Contact Yiting Wang
Background
Yiting Wang’s research sits at the intersection of biosensing, environmental health and antimicrobial resistance (AMR). She focuses on developing practical tools to monitor biological and chemical threats within complex environmental systems.
Her work advances the development and integration of emerging sensing technologies, including microfluidic and paper‑based analytical devices, molecular diagnostics and biosensors, to deliver rapid, field‑deployable detection. A core research theme is wastewater‑based AMR surveillance. She combines phenotypic and genotypic detection approaches to improve understanding of AMR occurrence, transmission and environmental dynamics.
More broadly, she translates innovations in sensing and analytical technologies into accessible, scalable real‑world monitoring solutions. Her work supports environmental surveillance, public health decision‑making and cross‑disciplinary One Health research.
Research opportunities
- Biosensors and Point-of-Care Diagnostics
- Environmental Biosensing and Monitoring
- Antimicrobial Resistance (AMR) Surveillance
- Wastewater-Based Epidemiology and Surveillance
- Microfluidic and Paper-Based Analytical Devices
- Molecular Diagnostics and CRISPR-Based Sensing
- One Health and Environmental Health
Current activities
Yiting Wang’s research sits at the intersection of biosensing, environmental health and antimicrobial resistance (AMR). She focuses on developing practical tools to monitor biological and chemical threats within complex environmental systems.
Yiting Wang contributes to the project AMR One Health Environmental Sensing: Next‑Generation Platforms for Surveillance and Source Tracking. She works to develop next‑generation environmental‑sensing platforms for antimicrobial resistance (AMR) surveillance and source tracking under a One Health framework. The project seeks to advance integrated sensing and analytical approaches to detect, monitor and characterise AMR across complex environmental systems.
Her work advances the development and integration of emerging sensing technologies, including microfluidic and paper‑based analytical devices, molecular diagnostics and biosensors, to deliver rapid, field‑deployable detection. She combines phenotypic and genotypic detection approaches to improve understanding of AMR occurrence, transmission and environmental dynamics. More broadly, she translates innovations in sensing and analytical technologies into accessible, scalable real‑world monitoring solutions supporting environmental surveillance, public‑health decision‑making and cross‑disciplinary One Health research.