Extinguishing Fearful And Addictive Brain During Adolescence
Funder
National Health and Medical Research Council
Funding Amount
$428,437.00
Summary
Exposure therapies rely on the decrease in emotions to previous triggers due to the exposure to those triggers without an emotional event in a safe environment. Adolescence marks a period of maturation that is particularly resistant to such therapies, due to the imbalance of different receptors in their prefrontal cortex. We will redress such chemical imbalance by using existing clinically-approved drugs, and facilitate behavioural therapies to treat adolescent anxiety and substance abuse.
The Signals Of Nerve Cells That Provide The Capacity For Sight
Funder
National Health and Medical Research Council
Funding Amount
$385,115.00
Summary
Sight relies on the signals of nerve cells in the brain, but we know little about the way in which nerve cells support this, or why in some people sight is diminished. In this work we will measure the signals of nerve cells in the visual pathway to gain knowledge of these processes: we will make measurements in normal animals and in those that suffer from brain disorders. Our work will provide a scientific basis for the diagnosis and treatment of these disorders.
The Function And Modulation Of Dendritic Activity Underlying Neural Circuits And Behavior
Funder
National Health and Medical Research Council
Funding Amount
$450,641.00
Summary
Understanding how brain cells translate sensory input into behaviour is central to explaining how the brain works. My research focuses on the long-standing question of how information from different brain regions is received and processed within individual brain cells. This research is crucial to understanding brain function and can provide a greater understanding of the neuronal processes underlying diseases such as epilepsy, schizophrenia, depression and alcoholism.
Genomic Investigation Of Major Human Diseases And Lifespan
Funder
National Health and Medical Research Council
Funding Amount
$463,652.00
Summary
I am focused on finding disease genes for major human neurological diseases that increase with age. In my future research I will use human population genetics data combined with animal research to find genes that can block pain perception, or promote long life while preserving brain function in the elderly. My research efforts can help provide a better basic understanding of age-related diseases, and may help us identify new therapies to help us live productive, long lives.
Distinguishing Self From World: Understanding The Neural Basis Of Schizophrenia
Funder
National Health and Medical Research Council
Funding Amount
$453,307.00
Summary
Self-generated sensations - such as tickling oneself - typically evoke less activity in the EEG than physically identical, externally-produced sensations. Schizophrenia patients do not exhibit this “electrophysiological self-suppression” (ESS), which accounts for their characteristic tendency to misattribute their own thoughts and actions to other people. This project aims to rectify ESS levels in schizophrenia by artificially altering patients’ sensory feedback to self-generated actions.
Multisensory Determinants Of Postural Instability And Falls In Older Adults; Prevention And Rehabilitation
Funder
National Health and Medical Research Council
Funding Amount
$387,489.00
Summary
With an increased longevity of the population, age-related health problems, such as falls, are a significant socioeconomic issue to be addressed. Many sensory systems (e.g. vision, hearing, balance) are known to gradually become disrupted as a consequence of ageing. This project will investigate the consequences of declining sensory systems for balance control in older adults and to develop technology to prevents falls in them.
Neuroimmune Interactions In Functional And Organic Gastrointestinal Diseases
Funder
National Health and Medical Research Council
Funding Amount
$419,180.00
Summary
Irritable Bowel Syndrome (IBS) and Inflammatory Bowel Disease (IBD) are chronic, incurable diseases of the lower gastrointestinal tract with unknown causes and poor treatment options. Both the immune and nervous systems are altered in GI disease, but have traditionally been studied in isolation. My research investigates how the neuro-immune axis is altered in these diseases, using animal models and human tissue samples to identify novel treatment options for these debilitating diseases.