Early Career Industry Fellowships - Grant ID: IE230100098
Funder
Australian Research Council
Funding Amount
$417,000.00
Summary
Hunting high and low: mapping ancient topography to find copper. Transitioning to a decarbonised society requires significant amounts of copper; however, preventing a systems-based exploration approach for copper is the lack of a first-order dataset of the Earth’s surface evolution, known as palaeogeography. This project aims to unearth potential areas of porphyry copper through deep time by developing innovative global palaeogeography reconstructions. Expected outcomes of this project include n ....Hunting high and low: mapping ancient topography to find copper. Transitioning to a decarbonised society requires significant amounts of copper; however, preventing a systems-based exploration approach for copper is the lack of a first-order dataset of the Earth’s surface evolution, known as palaeogeography. This project aims to unearth potential areas of porphyry copper through deep time by developing innovative global palaeogeography reconstructions. Expected outcomes of this project include new quantitative palaeogeography reconstructions, as well as the first well-constrained reconstructions of copper preservation potential. This should provide benefits such as an improved understanding of the porphyry copper lifecycle, with significant impacts for resource exploration and decarbonisation efforts.Read moreRead less
Application Of Machine Learning Techniques To Disease Surveillance To Identify Risk Groups For Blood Borne Viruses And Sexually Transmissible Infections
Funder
National Health and Medical Research Council
Funding Amount
$76,365.00
Summary
Electronic medical records from general practice are used to provide clinically detailed disease surveillance data to inform public health decisions. Risk factor information is not systematically recorded making it difficult to identify risk groups using these data. This PhD will improve surveillance by applying new data science methods to de-identified electronic medical records from general practice to better identify risk groups for blood borne viruses and sexually transmissible infections.
Integrated Community Care For People With Complex Multi-morbidities
Funder
National Health and Medical Research Council
Funding Amount
$2,500,000.00
Summary
The focus of the Centre of Research Excellence (CRE) for Integrated Community Care for People with Complex Multi-morbidities (CRE-CoM) will be on reducing hospitalisation through innovative, high quality, collaborative research of home and community-based service systems, including the development of digital and virtual modes of community-based service delivery.
Evidence Innovation: Transforming The Efficiency Of Systematic Review
Funder
National Health and Medical Research Council
Funding Amount
$928,417.00
Summary
Australia invests considerable resources developing reliable summaries of research evidence to understand the benefits and risks of drugs and health programs. We will use information technologies and ‘crowdsourcing’ to improve the production of evidence summaries, evaluate this approach in a randomised study, and facilitate implementation throughout Australia. This will improve the translation of research into health practice and policy, reducing research waste and improving health outcomes.
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0451713
Funder
Australian Research Council
Funding Amount
$583,605.00
Summary
Completion of the Tasman International Geospace Environment Radar (TIGER). TIGER is part of an international high frequency radar consortium (SuperDARN) studying the coupling of space weather processes to the ionosphere. This is critical for radio, navigation and surveillance networks. TIGER provides important new information because it extends the global radar coverage significantly equatorward, and it can be combined with other radars in Antarctica and Alaska. However, only one of the two T ....Completion of the Tasman International Geospace Environment Radar (TIGER). TIGER is part of an international high frequency radar consortium (SuperDARN) studying the coupling of space weather processes to the ionosphere. This is critical for radio, navigation and surveillance networks. TIGER provides important new information because it extends the global radar coverage significantly equatorward, and it can be combined with other radars in Antarctica and Alaska. However, only one of the two TIGER radars necessary to carry out these studies has been built. This proposal is for completion of the second radar, to be located in New Zealand. The US Air Force has already granted A$443k toward this project.Read moreRead less
Structure of crust on Mars. This project aims to start a new multidisciplinary field linking impact physics and seismology. This project involves numerical modelling of meteoroid impact-induced seismic activity on Mars, using the state-of-the-art hydro-code, a national supercomputing facility, and knowledge built on the meteorite hunting by the Dessert Fireball Network. High-resolution numerical results will aid the analyses of impact-seismic data obtained by the forthcoming InSight mission to M ....Structure of crust on Mars. This project aims to start a new multidisciplinary field linking impact physics and seismology. This project involves numerical modelling of meteoroid impact-induced seismic activity on Mars, using the state-of-the-art hydro-code, a national supercomputing facility, and knowledge built on the meteorite hunting by the Dessert Fireball Network. High-resolution numerical results will aid the analyses of impact-seismic data obtained by the forthcoming InSight mission to Mars (in 2018) with a single important aim, to decipher the crustal structure of Mars, the planet that is the most similar to the Earth in our solar system.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE180100584
Funder
Australian Research Council
Funding Amount
$342,949.00
Summary
Impact processes and evolution of the Martian crust. The project aims to define the crustal structure of Mars, using three-dimensional hydrodynamic modelling, experiments and geophysical data obtained from Mars. This will be achieved by the analysis of impact-related seismic data obtained by the forthcoming mission to Mars, along with already available remote sensing data of Mars. This project will start a new multidisciplinary field linking numerical impact physics and seismology.
Personally Controlled Electronic Health Records For Young Adults With Communication Disabilities: Charting The Course For Successful Child To Adult Health Service Transition.
Funder
National Health and Medical Research Council
Funding Amount
$400,665.00
Summary
Adolescents and young adults with chronic health conditions and communication disabilities struggle to communicate their health information with service providers. This causes problems in care when moving from child to adult health services. This study will investigate their use of the Personally Controlled Electronic Health Record as a means to support timely and effective information exchange to improve healthcare for these vulnerable young adults.
Monitoring The Gap Between Evidence And Vaccination Behaviour By Sampling The Location-specific Consumption Of Health Information From News And Social Media
Funder
National Health and Medical Research Council
Funding Amount
$476,648.00
Summary
Vaccination programs have saved millions of lives in the last decade but vaccine refusal threatens their success. We propose new methods for tracking social media to measure how people in different locations are exposed to different information about vaccines from the media and other sources. This will help us understand why some communities appear to be more susceptible to vaccine hesitancy, and help public health organisations more effectively address the problem of vaccine acceptance.
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE100100054
Funder
Australian Research Council
Funding Amount
$200,000.00
Summary
Next-generation robotic observatories for the remote Antarctic plateau. Australia's astronomers are exceptionally well placed to lead and to partner with major international programs in Antarctic astronomy. These bring Australian industry increased access to cutting-edge technology, and create business opportunities in the infrastructure and support of Antarctic research. This project aims to maintain Australia's lead in Antarctic astronomy and, with the inclusion of a new partnership with Jap ....Next-generation robotic observatories for the remote Antarctic plateau. Australia's astronomers are exceptionally well placed to lead and to partner with major international programs in Antarctic astronomy. These bring Australian industry increased access to cutting-edge technology, and create business opportunities in the infrastructure and support of Antarctic research. This project aims to maintain Australia's lead in Antarctic astronomy and, with the inclusion of a new partnership with Japan, to build upon our existing strong collaboration with China and the USA. Australia's participation in this program also ensures continued technology exchange, and builds our knowledge base in robotics, harsh-environment engineering and computational fluid dynamics, while creating important new astronomical opportunities.Read moreRead less