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2026 ARDC Annual Survey is now open!

The Australian Research Data Commons (ARDC) invites you to participate in a short survey about your interaction with the ARDC and use of our national research infrastructure and services. The survey will take approximately 5 minutes and is anonymous. It’s open to anyone who uses our digital research infrastructure services including Reasearch Link Australia.

We will use the information you provide to improve the national research infrastructure and services we deliver and to report on user satisfaction to the Australian Government’s National Collaborative Research Infrastructure Strategy (NCRIS) program.

Please take a few minutes to provide your input. The survey closes COB Friday 29 May 2026.

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Research Topic : Sudden infant death syndrome
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    Reducing The Effects Of Antenatal Alcohol On Child Health (REAACH)

    Funder
    National Health and Medical Research Council
    Funding Amount
    $2,497,397.00
    Summary
    Use of alcohol in pregnancy can affect the developing baby and cause Fetal Alcohol Spectrum Disorders (FASD). Children with FASD have lifelong brain injury that can lead to poor school performance, poor mental health and trouble with the law. This CRE builds on our strong background in research and community engagement to improve FASD prevention, diagnosis and treatment across Australia.
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    1+1- A Healthy Start To Life:Targeting The Year Before And The Year After Birth In Aboriginal Children In Remote Areas

    Funder
    National Health and Medical Research Council
    Funding Amount
    $587,272.00
    Summary
    Indigenous Australians in remote communities are less healthy and more socially disadvantaged than other Australians. This influences the quality of the intrauterine environment. Babies often suffer malnutrition and recurring infections during infancy which are exacerbated by their less than optimal birth status and contribute to chronic conditions (diabetes, cardiovascular disease, renal failure) in adulthood. Existing health services are costly to Government and do not achieve their potential .... Indigenous Australians in remote communities are less healthy and more socially disadvantaged than other Australians. This influences the quality of the intrauterine environment. Babies often suffer malnutrition and recurring infections during infancy which are exacerbated by their less than optimal birth status and contribute to chronic conditions (diabetes, cardiovascular disease, renal failure) in adulthood. Existing health services are costly to Government and do not achieve their potential for promoting health and providing quality care. Evidence suggests redesigned models based on continuity of care, focused, proactive family support and workload reform will improve maternal and infant outcomes. New models need to be developed, costed, implemented and evaluated providing governments with the evidence base to initiate service improvement. Such models will have applicability elsewhere in Australia. Professor Lesley Barclay and her team of researchers from Charles Darwin University will conduct research into developing such a model. The project aims to improve the quality of care for remote dwelling Aboriginal women and infants in the year before, during and the year after birth by providing evidence for, and facilitating changes to, service delivery. This will enhance the potential for the development of resilience and well-being of their children. It will also test if service improvements can improve the health of women and reduce childhood disease and therefore reduce the impact of health conditions occurring in adulthood which have their origins in the early stages of life.
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    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE210100001

    Funder
    Australian Research Council
    Funding Amount
    $875,000.00
    Summary
    A 3-photon imaging system for deep live imaging. This project aims to establish Australia’s first 3-photon microscope system with adaptive optics for deep intravital imaging. This advanced imaging system will enable researchers to investigate the biology of cells and tissue structures in a wide range of organs and engineered tissues, to a degree not possible with existing technology. This project will capitalise on advanced laser, microscope and adaptive optics technologies with the expected out .... A 3-photon imaging system for deep live imaging. This project aims to establish Australia’s first 3-photon microscope system with adaptive optics for deep intravital imaging. This advanced imaging system will enable researchers to investigate the biology of cells and tissue structures in a wide range of organs and engineered tissues, to a degree not possible with existing technology. This project will capitalise on advanced laser, microscope and adaptive optics technologies with the expected outcomes to include the generation of new knowledge of major biological systems, including the immune system and the nervous system. This will provide significant benefits to fundamental interdisciplinary research into immunology, infectious disease, neuroscience, mechanobiology and engineering.
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