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Novel biophotonic devices

The project will explore novel biomedical applications of a new type of fibre, taking advantage of our recent breakthrough in fabrication of fibres in low Young's modulus materials more...

Supervisor(s): Fleming, Simon (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)

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)

Develop point-of-care microfluidic technologies for cardiovascular and cerebrovascular diseases

We are developing a clinically useful, rapid and high throughput profiling microdevices for thrombosis and coagulation. It will be extremely useful for patients with diabetes, obesi more...

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

Fibre-based Scaffolds for Neural Implants

The project will focus on design and fabrication of biodegradable and biocompatible micro-structured fibres based on our current breakthrough in fabrication of fibres in low Young&r more...

Supervisor(s): Rukhlenko, Ivan (Dr), Fleming, Simon (Professor), Farajikhah, Syamak (Dr)

Fiber-based mesocopic optical tweezers and actuators for biophotonic applications

This project will explore optomecahnical effects in systems of coupled tapered fibres (fibre-based mesoscopic optical tweezers) of various profiles for novel applications in cellula more...

Supervisor(s): Rukhlenko, Ivan (Dr), Fleming, Simon (Professor)

Cold Drawing of Polycaprolactone Fibres

This project will focus on fine tuning of the PCL fibres morphology through cold drawing. The effect of different cold-drawing regimes resulting in different relative elongations of more...

Supervisor(s): Rukhlenko, Ivan (Dr), Fleming, Simon (Professor), Farajikhah, Syamak (Dr)

Nanosensors and separators of enantimeric drug molecules

Bulk production and purity control of chiral drugs are severley limited by the complexity and laboriousness of current sensing and resolution techniques.  It is possible to ove more...

Supervisor(s): Rukhlenko, Ivan (Dr)

Real-time Low-power Neural Accelerator

This project aims at developing an Application-Specific Integrated Circuit (ASIC) for a low-power learning system processing real-time time-series data. more...

Supervisor(s): Kavehei, Omid (Dr)