Area of research
Biomedical Engineering · Ecology
Research interest
Research interests include Biosensors and Analytical Detection, Acoustic Wave Resonator Technologies, Bacteriophages and microbial interactions, and Microfluidic and Bio-sensing Technologies.
3D Phage-based biomolecular filter for effective high throughput capture of Salmonella Typhimurium in liquid streams
Effects of Different Broth Enrichment upon Phage Magnetoelastic Biosensor for Fast Detecting Low <i>Salmonella</i> Counts on Problematic Produce
Biomolecular Phage Filter for the Detection of a Small Number of Pathogens in Large Volumes of Processing Water
Rapid bacteria detection using a portable magnetoelastic biosensor system (Conference Presentation)
Isolation of highly selective phage-displayed oligopeptide probes for detection of listeria monocytogenes in ready-to-eat food
Direct Detection of Bacterial Pathogens on Fresh Fruits and Vegetables
An Advanced Magnetoelastic (ME) Sensing of Salmonella by the Improvement of Pathogen Recovery Rate Using Tween20 Modified Swabs
Comparison of Pathogens Capture By Different Bio-Receptors Immobilized Biomolecular Filter in a Large Volume of Liquid
Capture and identification of Salmonella Typhimurium from large volumes of water using phage filter
The combination of magnetoelastic (ME) wireless biosensing with surface swab sampling
Direct, surface-scanning detection of pathogenic bacteria using a wireless biosensor
Capture of bacterial pathogens in liquid streams by multiple layers of phage based bio-molecular filter
An Advanced Magnetoelastic (ME) Sensing of Salmonella By the Improvement of Pathogen Recovery Rate Using Tween20 Modified Swabs
Detection of Salmonella Typhimurium on Spinach Using Phage-Based Magnetoelastic Biosensors
Application of 2-Dimensional Coil Detector for the Sensitive Direct Salmonella Detection on Plastic Board
Highly sensitive surface-scanning detector for the direct bacterial detection using magnetoelastic (ME) biosensors
Bio-Molecular Filter for the Capture of Bacterial Pathogens in Liquid Streams
Automated surface-scanning detection of pathogenic bacteria on fresh produce
Design, Simulation and Fabrication of a Novel Phage Filter for Pathogens Testing from Large Volumes of Water
Phage-based biomolecular filter for the capture of bacterial pathogens in liquid streams
Rapid Pathogen<i />Detection by Surface Swab Sampling and Wireless Biosensing
Detection of<i>Salmonella</i><i>Enterica</i>with Magnetoelastic Biosensors in Wash Water Containing Clorox and Chlorine Dioxide
Design, Simulation and Fabrication of a Novel Phage Filter for Pathogens Testing from Large Volumes of Water
Efficient Capture of Pathogens in Liquid Streams By Phage-Based Biomolecular Filtering
Sensitive Double-Layer Coil Detector for the Detection of Salmonella Typhimurium Using Magnetoelastic Biosensors
Rapid Detection of Bacterial Pathogens on 2D Food
Effects of Surface-Scanning Detector Position on the Response of a Wireless Magnetoelastic Biosensor
Real-Time Bacterial Detection in Liquid By Using Magnetoelastic Biosensors and a Surface-Scanning Coil Detector
Enhancement in the Capture Efficiency of Magnetoelastic Biosensors for<i>Salmonella</i>Using a Dilution Method
Rapid Pathogen detection By Surface Swab Sampling and Wireless Biosensing