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Imaging atherogenesis in a zebrafish model

This project will characterise immune cell dynamics during atherogenesis by live imaging, and investigate the importance of vascular remodelling and leakage in fuelling atheroma pat more...

Supervisor(s): Oehlers, Stefan (Dr), Britton, Warwick J (Professor)

Understanding how cell polarity is patterned in plants

The symmetrical arrangements of leaves and flowers have long fascinated artists and mathematicians alike for hundreds of years. Using live-imaging, molecular biology and genetics, t more...

Supervisor(s): Heisler, Marcus (Associate Professor)

Neuromuscular Mechanisms Underlying Poor Recovery following Head/Neck Trauma

My laboratory investigates the neuromuscular mechanisms underlying the transition from acute to chronic pain following musculoskeletal trauma (generally) and head/neck trauma (speci more...

Supervisor(s): Elliott, James (Professor)

Harnessing Data for Better Health – Triangulating the patient’s pain experience

My laboratory investigates the neuromuscular mechanisms underlying the transition from acute to chronic pain following musculoskeletal trauma (generally) and head/neck trauma (speci more...

Supervisor(s): Elliott, James (Professor)

Predictors and mediators of swallowing and voice deficits following whiplash trauma: Is it biology or psychology?

My laboratory investigates the neuromuscular mechanisms underlying the transition from acute to chronic pain following musculoskeletal trauma (generally) and head/neck trauma (speci more...

Supervisor(s): Elliott, James (Professor)

The DNA replication stress response

Genome integrity in human cells is maintained through the coordinated functions of the DNA damage response. We study these processes with particular interest in the pathways that re more...

Supervisor(s): Cesare, Tony (Dr)

Understanding how leaves develop

Plants utilize "boundaries" of genes expression to help decide where to position and how to shape leaves. This project will investigate how these boundaries control plant developmen more...

Supervisor(s): Heisler, Marcus (Associate Professor)

Develop single-cell mechanobiological methods for discovering molecular mechanisms of cardiovascular and neuronal mechanical force sensing

We are developing cutting-edge technologies for the following biomedical application: 1) define the mechanosensing functions of key protein players in the cardiovascular system such more...

Supervisor(s): Ju, Lining (Arnold) (Dr)

Vascular dysfunction in mycobacterial pathogenesis

This project will investigate the importance of vascular remodelling and leakage in fuelling tuberculosis infection more...

Supervisor(s): Oehlers, Stefan (Dr), Britton, Warwick J (Professor)

HUMAN MINIBRAINS GROWN FROM STEM CELLS

This project will involve CRISPR genome editing strategies combined with human stem cell derived mini-brains to investigate new neuronal factors that control development, cognitive more...

Supervisor(s): Neely, Greg (Professor)