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Research Topic : FLUID HOMEOSTASIS
Australian State/Territory : VIC
Socio-Economic Objective : Biological sciences
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Fluidization And Fluid Mechanics (2)
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  • Funded Activity

    Discovery Projects - Grant ID: DP1093383

    Funder
    Australian Research Council
    Funding Amount
    $255,000.00
    Summary
    Numerical simulation of the fish-like swimming of linked bodies. Although Zoologists have made detailed observations of swimming fish there are still many unanswered questions about how they swim. We do not know how the fins and undulating body work together to produce the high speed of the tuna, or the fast turns of a fish escaping danger. We see dolphins swim through the sea's surface but we don't know if they do that because it is much more efficient. This project is designed to simulate arb .... Numerical simulation of the fish-like swimming of linked bodies. Although Zoologists have made detailed observations of swimming fish there are still many unanswered questions about how they swim. We do not know how the fins and undulating body work together to produce the high speed of the tuna, or the fast turns of a fish escaping danger. We see dolphins swim through the sea's surface but we don't know if they do that because it is much more efficient. This project is designed to simulate arbitrary fish motion and give answers to these and other questions concerning swimming. It may also help humans to swim more efficiently and provide simulation tools for the design of robotic undersea vehicles.
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    Funded Activity

    Discovery Projects - Grant ID: DP0877517

    Funder
    Australian Research Council
    Funding Amount
    $285,000.00
    Summary
    Advanced fluid mechanics modelling of complex leukocyte-endothelial interactions. This project adopts an interdisciplinary approach toward understanding the mechanical interactions between blood cells and vessel walls, under different hydrodynamic conditions. Outcomes will have downstream benefits to vascular biology in relation to diagnosis of problems such as atherosclerotic plaques. These vascular problems are associated with several major health problems including coronary heart disease, h .... Advanced fluid mechanics modelling of complex leukocyte-endothelial interactions. This project adopts an interdisciplinary approach toward understanding the mechanical interactions between blood cells and vessel walls, under different hydrodynamic conditions. Outcomes will have downstream benefits to vascular biology in relation to diagnosis of problems such as atherosclerotic plaques. These vascular problems are associated with several major health problems including coronary heart disease, hypertension, stroke, diabetes and kidney dysfunction.
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    Funded Activity

    Discovery Projects - Grant ID: DP0878304

    Funder
    Australian Research Council
    Funding Amount
    $262,000.00
    Summary
    Fluid mechanical and biological studies of a stem cell bioreactor. The project has generic benefits toward the improvement of cell and tissue based approaches to diseases which involve replacement of dysfunctional, injured or missing tissues. This is currently a global effort with the overall aim of improving medicine by improving methods in biological sciences. The development of improved bioreactors and other biotechnologies will also have commercial benefits toward the development of effici .... Fluid mechanical and biological studies of a stem cell bioreactor. The project has generic benefits toward the improvement of cell and tissue based approaches to diseases which involve replacement of dysfunctional, injured or missing tissues. This is currently a global effort with the overall aim of improving medicine by improving methods in biological sciences. The development of improved bioreactors and other biotechnologies will also have commercial benefits toward the development of efficient production systems to replace existing systems which are labour intensive and time consuming.
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    Showing 1-3 of 3 Funded Activites

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