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Micro-Computed Tomography beamline (MCT)

Micro-Computed Tomography beamline (MCT)

With enhanced submicron spatial resolution, speed and contrast, the Micro-Computed Tomography beamline opens a window on the micron-scale 3D structure of a wide range of samples relevant to many areas of science including life sciences, materials engineering, anthropology, palaeontology and geology. MCT will be able to undertake high-speed and high-throughput studies, as well as provide a range of phase-contrast imaging modalities.

Exchange of expertise

A specialist in particle therapy treatment planning from the Mayo Clinic in the US, Professor Chris Beltran, recently visited ANSTO for an exchange for information.

Temperature

Temperature

Our temperature sample environments include closed cycle refrigerators, cryofurnaces, cryostates, furnaces, rapid thermal devices, temperature baths and low temperature inserts.

Capabilities ANSTO Facilities

Capabilities

ANSTO provides access to specialised facilities and capabilities by application. Please ensure that you contact the relevant ANSTO scientist for advice before submitting a proposal.

ANSTO has a COVID Safe plan for staff, contractors, users and other visitors.

COVIDSafe Plan

This COVIDSafe Plan describes the actions that ANSTO will take to keep our staff, contractors and visitors safe and minimise the risk of the spread of COVID-19 infection.

Australia leads progress in agriculture project in Asia and the Pacific

Australia is leading an agriculture project in the Asia and Pacific region, in partnership with the International Atomic Energy Agency (IAEA) and the Regional Cooperative Agreement for Research, Development and Training Related to Nuclear Science and Technology for Asia and the Pacific (RCA) to progress Atoms4Food.

High Performance Macromolecular Crystallography Beamline (MX3)

High Performance Macromolecular Crystallography Beamline (MX3)

The High Performance Macromolecular Crystallography beamline will enable the study of very small (sub-5 micrometre) or weakly diffracting crystals, providing a state-of-the-art high-throughput facility for researchers. MX3 will be able to study the structures of large proteins and protein complexes for virology, drug design and industrial applications via goniometer mounted crystals, in-tray screening, or via serial crystallography methods.

Pagination