The Implications of the Convention on Biological Diversity for Infectious Diseases: The Case of Indonesia and Avian Flu. The proposal dovetails with the ARC's National Research Priority Safeguarding Australia while responding to an identified need for multidisciplinary research in biotechnology, economics, epidemiology, law, and public health. A keen national imperative exists to develop appropriate responses to infectious disease which balances policies predicated upon rule-of-law principles ag ....The Implications of the Convention on Biological Diversity for Infectious Diseases: The Case of Indonesia and Avian Flu. The proposal dovetails with the ARC's National Research Priority Safeguarding Australia while responding to an identified need for multidisciplinary research in biotechnology, economics, epidemiology, law, and public health. A keen national imperative exists to develop appropriate responses to infectious disease which balances policies predicated upon rule-of-law principles against imperatives to safeguard public health through vaccine R&D. Read moreRead less
A Consumer Bankruptcy Project - an interdisciplinary empiric inquiry into determinants and impacts of bankruptcy upon Australian debtors. The research will enhance the wellbeing of Australian society by obtaining a better understanding of the profile of bankrupt debtors, the reasons for personal default and the impact of the regulatory framework upon all stakeholders. It will draw parallels with US trends and apply an interdisciplinary empiric method to Australian personal insolvency data. The r ....A Consumer Bankruptcy Project - an interdisciplinary empiric inquiry into determinants and impacts of bankruptcy upon Australian debtors. The research will enhance the wellbeing of Australian society by obtaining a better understanding of the profile of bankrupt debtors, the reasons for personal default and the impact of the regulatory framework upon all stakeholders. It will draw parallels with US trends and apply an interdisciplinary empiric method to Australian personal insolvency data. The research will lead to an informed debate around critical wider issues such as financial literacy, managing money and self-funded retirement that impact upon the physical and material health of all Australians. The project promotes the reduction of financial distress and dependence in assisting efforts to shift the risk of economic burden of an ageing population from the Commonwealth.Read moreRead less
The separation of carbon dioxide from industrial sources using nanoporous carbon. Carbon nanotubes and nanoporous carbon membranes offer the possibility of low cost energy efficient separations of gas mixtures. Possible applications include the purification of greenhouse gases for sequestration and the purification of hydrogen from reformer gas for use in a hydrogen energy economy. The proposed project involves the development of mathematical models and computer simulations to understand and ....The separation of carbon dioxide from industrial sources using nanoporous carbon. Carbon nanotubes and nanoporous carbon membranes offer the possibility of low cost energy efficient separations of gas mixtures. Possible applications include the purification of greenhouse gases for sequestration and the purification of hydrogen from reformer gas for use in a hydrogen energy economy. The proposed project involves the development of mathematical models and computer simulations to understand and optimise the nanoporous structure for different gas separations, and experimental research to produce the carbon nanoporous materials and determine their effectiveness of gas separation.Read moreRead less
Male germ line transgenesis and siRNA technology for manipulating genes in domestic species. Professor Shemesh has successfully developed male germ line transgenesis in species such as bovine and chicken. This technology allows genes to be manipulated via sperm in a wide range of animals besides mice, avoiding the need for a female in vitro fertilization regimen. He is curently applying interference RNA (siRNA) transgenically to manipulate genes in vivo. Together these two technologies offer imm ....Male germ line transgenesis and siRNA technology for manipulating genes in domestic species. Professor Shemesh has successfully developed male germ line transgenesis in species such as bovine and chicken. This technology allows genes to be manipulated via sperm in a wide range of animals besides mice, avoiding the need for a female in vitro fertilization regimen. He is curently applying interference RNA (siRNA) transgenically to manipulate genes in vivo. Together these two technologies offer immense possibilities to manipulate a wide range of species for economic, biotechnological or medical research purposes. Professor Shemesh wishes to come to Adelaide to establish these technologies there as parts of ongoing research projects, related to the physiology of the ovarian hormone relaxin in aging research.Read moreRead less
The nexus of law and biology for emerging technologies. At the beginning of the 21st century, biological information has never been more important to law. With the goal of enhancing economic development, the proposed collaboration synthesizes key concepts from jurisprudence and biology. Key research sites of national and international teams- (1) Biologic, Legal Logic; (2) Medical Genetics and Consumers; (3) Feminism, Law, Biology and (4) Biotechnology, Ethics, Environment - explore specific leg ....The nexus of law and biology for emerging technologies. At the beginning of the 21st century, biological information has never been more important to law. With the goal of enhancing economic development, the proposed collaboration synthesizes key concepts from jurisprudence and biology. Key research sites of national and international teams- (1) Biologic, Legal Logic; (2) Medical Genetics and Consumers; (3) Feminism, Law, Biology and (4) Biotechnology, Ethics, Environment - explore specific legal implications of biological information and synergise the intersections. Outcomes and benefits include enhanced communication between jurisprudence and biology, important fora for the disciplines to learn about each other and an internationally recognised national research institute of Law and Biology based in Brisbane.Read moreRead less
The Future of Oceans Governance in Polar Areas. Australia has a compelling national interest in maintaining its sovereignty and security in the Antarctic. Australian government goals include maintaining the Antarctic Treaty System (ATS); enhancing Australia's influence within the system; protecting the Antarctic environment; understanding the role of Antarctica in the global climate system; and undertaking scientific work of practical, economic and national significance. This project directly ad ....The Future of Oceans Governance in Polar Areas. Australia has a compelling national interest in maintaining its sovereignty and security in the Antarctic. Australian government goals include maintaining the Antarctic Treaty System (ATS); enhancing Australia's influence within the system; protecting the Antarctic environment; understanding the role of Antarctica in the global climate system; and undertaking scientific work of practical, economic and national significance. This project directly addresses national research priorities through analysis of oceans governance issues that centre on Australian interests. This project will also contribute to national benefit by focusing on issues central to the International Polar Year.Read moreRead less
Expand the capacity of an international multidisciplinary research network focussed on the ethical, legal and social implications of emerging biotechnologies. This project will ensure that Australia plays a central role in international debates and research activities aimed at regulating and facilitating advances in biotechnology. The project will also provide Australian researchers with direct access to key international experts in the field.
Interfacial interactions with hydrogel biomaterials. The interactions between cells of the body and the surfaces of medical implants are controlled largely by the molecules that are adsorbed on the surface. The aim of this project is to evaluate the effect of modifying hydrogel biomaterials on the interactions of the molecules with the hydrogel. This, in turn, allows us to determine the factors affecting the control of the cell's response. The significance of this work is in the improved ability ....Interfacial interactions with hydrogel biomaterials. The interactions between cells of the body and the surfaces of medical implants are controlled largely by the molecules that are adsorbed on the surface. The aim of this project is to evaluate the effect of modifying hydrogel biomaterials on the interactions of the molecules with the hydrogel. This, in turn, allows us to determine the factors affecting the control of the cell's response. The significance of this work is in the improved ability to control cellular responses to implants. Such improved response will result in better health outcomes for patients, and outcomes in the form of papers and intellectual property.
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Combining the soft with the hard: The assembly of artificial cell membranes on porous semiconductors. The platform technologies developed in this project will have a wide range of applications. They will reveal new insights into drug-membrane and drug-protein interactions underpinning development of a new generation of drugs acting on transmembrane proteins that are linked to a wide range of diseases. The development of membrane-based biosensing devices targeting ion channels, membrane active pe ....Combining the soft with the hard: The assembly of artificial cell membranes on porous semiconductors. The platform technologies developed in this project will have a wide range of applications. They will reveal new insights into drug-membrane and drug-protein interactions underpinning development of a new generation of drugs acting on transmembrane proteins that are linked to a wide range of diseases. The development of membrane-based biosensing devices targeting ion channels, membrane active peptides or toxins which can be applied to biomedical diagnostics, biotoxin detection, environmental and food control will be readily achievable. This international interdisciplinary nanobiotechnology programme and its outcomes will enhance Australia's abilities in frontier technologies and build research strength in nanobiotechnology.Read moreRead less
Unsteady-State Operation of Slurry and Fixed-Bed Fischer-Tropsch Reactors for Improved Process Performance. The development of efficient gas-to-liquid processes via the Fischer-Tropsch reaction is the most economically viable route for the production of non-petroleum based chemicals and environmentally-friendly fuels from abundant natural gas. This investigation proposes the exploitation of both reactor and catalyst dynamics behaviour to obtain higher hydrocarbon synthesis rate and selectivity n ....Unsteady-State Operation of Slurry and Fixed-Bed Fischer-Tropsch Reactors for Improved Process Performance. The development of efficient gas-to-liquid processes via the Fischer-Tropsch reaction is the most economically viable route for the production of non-petroleum based chemicals and environmentally-friendly fuels from abundant natural gas. This investigation proposes the exploitation of both reactor and catalyst dynamics behaviour to obtain higher hydrocarbon synthesis rate and selectivity not attainable under conventional steady-state operation. With current market conditions of about US$30/bbl for crude oil, even modest process improvements of 30-60% will make the process competitive. Whilst individual national energy policy goals are promoted, the research will further strengthen closer economic and technology ties between France and Australia.Read moreRead less