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Current Selection
Status : Active
Field of Research : Psychology
Research Topic : Biological Control
Australian State/Territory : SA
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Biological Psychology (Neuropsychology, Psychopharmacology, Physiological Psychology) (6)
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  • Researchers (16)
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  • Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE200100575

    Funder
    Australian Research Council
    Funding Amount
    $423,604.00
    Summary
    Does neuroplasticity protect against late life cognitive impairment? This project aims to investigate neuroplasticity across the adult lifespan, using novel neurophysiological approaches to determine its role in protecting against age-related cognitive decline. This project expects to generate new knowledge in the area of human cognitive ageing, using an innovative and interdisciplinary approach. Expected outcomes of this project include a critical understanding of the basic neural mechanisms of .... Does neuroplasticity protect against late life cognitive impairment? This project aims to investigate neuroplasticity across the adult lifespan, using novel neurophysiological approaches to determine its role in protecting against age-related cognitive decline. This project expects to generate new knowledge in the area of human cognitive ageing, using an innovative and interdisciplinary approach. Expected outcomes of this project include a critical understanding of the basic neural mechanisms of healthy brain ageing. This will provide significant benefits, such as the neurophysiological knowledge required to develop novel biological markers to detect, as well as therapeutic agents to curb, cognitive decline in the aging population.
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    Active Funded Activity

    ARC Future Fellowships - Grant ID: FT210100694

    Funder
    Australian Research Council
    Funding Amount
    $971,439.00
    Summary
    Understanding working memory: from cells to brain stimulation. This project aims to understand the neural mechanisms of working memory, a fundamental cognitive function in humans, using a novel framework which combines non-invasive brain stimulation, neuroimaging, pharmacological and experimental manipulations, and biological modelling. Expected outcomes include a critical understanding of the cellular mechanisms underlying both neural activity and working memory ability in healthy individuals a .... Understanding working memory: from cells to brain stimulation. This project aims to understand the neural mechanisms of working memory, a fundamental cognitive function in humans, using a novel framework which combines non-invasive brain stimulation, neuroimaging, pharmacological and experimental manipulations, and biological modelling. Expected outcomes include a critical understanding of the cellular mechanisms underlying both neural activity and working memory ability in healthy individuals and a detailed knowledge of how to non-invasively interact with these mechanisms using brain stimulation. This will provide significant benefits such as the development of individually optimised brain stimulation protocols, enabling tailored approaches to reliably alter brain function and cognition.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP200101009

    Funder
    Australian Research Council
    Funding Amount
    $297,621.00
    Summary
    Reconnecting the ageing brain to enhance plasticity and motor learning. The ability to execute and learn skillful actions deteriorates with advancing age, but the cause remains elusive. The main aim of this project is to use new neurophysiological techniques to examine the age-related changes in brain function that contribute to reduced movement control in healthy older adults. The research will use multimodal approaches to reveal the causal role of age-related changes in specific brain networks .... Reconnecting the ageing brain to enhance plasticity and motor learning. The ability to execute and learn skillful actions deteriorates with advancing age, but the cause remains elusive. The main aim of this project is to use new neurophysiological techniques to examine the age-related changes in brain function that contribute to reduced movement control in healthy older adults. The research will use multimodal approaches to reveal the causal role of age-related changes in specific brain networks to motor behaviour and learning. The outcomes will provide significant new knowledge that may help to optimise the design of targeted interventions aimed at rejuvenating brain function and movement quality in the elderly.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP220103174

    Funder
    Australian Research Council
    Funding Amount
    $525,427.00
    Summary
    Investigating memory reliability in intoxicated witnesses of crime. Eyewitness testimony is a crucial piece of evidence for solving a crime. Inaccurate testimony leads to miscarriages of justice such as failed prosecutions or false convictions. Many witnesses and victims are affected by alcohol or other drugs during the crime. This project brings together a multidisciplinary team aiming to improve understanding of how intoxication with different substances affects the reliability of victim and w .... Investigating memory reliability in intoxicated witnesses of crime. Eyewitness testimony is a crucial piece of evidence for solving a crime. Inaccurate testimony leads to miscarriages of justice such as failed prosecutions or false convictions. Many witnesses and victims are affected by alcohol or other drugs during the crime. This project brings together a multidisciplinary team aiming to improve understanding of how intoxication with different substances affects the reliability of victim and witness memory accuracy. Crucially, crimes are frequently distressing; therefore the interaction between intoxication and stress urgently requires exploration. This project will significantly advance our understanding of key mechanisms behind drug effects on memory, and support fairer judicial outcomes for all.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP180101974

    Funder
    Australian Research Council
    Funding Amount
    $428,724.00
    Summary
    Functional impact of high fat and high sugar diets on memory encoding. This project aims to determine the functional mechanisms of how fats and sugar affect neuronal processes vital for learning and memory. Expected outcomes will define the neural mechanisms underpinning cognitive changes in emotional and spatial memory encoding, and how these relate to brain and metabolic parameters. This will provide benefits by unveiling the possible consequences of dietary fat and sugar on the brain, and th .... Functional impact of high fat and high sugar diets on memory encoding. This project aims to determine the functional mechanisms of how fats and sugar affect neuronal processes vital for learning and memory. Expected outcomes will define the neural mechanisms underpinning cognitive changes in emotional and spatial memory encoding, and how these relate to brain and metabolic parameters. This will provide benefits by unveiling the possible consequences of dietary fat and sugar on the brain, and the mechanisms of neuroplasticity enhancing interventions.
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    Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE150101108

    Funder
    Australian Research Council
    Funding Amount
    $352,000.00
    Summary
    The ups and downs of visuospatial attention. The brain has a remarkable capacity to provide a coherent experience of the world by seamlessly integrating sights and sounds from different locations. It is only after brain damage, or when faced with a high attentional load, that our limitations become apparent. The project aims to investigate these limitations by determining how spatial location influences attention in relation to distractibility, cross-modal input and emotionality. Eye tracking an .... The ups and downs of visuospatial attention. The brain has a remarkable capacity to provide a coherent experience of the world by seamlessly integrating sights and sounds from different locations. It is only after brain damage, or when faced with a high attentional load, that our limitations become apparent. The project aims to investigate these limitations by determining how spatial location influences attention in relation to distractibility, cross-modal input and emotionality. Eye tracking and physiological measures of arousal will be combined with traditional cognitive measures to provide a deeper understanding of spatial attention. This project aims to improve attentional models and develop innovative strategies to increase safety by decreasing inattention and distraction.
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    Showing 1-6 of 6 Funded Activites

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