Your Search Results

Modeling brain dynamics with spatial gradients

A core aim of neuroscience is to understand how the brain, with its staggering complexity of 100 billion neurons, makes sense of the world around it. Large-scale global initiatives more...

Supervisor(s): Fulcher, Ben (Dr)

Integration of visual and tactile information

Touch and vision often work together in our perception of objects around us. This project will examine orientation and spatial frequency tuning in touch and vision and study how the more...

Supervisor(s): Alais, David (Professor)

Modulation of attention and perception during action

The project examines how active motion of an observer modulates perception. The project will study walking observers, and continuously measure their visual performance to examine ho more...

Supervisor(s): Alais, David (Professor)

Forecasting soil conditions

Not knowing where and how soil responds to climate change and human intervention compromises food, water, climate and energy security. Currently there is a lack of soil process know more...

Supervisor(s): Minasny, Budiman (Professor), McBratney, Alex (Professor)

Virtual reality to mitigate environmental, social and economic issues

Transportation of people is one of the most important sources of CO2 emissions contributing to global warming. We can reduce transport emission significantly, quickly and in a cost- more...

Supervisor(s): Rey, Patrice (Associate Professor)

Landscape, tectonic and biodiversity

Earth is losing biodiversity at an unprecedented rate and we need urgent, consistent, and cost-effective solutions to prevent the collapse of ecosystems to reach a point from which more...

Supervisor(s): Rey, Patrice (Associate Professor), Salles, Tristan (Dr)

Modelling plasma surface functionalisation of additively manufactured, porous, prosthetic implants

This project will develop multiphysics models of plasma surface treatment to enable the creation of prosthetic implants with controllable surface properties and long-term biostabili more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling plasma synthesis of nanoparticles for non-invasive diagnosis and targeted treatment of disease

This project will develop multiphysics models of a low temperature capacitively coupled plasma reactor to engineer functionalised nanoparticles for biomedical applications.This proj more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

Modelling atmospheric plasma processes for biofunctionalization in additive manufacturing

This project will develop multiphysics models of atmospheric pressure plasma systems to engineer interfaces and biofunctionalised scaffolds in 3D bioprinting.  The Applied Phys more...

Supervisor(s): Bilek, Marcela (Professor), Baldry, Mark (Dr)

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)