Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neural dynamics and brain function, Advanced Memory and Neural Computing, Neurobiology and Insect Physiology Research, and Neuroscience and Neural Engineering.
The spatial and temporal structure of neural activity across the fly brain
Olfactory landmarks and path integration converge to form a cognitive spatial map
Evolving the olfactory system with machine learning
Meta-learning synaptic plasticity and memory addressing for continual familiarity detection
Flexible filtering by neural inputs supports motion computation across states and stimuli
Transient and Persistent Representations of Odor Value in Prefrontal Cortex
Heading direction with respect to a reference point modulates place-cell activity
Inferring single-trial neural population dynamics using sequential auto-encoders
full-FORCE: A target-based method for training recurrent networks
Odor Perception on the Two Sides of the Brain: Consistency Despite Randomness
The complete connectome of a learning and memory centre in an insect brain
Optimal Degrees of Synaptic Connectivity
Representations of Novelty and Familiarity in a Mushroom Body Compartment
Balanced excitation and inhibition are required for high-capacity, noise-robust neuronal selectivity
Tuning Curves for Arm Posture Control in Motor Cortex Are Consistent with Random Connectivity
Activity Regulates the Incidence of Heteronymous Sensory-Motor Connections
Temporal Responses of C. elegans Chemosensory Neurons Are Preserved in Behavioral Dynamics
Dynamics of random neural networks with bistable units
Random convergence of olfactory inputs in the Drosophila mushroom body
A computational approach enhances learning in Aplysia
Collaborative Research: Liquid Crystal-Templated Chemical Vapor Polymerization of Complex Nanofiber Networks
Collaborative Research: Integrating Simulations, Experiments, and Machine Learning to Understand and Design Hydrophobic Interactions
2023 Complex Active and Adaptive Materials Systems: Optimizing the Synergy Between Architecture, Non-Equilibrium Processes and Materials
EAGER: Biometric Authentication using Noncontact Cardiovascular Signals
COLLABORATIVE RESEARCH: SHARING THE STRAIN - SYNTHETIC LIQUID CRYSTALS AS SOFT BIOMATERIALS
DMREF: Collaborative Research: Accelerated Design and Deployment of Metal Alloy Surfaces for Chemoresponsive Liquid Crystals
Collaborative Research: Manufacturing of Polymer Nanofiber Arrays on Surfaces by Chemical Vapor Deposition into Liquid Crystal Templates
BIGDATA: IA: Collaborative Research: Data-Driven, Multi-Scale Design of Liquid Crystals for Wearable Sensors for Monitoring Human Exposure and Air Quality
DMREF/Collaborative Research: Chemoresponsive Liquid Crystals Based on Metal Ion-Ligand Coordination
Optically-Driven Changes in Nanoparticle Solvation, Transport and Interaction
UNS: Collaborative Research: Dynamics of Active Particles in Anisotropic Fluids
REU Site: Interdisciplinary Undergraduate Summer Research in Biology
UNS: Collaborative Research: Dynamics of Active Particles in Anisotropic Fluids
2015 Liquid Crystals GRC: Liquid Crystallinity in Soft Matter at and Beyond Equilibrium
DMREF/Collaborative Research: Chemoresponsive Liquid Crystals Based on Metal Ion-Ligand Coordination
Self-Assembling Redox-Mediators
UW CEMRI on Structured Interfaces
RET Site: Cross-Cultural Connections: An RET Site Program with UPRM and UW
Active Control of Biomolecular Interactions using Redox Amphiphiles
Materials World Network: Ordering Transitions of Liquid Crystals in Contact with Polyelectrolyte Multilayer Films
Spatial and Temporal Control of Molecular Interactions in Surfactant Systems
SST: Collaborative Research: Capacitive Sensing for Liquid Crystal-Based Chemical and Biological Sensors
Transport Processes Driven by Electrochemically-Generated Gradients in Concentration of Electro-Active Surfactants