Area of research
Cancer Research · Clinical Biochemistry
Research interest
Research interests include Advanced Glycation End Products research, MicroRNA in disease regulation, Cancer Immunotherapy and Biomarkers, and Cancer-related molecular mechanisms research.
Elements: TASChips: Thermal Analysis of Semiconductor Chips with High Efficiency, Accuracy and Resolution Enabled by Physics-Aware Reduced-Order Learning Techniques
Collaborative Research: CSR: Small: Systems Support for a Sustainable Smartphone Ecosystem
3D Nanoprinting via Controlled Assembly of Molecules
REU Site: High Performance Computing with Engineering Applications
Probing TeV Physics with neV Neutrons: Precision Measurements of Beta Decays and Electric Dipole Moments
Collaborative Research: CNS Core: Large: Systems and Verifiable Metrics for Sustainable Data Centers
CNS Core: Small: Language Runtime Support for Energy-Aware Applications
Investigation of Reactive Radical Intermediates for the Development of X-ray Photonanochemistry
MRI Consortium: Development of a Room-Temperature Apparatus to Measure the Electric Dipole Moment of the Neutron, for a fast-track ten-fold improvement in sensitivity
Controlled Molecular Assembly for 3D Nanoprinting
SHF: Small: Lazy Data Structures for Data-Intensive Applications
CRI: CI-New: Collaborative Research: Extensible, Software Enabled Unmanned Aerial Vehicles
SHF: Small: Green Parallel Language Systems
Accelerator Physics for Polarized Beam, Neutron Storage Ring, and Envelope Resonance correction in Space Charge dominated Beams.
II: New: Collaborative Research: An Extensible Software Infrastructure for Unmanned Aerial Vehicles
Three Dimensional Nanolithography via Combined Scanning Near-Field Optical Microscopy and Photopolymerization
Chemical and Nanoengineering Regulation of Inter-molecular Electron Transport in Organic Semiconductor Thin Films
CAREER: Programming Models for Green Software
Size-Dependent Surface Chemistry at Nanometer Scale
MRI: Development of a New Paradigm for Apertureless Near-field Scanning Optical Microscope
MRI: Phase I of an Advanced Spectromicroscopy Facility: Acquisition of a Combined Confocal Optical and Atomic Force Microscope, and an Enhanced FTIR Imaging Microscope
Position and Orientation Specific Immobilization of Antibodies via Nanofabrication and Polyvalent Interactions
NER: Stepwise Contraction Adsorption Nanolithography, SCAN: A New Approach Towards Simple, Inexpensive and High Throughput Nanofabrication
CAREER: Development of Nanofabrication Techniques for Self-assembled Monolayer Based Biosensors
STTR PHASE I: Polarization-Independent Liquid-Crystal Fabry-Perot Tunable Filter for Wavelength-Division- Multiplexing Network Applications