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Research Topic : MOTOR UNITS
Scheme : Project Grants
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  • Funded Activity

    Volitional And Non-volitional Control Of Human Balance: Normal Physiology And Changes With Ageing

    Funder
    National Health and Medical Research Council
    Funding Amount
    $383,066.00
    Summary
    How does the brain control balance when we stand? Our research shows that two very distinct processes operate to produce distinct postural, perceptual and cardiovascular outcomes. These experiments investigate the neurophysiology that coordinates these systems and what happens with age. The results will fundamentally change views on balance control. Balance problems are common in neurological disorders and old age. Knowing how balance works will improve diagnosis, treatment and rehabilitation.
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    Funded Activity

    High-resolution Brain Imaging Of Basal Ganglia Function

    Funder
    National Health and Medical Research Council
    Funding Amount
    $589,083.00
    Summary
    This project will develop new methods for high resolution MRI imaging of the human brain. We will assess functions of deep brain areas known as the basal ganglia that play a critical role in movement planning and co-ordination. Dysfunction within the basal ganglia is responsible for the motor impairments seen in people with Parkinson’s disease. In this project, we will examine changes in basal ganglia function and structure that lead to individual differences in movement control and learning.
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    Funded Activity

    Motor Functioning In Young People With Attention Deficit Hyperactivity Disorder – Combined Type: A Three-dimensional Motion Analysis Study.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $477,065.00
    Summary
    Attention deficit hyperactivity disorder –combined type (ADHD-CT) is a complex neuropsychiatric disorder with a progressively devastating impact on psychosocial development. The first objective of this study is to use 3D-motion analysis to ‘probe’ the underlying brain dysfunction which characterises ADHD-CT. The second objective of this study is to improve our understanding of the link between movement problems, and (a) injury proneness, and (b) social-communicative problems, in children with AD .... Attention deficit hyperactivity disorder –combined type (ADHD-CT) is a complex neuropsychiatric disorder with a progressively devastating impact on psychosocial development. The first objective of this study is to use 3D-motion analysis to ‘probe’ the underlying brain dysfunction which characterises ADHD-CT. The second objective of this study is to improve our understanding of the link between movement problems, and (a) injury proneness, and (b) social-communicative problems, in children with ADHD-CT.
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    Funded Activity

    Models Of Cerebellar Function During Motor Learning

    Funder
    National Health and Medical Research Council
    Funding Amount
    $384,775.00
    Summary
    The cerebellum is responsible for smooth movements and for learning new patterns of motions, but many details of how it works are unclear. We aim to describe neural activity in the cerebellum while motor learning is in progress, and determine exactly what patterns of activity lead to the acquisition of new types of learned movement. The basic knowledge gained will contribute to a better understanding of cerebellar disorders including nystagmus, ataxia, and loss of motor control with ageing.
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    Funded Activity

    Clarifying The Clinical Application And Mechanisms Of Pedunculopontine Nucleus Deep Brain Stimulation For Parkinson’s Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $202,320.00
    Summary
    Over 64,000 Australians have Parkinson’s disease. Most patients with Parkinson’s disease ultimately develop gait ‘freezing’ and poor balance, which impair quality of life and cause falls. Unfortunately, gait freezing and poor balance often don’t improve with conventional treatments. We are therefore helping to develop a new treatment for these symptoms, which involves implanting a pacemaker into a very deep region in the brain called the “Pedunculopontine Nucleus’.
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    Funded Activity

    Harnessing Neuroplasticity To Improve Motor Performance In Infants With Cerebral Palsy: A Pragmatic Randomized Controlled Trial

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,736,349.00
    Summary
    Every 15 hours an Australian baby is born with cerebral palsy. Despite confidence in early intervention, 50% don't receive intervention before their first birthday while awaiting diagnosis, and 8 of 10 previous trials have not produced any physical gains over and above natural development. We have promising data about a new brain training intervention that harnesses neuroplasticity and improves movement. Our trial will treat 300 infants with early training comparing results to Standard Care.
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    Funded Activity

    Biomechanical, Neural And Sensory Phenotyping Of The Upper Airway In Obstructive Sleep Apnoea

    Funder
    National Health and Medical Research Council
    Funding Amount
    $746,138.00
    Summary
    Obstructive sleep apnoea (OSA) is a common disorder where the upper airway closes repeatedly during sleep. It results in daytime sleepiness, increased risk of accidents and cardiovascular disease. But not all patients are the same, and individually tailored treatments are needed. This project will develop new ways to identify the causes of OSA in individual patients, using new MRI imaging methods, sensory testing, and measurements of the neural activity in the muscles that keep the airway open.
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    Funded Activity

    Neuronal Activity And Variability Underlying Perception And Action

    Funder
    National Health and Medical Research Council
    Funding Amount
    $349,802.00
    Summary
    Perception and behaviour are often unpredictable. We do not identically perceive repeated stimuli, and even professional athletes cannot precisely replicate their actions. This project compares variations in the activity of motion-sensitive neurons in the brain with variability in motion perception and eye movements. This should give insights into how neuronal activity underlies conscious perception and eye movements and may ultimately help treat conditions with impaired control of movement.
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    Funded Activity

    Characterising Post Stroke Neuroplasticity In Humans – Identifying A Critical Window For Rehabilitation

    Funder
    National Health and Medical Research Council
    Funding Amount
    $764,419.00
    Summary
    Despite major investment in care for stroke patients, almost all have persisting disability. Stroke causes loss of brain cells that cannot be replaced. Some recovery is possible through compensatory mechanisms. In addition, intact cells around the stroke undergo growth that is critical for recovery. Animal studies suggest these changes take place in a “critical window” after stroke. Applying therapies in this window should improve outcomes. We will use novel approaches to define the “critical wi .... Despite major investment in care for stroke patients, almost all have persisting disability. Stroke causes loss of brain cells that cannot be replaced. Some recovery is possible through compensatory mechanisms. In addition, intact cells around the stroke undergo growth that is critical for recovery. Animal studies suggest these changes take place in a “critical window” after stroke. Applying therapies in this window should improve outcomes. We will use novel approaches to define the “critical window” in patients after stroke
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    Funded Activity

    Understanding The Organisation Of The Medial Parietal Cortex: Sensorimotor Integration For Goal-directed Behaviour

    Funder
    National Health and Medical Research Council
    Funding Amount
    $551,862.00
    Summary
    Reaching and grasping are of obvious significance for a productive life, and many of the brain areas known to be involved in the direction of arm movements are located in the parietal lobe. Stroke affecting this part of the brain causes disability, as people become unable to reach accurately, or to close their hands around objects with appropriate strength. This project will combine modern physiological and anatomical methods to reveal the brain circuitry responsible for such crucial skills.
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    Showing 1-10 of 52 Funded Activites

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