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Utility of Cerebrospinal fluid proteomics to define molecular mechanisms in brain disease of childhood.

Brain diseases of childhood are very common and result in significant disability, and cost to the nation. Common diseases include epilepsy, cerebral palsy, autism and mental health more...

Supervisor(s): Dale, Russell (Professor)

Neural Correlates of Chronic Cardiovascular Disease

Chronic cardiovascular disease (diabetes, obesity, heart disease) has a wide systemic physiological impact, including microstructural damage to the brain. Our group has an opportuni more...

Supervisor(s): Grieve, Stuart (Professor)

Brain Structural Connectomics and Tractographic Performance in Ultra-High Resolution Diffusion Imaging

Sydney Translational Imaging Laboratory (STIL) have an opportunity for a PhD student to investigate the structure of the brain's white matter fibres at a previously unseen level of more...

Supervisor(s): Grieve, Stuart (Professor)

CRISPR-based genome editing

The recent development of genome editing technology is perhaps the single biggest technical breakthrough in the history of life sciences, allowing for near complete control over euk more...

Supervisor(s): Neely, Greg (Professor)

Maternal autoimmunity increases risk of neurodevelopmental problems in offspring.

Maternal autoimmunity is a recognised risk factor for autism and other neurodevelopmental and psychiatric disorders in the offspring. It is well established in humans and animal mod more...

Supervisor(s): Dale, Russell (Professor), Hofer, Markus (Dr)

Chemotherapy-induced neuropathic pain, fatigue, and cognitive impairments

Cancer and cancer treatments are associated with a wide range of side effects, including those of the nervous system. These present as neuropathic pain, fatigue, and cognitive impai more...

Supervisor(s): Johnston, Ian (Dr)

Whole genome CRISPR screening to define drug mechanism of action

This project will involve new whole genome CRISPR editing strategies, coupled with bioinformatics analysis, to identify the complete molecular mechanism of action for relevant human more...

Supervisor(s): Neely, Greg (Professor)

How to stop an epileptic seizure - looking for the right molecules to target

Over 400 proteins are implicated in epilepsy. This project involves interrogating models of epilepsy to determine which are the key pathways and molecular mechanisms which could be more...

Supervisor(s): Graham, Mark (Dr)

How do molecules make memories? Understanding synaptic plasticity at the level of protein pathways and signalling.

This project aims to discover and validate new molecular mechanisms of how synaptic plasticity, which underlies learning and memory, is regulated by protein interactions and phospho more...

Supervisor(s): Graham, Mark (Dr)

HUMAN MINIBRAINS GROWN FROM STEM CELLS

This project will involve CRISPR genome editing strategies combined with human stem cell derived mini-brains to investigate new neuronal factors that control development, cognitive more...

Supervisor(s): Neely, Greg (Professor)