Area of research
Biotechnology · Infectious Diseases
Research interest
Research interests include Microbial Metabolism and Applications, Antimicrobial Resistance in Staphylococcus, Infective Endocarditis Diagnosis and Management, and Legionella and Acanthamoeba research.
APTO: Collaborative Research: Global Observatory and Virtual Laboratory for Science and Technology Advance
Examining temperatures and microgeochemical processes on fault slip surfaces with synchrotron methods
Evidence for Dynamic Weakening Mechanisms in the San Andreas Fault: Microgeochemistry and Microthermometry of Fault-related Rocks from SAFOD Core and Exhumed Faults
Fault Speedometers, Slip Localization, and Slip Complexity on Exhumed Faults
Assembly and Stability of Metal Nanostructures on Surfaces
Collaborative Research: Influence of Structure, Composition and Fluid-Rock Chemistry on Mode of Slip in the San Andreas Fault Zone at SAFOD
Collaborative Research: Structural-Petrologic Characterization of the San Andreas Fault in the SAFOD Drill Holes
Spatial Organization in Epitaxial Thin Films and Chemisorbed Layers: Manipulation of Nano- and Meso-scale Structure on Metal Substrates
SGER: Geological and Geomorphic Investigations of Impacts of Rapid Fall of Lake Powell at the Colorado River Delta
Nanostructure Formation and Evolution in Thin Films
Insights into Earthquake Propagation Processes from the Chelungpu Fault Drilling, Project, Taiwan
Growth and Equilibration of Thin Metal Films
Nucleation, Growth, and Structure of Metal-on-Metal Films
COLLABORATIVE RESEARCH: Weakening and Slip Mechanisms in Large-Displacement Faults on the San Andreas System: Characterization and Experimental Investigations
Field and Model Studies of the Hydrologic and Structural Evolution of Faults in Granitic Rocks in the Upper Crust
Time-Dependent Response of the Gulf of Mexico to Forcing by Wind and Loop Current Rings
Development and Testing of an Advanced Ocean Circulation Model Based on Spectral Elements
Mathematical and Physical Modeling of Electromagnetic Casting
Fluid Flow and Particle Suspension in Air Agitated Vessels