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Implant electrode optimisation and neurolinguistics

The benefit provided by additional electrodes in medical implants is currently unknown. A typical cochlear implant only contains 12-22 electrodes to stimulate about 30,000 more...

Supervisor(s): McEwan, Alistair (Professor)

Low-power Intelligent Bio-Signal Processing

This project aims at developing a responsive implant that is making decisions based on smart bio-signal processing. more...

Supervisor(s): Kavehei, Omid (Dr)

Regenerative engineering – chemo-physical properties gradient as a tool to control cell responses

This project will develop a new CO2 based technologies to impregnate the implant surfaces with functional biomolecules and create topography. The primary aim is to develop a new, co more...

Supervisor(s): Chrzanowski, Wojciech (Dr)

Magnetic resonance electrical impedance tomography

MREIT is a new medical imaging method that allows the electrical conductivity of tissue to be directly measured in the MR scanner. It has high potential for implant design, monitors more...

Supervisor(s): McEwan, Alistair (Professor)

Electrical impedance modelling for implants

Neuromodulation implant stimulation and control is currently limited by the impedance of the surrounding tissue. The aim is to develop a 3D FEM computer model and an agar gel based more...

Supervisor(s): McEwan, Alistair (Professor)

Implantable Medical Devices

The ability to attach functional proteins, antibodies and enzymes to surfaces underpins the development of the next generation of implantable medical devices, biosensors and protein more...

Supervisor(s): Bilek, Marcela (Professor)

Surface modification of biomaterials for orthopaedic applications

This project will establish that our novel modified calcium silicate materials have enhanced bioactivity and osseointegration properties for coatings onto orthopaedic implants. more...

Supervisor(s): Zreiqat, Hala (Professor)

Polymers for Medical Device Engineering: Physics and Chemistry

Exciting APA (Industry) scholarship on an ARC Linkage project involving hermetic bonding of polymers. Applicants must be Australian or New Zealand citizens or Australian permanent r more...

Supervisor(s): McKenzie, David (Professor)

Curcumin nano-formulation: enhanced anti-cancer and anti-microbial properties

The project aims to design and develop curcumin nanoparticles using various fabrication approaches, including liposome-nanoparticle assemblies and polymer-coated nanoparticles. The more...

Supervisor(s): Rohanizadeh, Ramin (Dr)

An innovative synthesis technique to fabricate nano-sized calcium phosphate particles

The project aims to develop a novel method to fabricate homogenous and non-aggregated nano-sized hydroxyapatite (HA) particles capable of delivering therapeutic nucleic acids into t more...

Supervisor(s): Rohanizadeh, Ramin (Dr)