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Research Topic : PERSONAL CONSTRUCT
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  • Funded Activity

    What Makes Effective Teams: Using Personal Construct Theory To Investigate Health Environments

    Funder
    National Health and Medical Research Council
    Funding Amount
    $57,682.00
    More information
    Funded Activity

    Travelling Award For Research Training Scholarship

    Funder
    National Health and Medical Research Council
    Funding Amount
    $7,300.00
    More information
    Funded Activity

    It's Just How You've Been Brought Up! A Study To Explore The Relationship Between Racism & Mental Health In Aust From

    Funder
    National Health and Medical Research Council
    Funding Amount
    $18,842.00
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    Funded Activity

    The Development And Testing Of An Instrument To Measure Personal Control

    Funder
    National Health and Medical Research Council
    Funding Amount
    $249,375.00
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    Funded Activity

    Measurement Of Allergen Exposure

    Funder
    National Health and Medical Research Council
    Funding Amount
    $296,993.00
    More information
    Funded Activity

    Development Of A Wearable Triaxial Accelerometer With Embedded Algorithms To Detect And Prevent Falls In Frail Older Adu

    Funder
    National Health and Medical Research Council
    Funding Amount
    $199,105.00
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    Funded Activity

    Personal Exposure To Fungal Allergens In Asthma

    Funder
    National Health and Medical Research Council
    Funding Amount
    $200,500.00
    Summary
    The main purpose of this study is to understand how airborne fungi affect asthmatics who are allergic to them. Fungi or moulds release large numbers of spores into the air that are inhaled. In many cases fungal spores outnumber other particles that carry allergen, such as pollens or cat dander, by 100 to 1. This makes fungi the most common potential allergen in the environment. Fungi have been associated with respiratory diseases including fungal sinusitis, asthma, rhinitis, allergic alveolitis .... The main purpose of this study is to understand how airborne fungi affect asthmatics who are allergic to them. Fungi or moulds release large numbers of spores into the air that are inhaled. In many cases fungal spores outnumber other particles that carry allergen, such as pollens or cat dander, by 100 to 1. This makes fungi the most common potential allergen in the environment. Fungi have been associated with respiratory diseases including fungal sinusitis, asthma, rhinitis, allergic alveolitis and sick building syndrome. Largely due to their diversity and complexity, allergenic fungi have not been well studied and the ways in which individuals vary when inhaling spores is not known. Unlike other allergenic particles, it is unlikely that fungal spores release their allergen as soon as they are inhaled because we have shown in earlier in vitro studies that fungi continue to release allergen over time and this is likely to be the case when they are inhaled. Our laboratory has developed two new techniques that allow us to measure how many spores people inhale and whether they are allergic to them. This study will use these tools to detect and identify the important allergenic fungi involved in domestic and outdoor exposure of asthmatics, the degree of contribution to the total allergen load to which subjects are exposed and identify in what conditions fungi are the causal agents in location-specific symptoms. This study will also investigate allergen production of fungi in situ in the human nose, which will have application in allergic sinusitis and asthma amongst other respiratory diseases. We will investigate how readily allergenic spores germinate in the nose and under what conditions they release allergen.
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    Funded Activity

    Communication Of Genetic Information In Families: A Randomised Controlled Trial Of A Genetic Counselling Intervention.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $359,728.00
    Summary
    The amount of genetic testing information available to Australians has exploded as a result of the human genome project. Our multi-disciplinary team will investigate the most acceptable and feasible way for important genetic information to be transmitted in families. This study will be a world first trial of a genetic counselling intervention which aims to help patients and health professionals communicate life-changing information in families where there is a serious genetic condition.
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    Funded Activity

    Quantitiative Assessment Of Solar UV Exposure For Vitamin D Synthesis In Australian Adults

    Funder
    National Health and Medical Research Council
    Funding Amount
    $1,162,536.00
    Summary
    This research program will add significantly to our current scientific understanding of the dual health outcomes of UV exposure (Vitamin D and skin cancer) . This project is in line with Australia's R and D Priorities, in that it will result in direct and indirect social and economic benefits to Australia by applying the scientific knowledge gained through this research to develop public health initiatives to improve some of Australia's most significant and costly health problems.
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    Funded Activity

    Exploration Of Exposures Associated With Bedding That Are Risks For Childhood Allergy And Asthma Symptoms

    Funder
    National Health and Medical Research Council
    Funding Amount
    $263,500.00
    Summary
    Asthma prevalence in Australia has doubled in the last 20 years, with 1 in 4 children now affected. House dust mites are probably the single most important allergen associated with asthma. The prevalence of mite allergy is linked to exposure, and such allergy when combined with high exposure, is a potent risk factor for asthma exacerbations. The current international advice for managing mite-allergic asthma, strongly advocates the use of bedding encasings as the best way to reduce exposure. Howe .... Asthma prevalence in Australia has doubled in the last 20 years, with 1 in 4 children now affected. House dust mites are probably the single most important allergen associated with asthma. The prevalence of mite allergy is linked to exposure, and such allergy when combined with high exposure, is a potent risk factor for asthma exacerbations. The current international advice for managing mite-allergic asthma, strongly advocates the use of bedding encasings as the best way to reduce exposure. However, three recent major trials using encasings and a meta-analysis of earlier trials all fail to show a clinical benefit. One of the applicants (ET) recently showed, using expertise in measuring personal exposure, that these encasings, as used, fail to significantly reduce aeroallergen exposure. By contrast, 3 recent Australian studies, involving the applicants, AK, ALP and NG showed that feather bedding compared to synthetic bedding, was strongly protective for asthma - the opposite of public advice. The suggested mechanisms involve reduced exposure to mite allergens, or altered exposure to bacterial endotoxin, but persuasive experimental support is lacking. We also propose a novel hypothesis that feather exposure may induce allergic 'tolerance'. Currently there is a lack of certainty about valid approaches to prevent asthma, and the Global Initiative for Asthma has described the need to understand mechanisms and improve interventions as urgent. This project is an ideal opportunity to combine the expertise of the CIA (ET) in measuring airborne exposures (mite, endotoxin, proteins) with that of the others who have expertise in children's asthma, and who are already involved in two large clinical trails involving different bedding and allergen avoidance. Our measurements of these bedding exposures and their clinical outcomes will provide, for the first time, a quantitative basis to refine public health allergen-based interventions to prevent and manage asthma.
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