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Research Topic : visual perception
Scheme : Project Grants
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  • Funded Activity

    Neural Circuits For Active Vision In The Primate Cerebral Cortex

    Funder
    National Health and Medical Research Council
    Funding Amount
    $632,938.00
    Summary
    This project will try to understand how we use visual information to identify objects by their shape and motion, in natural situations in which the eyes are moving all the time. This will be accomplished by recording the electrical activity of brain cells while a trained animal is performing different types of tasks, such as tracking a moving object or exploring a scene with its eyes.
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    Funded Activity

    Rapid Plasticity In Sensory Systems - Linking Neuronal Adaptation And Perception

    Funder
    National Health and Medical Research Council
    Funding Amount
    $650,810.00
    Summary
    The activity of individual sensory neurons in the brain is surprisingly variable and continuously changing. It is unclear how reliable perception of the world can be generated from the activity of “noisy” neurons, and it remains unclear why neuronal sensitivity should change in the first place! This project will give insights into how groups of sensory neurons collectively overcome their intrinsic variability to support reliable visual perception.
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    Funded Activity

    Mechanisms And Pathways Leading To Saccadic Suppression In Primate Brain

    Funder
    National Health and Medical Research Council
    Funding Amount
    $858,086.00
    Summary
    Only the central few degrees of the visual field are viewed in high resolution. Consequently, the eyes must be pointed at targets of interest using saccadic eye movements. Each saccade generates potentially disturbing image motion but this is never perceived: saccadic suppression. This project aims to characterise the neural basis of saccadic suppression using modern techniques. As a result, a prime question in Neuroscience for over 100 years can now be answered.
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    Funded Activity

    Cortical Excitation In Migraine: Using Vision To Understand And Track Brain Excitability

    Funder
    National Health and Medical Research Council
    Funding Amount
    $521,628.00
    Summary
    Migraine is a common neurological condition affecting approximately 15% of adults. Therapies are most effective if used early, yet many people are unable to predict their migraines or to recognize early signs. In addition to headache, key symptoms include abnormal visual and auditory experience. We propose that aspects of vision and hearing will vary systematically according to the current brain status. Our translational goal is to develop tests that allow individuals to better manage migraine.
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    Funded Activity

    Neural Mechanisms Of Optimal Sensory Integration

    Funder
    National Health and Medical Research Council
    Funding Amount
    $522,612.00
    Summary
    This project examines the types of computations used by brain cells to combine two types of sensory information, in a way that allow us to reach better decisions in everyday life. To address this general problem, we will perform experiments that explore the combination of signals from vision and hearing. The ability to combine sensory information is vital to our mental health, and this process is compromised in a range of psychological, psychiatric and neurological disorders.
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    Funded Activity

    Visual Neuromarkers For Autistic Tendency

    Funder
    National Health and Medical Research Council
    Funding Amount
    $337,417.00
    Summary
    While there has been recent excitement about possible treatments for the symptoms of Autism, advances in understanding the underlying neuroscience of abnormal brain function that underlies autistic tendency are still painfully slow. This application aims to establish fully a physiological mechanism for altered autistic perception, to see if it can be applied to early diagnosis in infants and young children and to establish whether in such plastic young brains it is possible to guide perceptual l .... While there has been recent excitement about possible treatments for the symptoms of Autism, advances in understanding the underlying neuroscience of abnormal brain function that underlies autistic tendency are still painfully slow. This application aims to establish fully a physiological mechanism for altered autistic perception, to see if it can be applied to early diagnosis in infants and young children and to establish whether in such plastic young brains it is possible to guide perceptual learning to permanent improvement.
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    Funded Activity

    Functional Anisotropies In The Processing Of Orientation And Direction-of-motion By Human Visual Cortex

    Funder
    National Health and Medical Research Council
    Funding Amount
    $366,164.00
    Summary
    We will study patterns of activity in the human brain to identify the cortical signature of normal visual function. The correspondences between patterns of brain activity and the structure and motion of the visual image in the normal human brain will provide data against which brain activity in a range of disorders from amblyopia to schizophrenia can be assessed.
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    Funded Activity

    Neural Circuits For Residual Vision After Damage To Striate Cortex

    Funder
    National Health and Medical Research Council
    Funding Amount
    $662,220.00
    Summary
    Brain cells have the ability to rearrange their connections to create alternate pathways, which compensate for loss of function following brain damage. To understand why some people become blind after damage to the visual cortex, and some don't, we will determine how neural connections change following lesions in different stages of life. The project will provide important information that may allow future development of treatments for blindness due to stroke or traumatic brain injury.
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    Funded Activity

    Neural Basis Of The Functions Of The Primary Visual Cortex: Roles Of Feedforward And Intracortical Inputs

    Funder
    National Health and Medical Research Council
    Funding Amount
    $486,280.00
    Summary
    Signals from the eyes undergo extensive processing at the level of the primary visual cortex so that basic features in the scene such as lines, edges, colours and movement are coded in the activity of individual neurones. This project aims to further our understanding of this process at the basic cellular level. This will not only enable interventions that would help those with poor sight but also give us an insight into basic brain circuitry and its derangement in many neurological disorders.
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    Funded Activity

    Brain Pathways Serving Conscious And Sub-conscious Vision

    Funder
    National Health and Medical Research Council
    Funding Amount
    $571,444.00
    Summary
    In humans and other primates the visual system comprises evolutionary new pathways (called magnocellular or M, and parvocellular or P) superimposed on evolutionary old pathways (called koniocellular or K). These parallel pathways carry visual information from the retina, through a brain centre in the thalamus called lateral geniculate nucleus (LGN), to the cerebral neocortex. Our aim is to study the role of the K pathway in visual processing.
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    Showing 1-10 of 29 Funded Activites

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