Special Research Initiatives - Grant ID: SR200200711
Funder
Australian Research Council
Funding Amount
$229,108.00
Summary
Reimagining Norfolk Island's Kingston and Arthur's Vale Historic Area. The proposed project aims to explore the role living heritage sites play in resisting or reinforcing cultural injustices faced by colonial subjects. Focusing on the World Heritage Listed Kingston and Arthur’s Vale Historic Area, the project's significance lies in generating new understandings about Pitcairn Settler descendants’ struggles for recognition and self-determination. Expected outcomes of the project include developi ....Reimagining Norfolk Island's Kingston and Arthur's Vale Historic Area. The proposed project aims to explore the role living heritage sites play in resisting or reinforcing cultural injustices faced by colonial subjects. Focusing on the World Heritage Listed Kingston and Arthur’s Vale Historic Area, the project's significance lies in generating new understandings about Pitcairn Settler descendants’ struggles for recognition and self-determination. Expected outcomes of the project include developing the cultural justice approach as a conceptual and methodological tool and co-creating public history outputs with the community. Benefits include raising awareness about cultural injustices against Pitcairn Settler descendants and capacity building for the community to enhance senses of ownership over their heritage.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE200100029
Funder
Australian Research Council
Funding Amount
$700,000.00
Summary
High Resolution PET-CT for Small Animal Molecular and Anatomical Imaging. This project will integrate a next generation small animal PET-CT instrument into the Sydney Imaging multi-modality imaging ecosystem. PET-CT enables the investigation of molecular function and anatomical structure in complex living organisms. This platform will enable research as diverse as the development and in-vivo characterisation of new chemical probes and nanoparticles that bind to specific protein targets in the bo ....High Resolution PET-CT for Small Animal Molecular and Anatomical Imaging. This project will integrate a next generation small animal PET-CT instrument into the Sydney Imaging multi-modality imaging ecosystem. PET-CT enables the investigation of molecular function and anatomical structure in complex living organisms. This platform will enable research as diverse as the development and in-vivo characterisation of new chemical probes and nanoparticles that bind to specific protein targets in the body, investigating mechanisms of brain plasticity in predictive learning, understanding the molecular pathways involved in neurodegeneration and cancer, developing novel methods for multi-modal image analysis, and developing and validating new radiation detectors for the next generation of imaging technology.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE200101511
Funder
Australian Research Council
Funding Amount
$424,816.00
Summary
Structural insights into activation, dynamics and bias of GPCRs. The project aims to investigate the mechanisms underlying activation, biased agonism and G protein selectivity of G protein-coupled receptors (GPCRs) by utilising the adenosine A1 receptor as a model system. This project expects to generate knowledge in the area of GPCR biology using an interdisciplinary approach including structural biology, pharmacology, biochemistry and protein engineering. The expected outcomes include (i) unde ....Structural insights into activation, dynamics and bias of GPCRs. The project aims to investigate the mechanisms underlying activation, biased agonism and G protein selectivity of G protein-coupled receptors (GPCRs) by utilising the adenosine A1 receptor as a model system. This project expects to generate knowledge in the area of GPCR biology using an interdisciplinary approach including structural biology, pharmacology, biochemistry and protein engineering. The expected outcomes include (i) understanding the structural mechanisms underlying GPCR activation, (ii) biased agonism and (iii) G protein selectivity. This should provide significant benefits, such as advancement of fundamental knowledge in GPCR biology and pharmacology that could also one day lead to therapeutic development.Read moreRead less
ARC Centre of Excellence in Population Ageing Research. This Centre intends to generate crucial knowledge to inform social and economic responses to population ageing, one of the most important issues of the 21st century. Population ageing exerts unprecedented pressures on social norms and policy institutions, both in Australia and around the world. Leading researchers from a range of disciplines will undertake multidisciplinary research to help governments, businesses, and consumers prepare for ....ARC Centre of Excellence in Population Ageing Research. This Centre intends to generate crucial knowledge to inform social and economic responses to population ageing, one of the most important issues of the 21st century. Population ageing exerts unprecedented pressures on social norms and policy institutions, both in Australia and around the world. Leading researchers from a range of disciplines will undertake multidisciplinary research to help governments, businesses, and consumers prepare for and make better decisions for an ageing world, with consequent social and economic benefits for families and communities expected to flow to Australia, the Asian region and the world.Read moreRead less
Australian labour market adjustment to technology, trade and policy. This project aims to examine how the Australian labour market has adjusted over the past 30 years to several major developments: increased use of computers, growth in international trade and the mining boom, microeconomic reform, and the expansion of higher education. The analysis is designed to encompass the effect on labour market outcomes including workers’ pay, the skill composition of employment, migration flows and indivi ....Australian labour market adjustment to technology, trade and policy. This project aims to examine how the Australian labour market has adjusted over the past 30 years to several major developments: increased use of computers, growth in international trade and the mining boom, microeconomic reform, and the expansion of higher education. The analysis is designed to encompass the effect on labour market outcomes including workers’ pay, the skill composition of employment, migration flows and individuals’ decisions about acquiring education. Having a richer understanding of how the labour market has adjusted in the past may help policy-makers to infer how adjustment will happen in the future. For example, a better understanding of the effects of new technologies would provide a stronger basis for judging trends in job creation and hence the types of skills and training that will be required in Australia in future years.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE190100800
Funder
Australian Research Council
Funding Amount
$371,000.00
Summary
Technological change: impacts on labour, capital and policy. This project aims to investigate how technological progress, its dissemination and heterogeneous adoption, shapes our economy and affects individual wellbeing. New technologies often complement certain workers, tasks or sectoral activities. This project will focus on the complementarities associated with a range of skills and age or experience of workers, and will model the dynamics and heterogeneous effects of technological changes. T ....Technological change: impacts on labour, capital and policy. This project aims to investigate how technological progress, its dissemination and heterogeneous adoption, shapes our economy and affects individual wellbeing. New technologies often complement certain workers, tasks or sectoral activities. This project will focus on the complementarities associated with a range of skills and age or experience of workers, and will model the dynamics and heterogeneous effects of technological changes. The proposed novel framework will incorporate multiple dimensions of skill and capital. Combining this framework with more than 50 years of data, the project will analyse the effects of technological change on wage structure and earnings distribution, individual decisions about time allocation and retirement.Read moreRead less
Skills, productivity, and wages: Theory and evidence . This project aims to build a macroeconomic model to help understand the implications of heterogeneity in workers skills for wages and productivity.
The research significance of this project is in its treatment of worker skills as an indivisible bundle. This bundling of skills gives rise to the possibility that a given skill is priced differently in different occupations which in turn has implications for firms' incentives to invest in tech ....Skills, productivity, and wages: Theory and evidence . This project aims to build a macroeconomic model to help understand the implications of heterogeneity in workers skills for wages and productivity.
The research significance of this project is in its treatment of worker skills as an indivisible bundle. This bundling of skills gives rise to the possibility that a given skill is priced differently in different occupations which in turn has implications for firms' incentives to invest in technology and training and workers' incentives to invest in education.
This project uses state of the art economic theory and empirical methods and expects to provide a new and better understanding of the sources of wage growth that helps guide national policy formation in innovation and training.
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Supercritical-microfluidics technology for targeted delivery to the colon. This research will develop nanosystems to target delivery of drugs to the colon. Our nanosystems will permit the combination of clinically used chemotherapy drugs within a single dosage form. This will improve the efficiency of delivery to the colon while reducing unwanted side-effects. A novel supercritical microfluidics system will be developed to produce therapeutic nano-carriers in a continuous mode with lower labour ....Supercritical-microfluidics technology for targeted delivery to the colon. This research will develop nanosystems to target delivery of drugs to the colon. Our nanosystems will permit the combination of clinically used chemotherapy drugs within a single dosage form. This will improve the efficiency of delivery to the colon while reducing unwanted side-effects. A novel supercritical microfluidics system will be developed to produce therapeutic nano-carriers in a continuous mode with lower labour requirement, higher production rate and better quality control than conventional production methods. The new process will combine benefits from both supercritical fluid technology (green process) and microfluidics (high mass & heat transfer).Read moreRead less
The Systems Biochemistry of Adaptation in Cellular Protein Networks. A living cell must process and interpret a host of diverse signals using a complex network of interacting proteins inside the cell. The detailed molecular mechanisms by which cells exhibit adaptation to these signals remains a fundamental question in biology. This project aims to develop a novel mathematical framework for analysing the capacity of intracellular protein interactions to contribute to cellular adaptation, along ....The Systems Biochemistry of Adaptation in Cellular Protein Networks. A living cell must process and interpret a host of diverse signals using a complex network of interacting proteins inside the cell. The detailed molecular mechanisms by which cells exhibit adaptation to these signals remains a fundamental question in biology. This project aims to develop a novel mathematical framework for analysing the capacity of intracellular protein interactions to contribute to cellular adaptation, along with a novel methodology for validating mathematical models against experimental data. These innovations offer a completely fresh approach to identifying and modulating the adaptive capacities of living cells, which may contribute to overcoming the problem of drug resistance in future therapeutic development.
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Using Drosophila to analyse a master regulator of epithelial homeostasis. Aims:
This proposal aims to use genetic and cell biological analysis of the vinegar fly, Drosophila, to identify the function of the grainyhead gene in intestinal regeneration.
Significance:
This gene is conserved in all animal species and appears to be a master regulator of epithelial tissue development but it is unclear how it can both influence stem cell maintenance and production of functional cell types.
Expected out ....Using Drosophila to analyse a master regulator of epithelial homeostasis. Aims:
This proposal aims to use genetic and cell biological analysis of the vinegar fly, Drosophila, to identify the function of the grainyhead gene in intestinal regeneration.
Significance:
This gene is conserved in all animal species and appears to be a master regulator of epithelial tissue development but it is unclear how it can both influence stem cell maintenance and production of functional cell types.
Expected outcomes:
We will identify a new mechanism that governs tissue development, and introduce new imaging and genetic technologies to the Australian research community.
Benefit:
We expect potential economic and commercial interest in development of new gene analysis tools and biotechnological tissue manipulation applications.Read moreRead less