Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include FOXO transcription factor regulation, Circular RNAs in diseases, MicroRNA in disease regulation, and Phytochemicals and Antioxidant Activities.
CAREER: Assured Reinforcement Learning from Human Feedback for Cyber-Physical Systems
CAREER: Causal Discovery: Methodology Driven by Practice
Collaborative Research: III: Small: Towards Well-Rounded Graph Retrieval for Retrieval-Augmented Generation
Collaborative Research: CyberTraining: Implementation: Medium: AI4EDU: Cloud Infrastructure-Enabled Training for AI in Educational Research and Assessment
CAREER: Exact Optimal and Data-Adaptive Algorithms and Tools for Differential Privacy
Collaborative Research: SCALE MoDL: Adaptivity of Deep Neural Networks
SAI-R: A Community-Centered Decision-Making Framework for Microgrid Deployment
CAREER: Exact Optimal and Data-Adaptive Algorithms and Tools for Differential Privacy
Collaborative Research: CPS: Medium: RUI: Cooperative AI Inferencein Vehicular Edge Networks for Advanced Driver-Assistance Systems
Collaborative Research: SCALE MoDL: Adaptivity of Deep Neural Networks
RI: Small: Towards Optimal and Adaptive Reinforcement Learning with Offline Data and Limited Adaptivity
Collaborative Research: CNS Core: Small: AirEdge: Robust Airborne Wireless Edge Computing Network using Swarming UAVs
Collaborative Research: P2C2--Winter Climate Anomalies across North America: Benchmarking Instrumental Trends and Model Projections with High Resolution Paleoclimatology
Collaborative Research: In-Situ Three-Dimensional Diffraction and High-Resolution Electron Microscopy Study of Modulated Martensites
NeTS: Small: Collaborative Research: Towards Reliable, Energy-Efficient, and Secure Vehicular Networks
Multiscale Genomic Imaging Informatics
EAGER: Topology Design in Socio-Temporal Evolving Wireless Networks
Multiscale Genomic Imaging Informatics
Computational Study for Optimizing Microstructures and Properties of Polymer-Matrix Magnetostrictive Composite Materials
NeTS:Small:Collaborative Research: An Integrated Environment-Independent Approach to Topology Control in Wireless Ad Hoc Networks
SGER: Developing a New Experimental Technique for Quantitative Nanotwin Microstructure Characterization by Using In-Situ Diffraction
Symposium: Domain Microstructures and Mechanisms for Advanced Properties in Phase Transforming Materials; Pittsburgh, PA; October 25-29, 2009
Symposium: Domain Microstructures and Mechanisms for Advanced Properties in Phase Transforming Materials; Pittsburgh, PA; October 25-29, 2009
SGER: Developing a New Experimental Technique for Quantitative Nanotwin Microstructure Characterization by Using In-Situ Diffraction