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suppression, and endocrine disruption. Their detection is particularly challenging because adverse effects occur at ultra-low concentrations, often in the nanomolar to attomolar range. New, ultrasensitive tools
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person. Aims: The project aims to develop and evaluate AI methods for medical image analysis to detect diabetic retinopathy, glaucoma, cataract and age-related macular degeneration (AMD). As
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Project details Objective: This project aims to develop a wireless, nanoengineered graphene-based biosensor for real-time dopamine (DA) detection. The wireless design of the sensor aims to enable
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investment, helping to create an energetic and vibrant academic community for our students and staff. To find out more about the Department of Engineering please click on the following link: https
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satellite SAR, LiDAR and/or optical imagery to enable rapid, safe, and scalable assessments of damage. Candidate methods for temporal modelling and anomalies detection, which are likely to occur at affected
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, valuable for laboratory and short-term field studies, into a fully integrated system for real-world deployment, where rapid detection of water quality deterioration is critical. The proposed research will