Reconsidering Australian media art history in an international context. This project will establish an unprecedented platform for the promotion and understanding of historic media art works from Australia in a burgeoning international media art scene. It will place Australian media art history within an international context by connecting with established networks of scholars and web resources worldwide. The research outcome, a foundational online resource, will provide future artists and curato ....Reconsidering Australian media art history in an international context. This project will establish an unprecedented platform for the promotion and understanding of historic media art works from Australia in a burgeoning international media art scene. It will place Australian media art history within an international context by connecting with established networks of scholars and web resources worldwide. The research outcome, a foundational online resource, will provide future artists and curators with a cohesive overview of Australian media art's recent milestones and developments, crucial to making significantly innovative new works. The project will not only follow international best practice but lead in the development of new interoperability standards for rich-media web resources.Read moreRead less
From The Synchrotron To The Clinic: Translation Of A Novel Functional Lung Imaging Technology
Funder
National Health and Medical Research Council
Funding Amount
$891,834.00
Summary
Our team has recently developed a synchrotron technology with a startling capacity for dynamic functional imaging that can act as a sensitive regional indicator of lung disease. We will demonstrate that this technology can be translated from the synchrotron to the lab and eventually the clinic. We will provide proof of this concept by the application of this technology to emphysema, asthma, lung cancer, cystic fibrosis lung disease and neonatal resuscitation.
Creative Micro-computing in Australia, 1976-1992. 1980s micro-computers introduced many to the digital age. Despite the importance of early micro-computing to the digital present, this early period is yet to be scrutinised by digital media scholars. This project recovers the local history of this most important media technology in the period 1976-1992, across the spectrum of practices in digital arts and culture. Delving deeply into the history of creative software and hardware practices, seekin ....Creative Micro-computing in Australia, 1976-1992. 1980s micro-computers introduced many to the digital age. Despite the importance of early micro-computing to the digital present, this early period is yet to be scrutinised by digital media scholars. This project recovers the local history of this most important media technology in the period 1976-1992, across the spectrum of practices in digital arts and culture. Delving deeply into the history of creative software and hardware practices, seeking to understand early users and their encounters with computers, and collating metadata on the products of their practice, this project builds the foundation for securing and remembering Australian digital cultural heritage.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE120100229
Funder
Australian Research Council
Funding Amount
$250,000.00
Summary
A prototype Scanning Helium Atom Microscope (SHeM) for soft materials. The scanning helium atom microscope (SHeM) has been a tantalising prospect since the birth of quantum physics. The SHeM would have unparalleled resolution and would be completely non-damaging; potentially revolutionising the imaging of soft delicate materials. This project will develop the first SHeM instrument in Australia to study soft matter.
Only at the movies: mapping the contemporary Australian cinema market. Only at the movies? is a three-year project that asks: What is the enduring appeal of cinemagoing and how is it changing? It will provide detailed analyses of formal film exhibition and distribution in Australia by combining economic, cultural and geospatial research with industry expertise.
Epilepsy: Molecular Basis And Mechanisms In The Era Of Functional Genomics
Funder
National Health and Medical Research Council
Funding Amount
$12,062,533.00
Summary
The team comprises of neurologists with a special interest in epilepsy (both adult and child) molecular geneticists, physiologists and brain imaging specialists. The team leads the world in the discovery of the genetic causes of epilepsy and epilepsy associated with intellectual disability. The team will continue to identify the genes underlying epilepsy, and study how genetic variations result in the development of seizures and will continue to develop advanced imaging techniques for these stud ....The team comprises of neurologists with a special interest in epilepsy (both adult and child) molecular geneticists, physiologists and brain imaging specialists. The team leads the world in the discovery of the genetic causes of epilepsy and epilepsy associated with intellectual disability. The team will continue to identify the genes underlying epilepsy, and study how genetic variations result in the development of seizures and will continue to develop advanced imaging techniques for these studies. This will include extensive laboratory studies, including the development of mice with the exact mutations that we find in the human condition. Stateof-the-art imaging techniques with magnetic resonance and positron emission tomography are used in human subjects to further understand the effects of the mutations on the structure and function of the brain. This will allow deep understanding of how seizures develop and may lead to new diagnostic methods and treatments. The laboratory and clinical aspects of the research are tightly integrated in this internationally leading collaborative program.Read moreRead less
Multi-channel reconfigurable high dynamic range digital receivers. Wireless communication systems have important defence and commercial applications, most obviously in the form of the mobile telephone network. Future wireless systems will require much higher levels of performance, in the form of ability to receive and distinguish signals from multiple sources that are physically close together and transmit on similar frequencies.
In this project we will develop a test system that will allow us ....Multi-channel reconfigurable high dynamic range digital receivers. Wireless communication systems have important defence and commercial applications, most obviously in the form of the mobile telephone network. Future wireless systems will require much higher levels of performance, in the form of ability to receive and distinguish signals from multiple sources that are physically close together and transmit on similar frequencies.
In this project we will develop a test system that will allow us to undertake research on new algorithms that will achieve these higher levels of performance. Our objective is to demonstrate dramatic improvements in the capabilities of receivers for future generation mobile phone and defence surveillance systems.
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