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High strain rate behaviour of engineering materials

This study is a part of ongoing research to develop lightweight materials that can sustain severe loading conditions. The Split Hopkinson Pressure Bar (SHPB) method will be used for more...

Supervisor(s): Mohotti, Damith (Dr)

Structural application of recycled fibre reinforced polymer (rFRP) composites

The objective of the project is to develop more sustainable infrastructures. more...

Supervisor(s): Hadigheh, Ali (Dr)

Scaling Safe Construction in Humanitarian Shelter

This research seeks to investigate strategies to scale safe shelter and housing construction practice in the aftermath of disasters and conflicts in developing communities. Potentia more...

Supervisor(s): Opdyke, Aaron (Dr)

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)

Molecular insights into a novel mammalian oxygen-sensing pathway

Oxygen (O2) is a vital biological resource most prominently known for its role as the final electron acceptor in aerobic respiration and, as such, adequate molecular mechanisms are more...

Supervisor(s): White, Mark (Dr), Mackay, Joel (Professor)

Dynamic X-ray analysis of fibre reinforced concrete composites: from pouring to ultimate loads

The entire life cycle of a concrete member will be studied using dynamic X-ray tomography. This project will investigate the influence of mixing and pouring on the load carrying cap more...

Supervisor(s): Marks, Benjy (Dr), Dias-da-Costa, Daniel (Dr)

Development of constitutive models for self-healing cementitious and soil materials

This research will develop constitutive models to handle the mechanics of self-healing materials. more...

Supervisor(s): Dias-da-Costa, Daniel (Dr)

Evaluation of possible head Injuries in construction and sport fields

This research is geared towards studying the behaviour of a human head during the event of an impact in sport or construction fields. Experimental and numerical studies will be carr more...

Supervisor(s): Mohotti, Damith (Dr)