneurons that Function to Activate and Specify Motor Programs
Neuromodulation as a mechanism for the induction of repetition priming
Monitoring Changes in the Intracellular Calcium Concentration and Synaptic Efficacy in the Mollusc <em>Aplysia</em>
Monitoring Changes in the Intracellular Calcium Concentration and Synaptic Efficacy in the Mollusc <em>Aplysia</em>