Area of research
Genetics · Cancer Research
Research interest
Research interests include Genomic variations and chromosomal abnormalities, Cancer Genomics and Diagnostics, Genomics and Rare Diseases, and Shoulder Injury and Treatment.
Specific oncogene activation of the cell of origin in mucosal melanoma
Inflammation switches the chemoattractant requirements for naive lymphocyte entry into lymph nodes
Mast cells help organize the Peyer’s patch niche for induction of IgA responses
Oncogenic <i>CDK13</i> mutations impede nuclear RNA surveillance
Platelets and mast cells promote pathogenic eosinophil recruitment during invasive fungal infection via the 5-HIAA-GPR35 ligand-receptor system
Cementless Compared to Cemented Total Knee Arthroplasty is Associated With More Revisions Within 1 Year of Index Surgery
Structure of S1PR2–heterotrimeric G <sub>13</sub> signaling complex
Gain-of-Function Genetic Alterations of G9a Drive Oncogenesis
I-Corps: Airborne Chemical Sensing Platform for Remote and Hazardous Environments
OP: Collaborative Research: Landau levels and Dirac points in Continuous Photonic Systems
RI: Small: Collaborative Research: New Directions in Spectral Learning with Applications to Comparative Epigenomics
Collaborative Research: Nonlinear Optics of Photonic Topological Insulators
EAPSI: Understanding Alzheimer's Disease through Modifying the Electrical Stability between Two Key Amino Acids of an Important Protein
Collaborative Research: Digitally Addressable and Scalable Laser Fabrication of 3D Gradient Index Nanostructures and Nanophotonics Circuits
Adaptive Laser Shock Micro-Forming Process and Metrology
EAGER: Fiber Sensors Networks for Crude Oil Migration Monitoring In Ocean
Collaborative Research: Laser Manufacturing of Three-Dimensional Lightwave Circuits and Nano-Optical Devices
MRI: Acquisition of an Ultrafast Laser System for the Fabrication of Three-Dimensional Photonic Devices
CAREER: Multi-Functional, High-Sensitivity Optical Sensors in Microstructured Fibers
GOALI:Fabrication of Three-Dimensional Chiral Photonic Circuits and Electro-Optical Devices in Silica Using Femtosecond Ultrafast Lasers