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Research Topic : Cognitive Behaviour Therapy
Scheme : NHMRC Project Grants
Australian State/Territory : SA
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  • Funded Activity

    Can Decision Analytic Modelling Promote Clinical Translation Of Personalised Medicine Markers For Oncology Drugs?

    Funder
    National Health and Medical Research Council
    Funding Amount
    $69,893.00
    Summary
    Personalised medicine is an approach that has great potential to improve healthcare. There has been limited success to date, however, in utilising proposed tests in the clinical. It is proposed that use of mathematical models early in the development of personalised medicine tests will allow early understanding of the value that the test will have for patients and society. Such insight will help build a strong case to undertake the research required before personalised medicine can be more widel .... Personalised medicine is an approach that has great potential to improve healthcare. There has been limited success to date, however, in utilising proposed tests in the clinical. It is proposed that use of mathematical models early in the development of personalised medicine tests will allow early understanding of the value that the test will have for patients and society. Such insight will help build a strong case to undertake the research required before personalised medicine can be more widely used to improve treatment for cancer.
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    Funded Activity

    Life! Diabetes Prevention Program: A Randomised Cluster Control Trial Of Its Efficacy And Cost Effectiveness

    Funder
    National Health and Medical Research Council
    Funding Amount
    $866,066.00
    Summary
    Type 2 diabetes is a great and growing epidemic, and Australia's largest public health challenge. Life! is a diabetes prevention program for 25,000 Victorians. This proposal will look at its efficacy, effectiveness and cost effectiveness so that more improvements can be made.
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    Funded Activity

    Randomised Double-blind Controlled Trial Of Oxygen Versus Air To Palliate Intractable End-of-life Dyspnoea When Pa02 >55

    Funder
    National Health and Medical Research Council
    Funding Amount
    $463,318.00
    Summary
    Shortness of breath at the end-of-life is one of the most feared symptoms. Unlike most other symptoms, it worsens as death approaches. Despite the fact that more than 50,000 Australian will die an expected death in the next year, of whom the majority will have breathlessness toward the end-of-life, we know little about how best to treat this symptom. Oxygen is frequently introduced but we have not identified whether it is more effective than medical air, and, if it is more effective, which patie .... Shortness of breath at the end-of-life is one of the most feared symptoms. Unlike most other symptoms, it worsens as death approaches. Despite the fact that more than 50,000 Australian will die an expected death in the next year, of whom the majority will have breathlessness toward the end-of-life, we know little about how best to treat this symptom. Oxygen is frequently introduced but we have not identified whether it is more effective than medical air, and, if it is more effective, which patients would most benefit from it. Because of this lack of evidence, oxygen is only funded in Australia in community settings for people who have severely low oxygen levels in their blood. Palliative oxygen is provided on a compassionate basis at times but this is on an ad hoc basis and does not ensure equitable access for people at the end of life who experience shortness of breath. This multi-centre study will compare oxygen and air, with neither the participant nor caring clinicians knowing which treatment they will receive. After careful explanation, volunteers who agree to participate will be asked to use the oxygen machine for at least 15 hours each day for 7 days and fill out a diary twice each day. Five centres across Australia are planning to enroll 240 participants in this study. Outcomes will include whether the sensation of breathlessness has improved, the overall quality of life while being treated, the ability to perform activities of daily living and any side effects experienced. This study is eagerly awaited by clinicians and health planners not only in Australia but in North America and Europe. This study will provide data in a long-standing international debate about the role of oxygen in people with relatively normal levels of oxygen in their blood who suffer from shortness of breath at the end-of-life.
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    Funded Activity

    Predicting Human Drug Metabolism And Kinetics: In Vitro And In Silico Approaches

    Funder
    National Health and Medical Research Council
    Funding Amount
    $439,500.00
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    Funded Activity

    Effects Of The Fatty Acid, Lauric Acid, On Energy Intake And Gut Motor And Hormonal Function In Health And Obesity

    Funder
    National Health and Medical Research Council
    Funding Amount
    $744,645.00
    Summary
    Obesity is largely due to energy intake exceeding energy expenditure, thus, strategies that reduce energy intake will result in weight loss. We discovered recently that the fatty acid, lauric acid, markedly reduces energy intake. Our studies will determine the effects of lauric acid on energy intake and body weight reduction in obese subjects. The research is a new initiative and explores the potential of lauric acid as a novel, nutrient-based and side-effect free approach to obesity management.
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    Funded Activity

    Synchrotron X-ray Assessment Of Airway Surface Physiology For Cystic Fibrosis

    Funder
    National Health and Medical Research Council
    Funding Amount
    $778,228.00
    Summary
    We seek a cure or long-lasting therapy for the fatal airway disease in cystic fibrosis. Disease is caused by a shallow and dehydrated airway surface liquid (ASL), allowing bacteria to infect the lung. We can introduce a corrective gene into mouse airways where it can be effective for over 1 yr, but no fast, accurate and non-invasive measurement exists to test if treatments are successful. We will develop methods using synchrotron light to directly measure ASL depth changes in live mouse airways.
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    Showing 1-6 of 6 Funded Activites

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