Learning from errors: examining the neural mechanisms underlying performance monitoring and adaptive behaviour. This project aims to contribute to current scientific thinking on how the brain mechanisms underlying error processing influence adaptive behaviour. Self-recognition of errors deteriorates in many clinical conditions and is a predictor of poor prognostic outcome. However, it remains unclear how such dysfunction leads to the failure to adapt behaviour.
The neurocognitive basis of dual-task co-ordination impairment in Alzheimer’s: defective coordination mechanism or differences in speed of processing? This project explores the effects of age, depression and Alzheimer’s disease on the ability to carry out two tasks at once, to determine whether difficulty doing so is due to slowed mental processing, or to a deficit in a mechanism responsible for task coordination. The project will advance cognitive theory and may help with diagnosis of dementia.
Make up your mind! - Dissociating the roles of orbitofrontal cortex and striatum in human decision making. How we make everyday decisions is a crucial behaviour of humans but the underlying processes in the brain are still poorly understood. This project will investigate what the roles of specific brain regions are in human decision making, which enable us to gain a better understanding of how these brain structures contribute to our decisions.
Testing theoretical models of age and disease related changes to inform prevention. Pathological brain changes associated with future cognitive decline become detectable in the 40s or earlier. Yet little is known about what constitutes normal brain ageing in mid-life. Using a number of neuroimaging and epidemiological techniques this project will scrutinise brain and cognitive ageing in middle-age and their significance.
Boosting brain plasticity and motor function in older adults. Ageing is associated with a pronounced decline in many motor, cognitive, and other brain functions, but the cause remains elusive. This project will examine the mechanisms that contribute to a decline in brain plasticity and motor function in the elderly. Using novel brain stimulation techniques, the project aims to develop an optimal approach to boost plasticity in the ageing brain and improve motor function. A better understanding o ....Boosting brain plasticity and motor function in older adults. Ageing is associated with a pronounced decline in many motor, cognitive, and other brain functions, but the cause remains elusive. This project will examine the mechanisms that contribute to a decline in brain plasticity and motor function in the elderly. Using novel brain stimulation techniques, the project aims to develop an optimal approach to boost plasticity in the ageing brain and improve motor function. A better understanding of changes in brain function and plasticity with advancing age is expected to help to optimise the design of preventative programs aimed at rejuvenating motor and cognitive function in the elderly.Read moreRead less
Integrative brain imaging technologies. This project aims to develop quantitative metabolic imaging using simultaneous magnetic resonance imaging (MRI) and positron emission tomography (PET). The current generation of MR-PET scanners are capable of simultaneously acquiring MRI and PET data to enable quantitative anatomical, physiological and metabolic imaging. The project aims to develop new MRI methods for quantitative anatomical mapping, MR-based motion correction of dynamic PET scan data, and ....Integrative brain imaging technologies. This project aims to develop quantitative metabolic imaging using simultaneous magnetic resonance imaging (MRI) and positron emission tomography (PET). The current generation of MR-PET scanners are capable of simultaneously acquiring MRI and PET data to enable quantitative anatomical, physiological and metabolic imaging. The project aims to develop new MRI methods for quantitative anatomical mapping, MR-based motion correction of dynamic PET scan data, and joint estimation of physiological and metabolic organ activity. These advances will create innovative imaging technologies for advanced biomedical imaging research with a particular emphasis in healthy ageing.
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Linkage Infrastructure, Equipment And Facilities - Grant ID: LE180100012
Funder
Australian Research Council
Funding Amount
$414,570.00
Summary
All-optical manipulation and recording of neural circuit activity. This project aims to establish all-optical approaches to image and manipulate neural function at single cell resolution in the awake, freely moving animal. The project will help build a 'cells to systems' understanding of neural circuit function and aid in understanding neural circuit dysregulation in brain disorders. This will enable new, fundamental knowledge creation about brain function, and lay a basic science platform for t ....All-optical manipulation and recording of neural circuit activity. This project aims to establish all-optical approaches to image and manipulate neural function at single cell resolution in the awake, freely moving animal. The project will help build a 'cells to systems' understanding of neural circuit function and aid in understanding neural circuit dysregulation in brain disorders. This will enable new, fundamental knowledge creation about brain function, and lay a basic science platform for the next generation of understanding of brain disorders, critical to reducing their economic burden.Read moreRead less
Modelling and manipulating brain network dynamics across the lifespan. This project aims to integrate advanced computational modelling and state-of-the-art recording techniques to generate new knowledge on the neural basis of ageing. People are said to grow wiser as they grow older, though more likely they will experience cognitive slowing and reduced memory functions that interfere with their daily lives. The anticipated goal of the project is to develop techniques to predict the personalised e ....Modelling and manipulating brain network dynamics across the lifespan. This project aims to integrate advanced computational modelling and state-of-the-art recording techniques to generate new knowledge on the neural basis of ageing. People are said to grow wiser as they grow older, though more likely they will experience cognitive slowing and reduced memory functions that interfere with their daily lives. The anticipated goal of the project is to develop techniques to predict the personalised effects of brain stimulation on the ageing brain. The outcomes of this research could significantly improve understanding of brain ageing, and advance the fields of systems neuroscience, network science, and brain stimulation.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE120101119
Funder
Australian Research Council
Funding Amount
$375,000.00
Summary
The critical executive processes involved in translating ideas into spoken language for conversational speech. This project will investigate the critical cognitive pathways, and supporting brain areas, involved in speaking for meaning. This will enable better diagnosis of communication disorders in neurological conditions, such as stroke, and identification of methods for delaying dementia by maintaining and enhancing conversational skills in older adults.