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Plasma surface modification for applications in microfluidic diagnostic systems and implantable cardiovascular devices

You will develop novel hemocompatible, bioactive surfaces in microfluidic models for cardiovascular applications. The project is part of an existing collaboration between medic more...

Supervisor(s): Bilek, Marcela (Professor)

MODELLING EFFECTS OF LIGHT ON THE CIRCADIAN RHYTHMS

This project aims to advance our understanding of the effects of light on the circadian rhythms and develop a detailed biophysical model of the circadian photoreceptor system that i more...

Supervisor(s): Postnova, Svetlana (Dr)

The Physics of Circadian Desynchrony

This project will investigate brain mechanisms and health consequences of circadian misalignment. more...

Supervisor(s): Postnova, Svetlana (Dr)

QUANTIFYING INTER-INDIVIDUAL VARIABILITY IN CIRCADIAN RHYTHMS

The overarching goal of this set of projects is to understand the brain mechanisms of inter-individual variability in circadian rhythms and develop tools for personalized prediction more...

Supervisor(s): Postnova, Svetlana (Dr)

Modulating coronary atherosclerosis through perivascular fat (PVAT)

Background: Organ-to-organ communications are vital for living systems and play critical roles in cellular homeostasis. Various studies have demonstrated the existence and significa more...

Supervisor(s): Misra, Ashish (Dr)

Role of Protein Phosphorylation in Cellular Function

Using advances in mass spectrometry-based proteomics this project aims to uncover how phosphorylation affects the function of proteins and cells in both healthy and diseased states. more...

Supervisor(s): James, David (Professor)

Dental robotics

Robotic dental surgery offers significant clinical advantages, but has not yet been developed. We are exploring development of dental robotics in collaboration with the Faculty of E more...

Supervisor(s): Zoellner, Hans (Professor)