Upcoming events and training courses
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Training course on Visualisation, AI-Assisted Analysis and Quantification of Tomographic Datasets
28 - 29 September 2026
General course information Lab/synchrotron X-ray tomography has emerged as one of the most important techniques for research in a wide range of applications including healthcare, energy, food and geology. Advances in the quality of X-ray beams, optics, high speed data acquisition and in-situ environments have made significant improvements to non-destructive...
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Training course on in situ experiments and digital volume correlation
19 - 20 October 2026
Digital Volume Correlation (DVC) is a powerful experimental technique that computes 3D full-field displacement and strain maps from volumes images acquired during a deformation process of a material. DVC is the 3D extension of Digital Image Correlation (DIC) which was first described four decades ago. The emergence of DVC started early 2000s with...
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STFC Central Laser Facility Workshop on Biological imaging and analysis
09:00 - 16:00 29 October 2026
THIS EVENT IS FOR THE UNIVERSITY OF MANCHESTER EMPLOYEES ONLY This interactive event will provide an overview of the state-of-the-art imaging capabilities available through the Octopus (Optics Clustered to OutPut Unique Solutions) imaging cluster. This national user facility is designed to support researchers from experimental design through to...
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Training course on advanced scripting and batching of tomographic datasets
18 - 19 November 2026
Although X-ray tomography is an attractive characterisation technique in materials science, it generates a huge amount of data at a fast rate and it can be extremely time consuming to process the data manually. A great benefit to creating scripts and plugins in Avizo is the ability to reuse a workflow on more than one image or to develop a bespoke...
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Training course on Correlative Imaging
10 - 11 February 2027
General course information Correlative imaging combines data from multiple acquisition techniques and length scales to build a more complete picture of a specimen than any single modality can provide on its own. This is particularly powerful when combining 3D X-ray or neutron tomography with high-resolution 2D or 3D techniques such as FIB-SEM,...
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