Your Search Results

Unlocking the neural interface with synthetic synapses

Neuromorphic nanowire synthetic synapses will be integrated into a microelectrode array device to interface with retinal neuronal tissue to demonstrate proof-of-concept of vision re more...

Supervisor(s): Kuncic, Zdenka (Professor)

Beyond Neuroinflammation: The Role of Microglia in Synaptic Plasticity

Microglia are the immune cells of the brain and are known to respond to infectious and non-infectious insults to the nervous system. Recently, a new function has been demonstrated f more...

Supervisor(s): Graeber, Manuel (Professor)

Investigating how amygdala neural circuits contribute to opioid use disorders.

The widespread misuse of both prescribed and illicit opioids, termed the Opioid Crisis, has grave consequences for both individuals and our society. This project aims to understand more...

Supervisor(s): Bagley, Elena (Associate Professor)

Investigating how endogenous opioid actions contribute to compulsive opioid use.

The widespread misuse of both prescribed and illicit opioids, termed the Opioid Crisis, has grave consequences for both individuals and our society. This project aims to understand more...

Supervisor(s): Bagley, Elena (Associate Professor)

Investigating how we can utilize the endogenous opioid system to manage pain

The burden of chronic pain is a major cause of human suffering that is now estimated to cost Australia more than $73B per annum and even the most effective th¬¬erapeutics do more...

Supervisor(s): Bagley, Elena (Associate Professor)

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)

Mechanisms of T cell migration and interactions in the tumor microenvironment

The project will use intravital two-photon microscopy to determine the molecules involved in interstitial T cell migration and the molecular mechanisms of T cell interactions with t more...

Supervisor(s): Weninger , Wolfgang (Professor)

Neural Field Theory and Brain Dynamics

This research area is concerned with developing better understanding of the structure and activity of the brain, especially through modeling the dynamics and interactions of its neu more...

Supervisor(s): Robinson, Peter (Professor)