Potential true theranostic agent for cancer produced
Scandium 47, a therapeutic radioisotope and potential theranostic, has been produced for the first time at ANSTO. Theranostics are used to both diagnose and treat disease.
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Scandium 47, a therapeutic radioisotope and potential theranostic, has been produced for the first time at ANSTO. Theranostics are used to both diagnose and treat disease.
Planetary science is an emerging research theme in Australia, and research at ANSTO is embedded in the heart of this.
Samples and techniques on the Far Infrared beamline at the Australian Synchrotron.
PhD candidate Vienna Wong is using her FutureNow Scholarship to research ultra-high temperature ceramics, which are emerging materials for extreme environments.
It is critical across many industries to identify and locate sources of radiation accurately and quickly. One of the more challenging aspects of dealing with radiation is that you cannot see it directly, which can result in potential exposure when working in those environments.
ANSTO scientists were members of an inter-disciplinary team led by the University of Sydney, who examined six 19th century West African swords, using a non-invasive multi-methodological approach to reveal the composition and manufacturing history of the iron implements.
ANSTO can give you insights into your coating at microscopic resolution over macroscopic areas
Young physicist in training to become a surrogate inspector for Comprehensive Nuclear Test Ban Treaty Organisation.
Detailed molecular structure of silver nanocrystals determined
Neutron Activation Analysis (NAA) is a highly sensitive method of quantitative elemental analysis. There is a wide range of potential applications for neutron irradiations.
Beamtime guide on the Far infrared beamline at the Australian Synchrotron.
ANSTO is helping change the way science is taught in the classroom - converting that dusty old periodic table into an augmented reality app that brings the elements to life.