Role Of Placental Retroviral Protein Syncytin Carried On Exosomes In Mediating Vulnerability Of Pregnant Women To Influenza
Funder
National Health and Medical Research Council
Funding Amount
$645,145.00
Summary
50% of the women who died due to swine flu were pregnant. This project will examine if factors produced by the placenta make the pregnant woman more susceptible to influenza.
Pandemic Influenza Containment Strategies In Aboriginal Communities: What Is Acceptable And Feasible?
Funder
National Health and Medical Research Council
Funding Amount
$1,056,688.00
Summary
Influenza is a serious disease with a much greater impact in Indigenous communities. This project will work with Aboriginal communities in NSW, north Qld and WA on modifying the national pandemic influenza plan to develop control strategies that are acceptable to the culture and circumstances of those communities. A template and acceptable process will then be offered to other Indigenous communities, finally leading to negotiation to modify implementation of pandemic influenza plans.
How The Placental Protein Syncytin Impairs Maternal Immune Responses To Influenza
Funder
National Health and Medical Research Council
Funding Amount
$609,862.00
Summary
Pregnant women are known to be highly susceptible to certain viral infections, especially influenza, which results in severe illness and even death. The reason for this transitory susceptibility are unknown. We have found that a protein, Syncytin, has the ability to impair maternal immune responses to influenza We now will determine how it does this and discover potential interventions to reverse these effects.
Protecting Australia And The Region From Emerging And Re-emerging Infectious Diseases.
Funder
National Health and Medical Research Council
Funding Amount
$774,540.00
Summary
The world is facing unprecedented threats from epidemics. In 2014 Ebola showed that issues such as quarantine, personal protective equipment and improved health system capacity are just as critical as drugs and vaccines, yet these are under-researched. Professor MacIntyre is an international expert epidemic control. She will lead a strategic research program to improve control of emerging and re-emerging infections, using her expertise in vaccines, personal protective equipment and biosecurity.
Real Time Models To Inform Prevention And Control Of Emerging Infectious Diseases
Funder
National Health and Medical Research Council
Funding Amount
$549,728.00
Summary
This proposed research addresses the need for real-time tracking of emerging infectious diseases (EID), both spatially and temporally, to inform international and national outbreak response teams, aid in the implementation of real-time containment strategies and ultimately the timely control of emerging infectious diseases. Outcomes will directly enhance & inform policy-making and EID preparedness at a national and international level.
Providing The Evidence To Guide Adult Immunisation Strategies
Funder
National Health and Medical Research Council
Funding Amount
$492,414.00
Summary
Australia's population is ageing and strategies to improve health in older adults are necessary to prevent an increasing burden on our health system. Adult vaccination is a relatively under-researched area with great potential to prevent disease in the population. This project focuses on four common vaccine preventable disease in adults, herpes zoster (shingles), influenza, invasive pneumococcal disease and pertussis. It will identify what their impact is on the health system and what groups of ....Australia's population is ageing and strategies to improve health in older adults are necessary to prevent an increasing burden on our health system. Adult vaccination is a relatively under-researched area with great potential to prevent disease in the population. This project focuses on four common vaccine preventable disease in adults, herpes zoster (shingles), influenza, invasive pneumococcal disease and pertussis. It will identify what their impact is on the health system and what groups of adults would benefit most from vaccination.Read moreRead less
Nanobionic plants. This project aims to develop nanobionic plants as network of semi-permanent sensors capable of rapid, sensitive, selective and unmanned detection and detoxification of chemical warfare agents in aquatic environments and in open air on-site, to allow timely and effective countermeasures. The anticipated goal is to advance the field of advanced manufacturing, environmental change, and nanotechnology with potential to support new national defence capabilities and to value-add Aus ....Nanobionic plants. This project aims to develop nanobionic plants as network of semi-permanent sensors capable of rapid, sensitive, selective and unmanned detection and detoxification of chemical warfare agents in aquatic environments and in open air on-site, to allow timely and effective countermeasures. The anticipated goal is to advance the field of advanced manufacturing, environmental change, and nanotechnology with potential to support new national defence capabilities and to value-add Australian manufacturing industries with innovative, disruptive technologies that lead to achievable opportunities to address its unique needs and to claim Australia’s position within the competitive global manufacturing and defence technology market.Read moreRead less
The control of epidemics requires cross-sectoral engagement across various fields such as health, government, international law and security, at both national and international levels. The changing global landscape poses an increased threat to biosecurity, calling for cross-sectoral collaborative research and engagement. Integrated Systems for Epidemic Response (ISER) will convene and lead multidisciplinary systems research in epidemic response.
Fluid-structural interactions in high-speed flows. This project aims to perform experiments to measure fluid-structure interaction in hypersonic flows. The work will improve the accuracy of simulation tools that are urgently required to aid industry in the design of more structurally efficient and robust high-speed vehicles. These tools will in turn be used to reveal the underlying physics of the fluid-structure interactions and establish the relative significance of the driving parameters. Accu ....Fluid-structural interactions in high-speed flows. This project aims to perform experiments to measure fluid-structure interaction in hypersonic flows. The work will improve the accuracy of simulation tools that are urgently required to aid industry in the design of more structurally efficient and robust high-speed vehicles. These tools will in turn be used to reveal the underlying physics of the fluid-structure interactions and establish the relative significance of the driving parameters. Accurate prediction of the behaviour and lifetime of structural components subject to these fluid-structural interactions, in which the deformation of the structure induced by the local flow field, can in turn influence this flow field. This coupling can result in damage or even catastrophic structural failure and thus robust design tools must be developed to avoid this.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE170101203
Funder
Australian Research Council
Funding Amount
$360,000.00
Summary
Multi-functional antenna arrays for secure and reliable wireless systems. This project aims to develop and validate the fundamental theory and engineering techniques for fully reconfigurable antenna arrays. Multi-functional antennae deliver highly-secure and reliable wireless communications for Australia’s digital economy. Such an antenna array, a critical component of wireless multi-functional systems, can provide full flexibilities of the frequency, polarisation and radiation pattern to satisf ....Multi-functional antenna arrays for secure and reliable wireless systems. This project aims to develop and validate the fundamental theory and engineering techniques for fully reconfigurable antenna arrays. Multi-functional antennae deliver highly-secure and reliable wireless communications for Australia’s digital economy. Such an antenna array, a critical component of wireless multi-functional systems, can provide full flexibilities of the frequency, polarisation and radiation pattern to satisfy the systems’ different requirements. This project is expected to advance the scientific knowledge of several frontiers of antenna research and enhance spectrum usage efficiency, highly-secure wireless communications and compact and reliable military wireless platforms, thus benefiting Australian industry, society and national defence.Read moreRead less