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Radiographic Imaging and Tomography (RadIT)


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Radiographic Imaging and Tomography (RadIT)

RadIT showcases state-of-the-art imaging technologies and applications using different forms of ionizing radiation, including X-rays, gamma-rays, energetic electrons, protons, neutrons, muons and positrons and includes synergies with optical, ultrasound and MRI modalities.

Radiographic imaging and tomography modalities have demonstrated significant advantages over imaging and tomography using visible light but share many of their technologies, such as detectors, optics and image processing algorithms.

RadIT topics will include those common technologies as well as ionizing radiation sources, novel data collection techniques, radiation detectors, physical models for data interpretation, the use of data-driven methods such as machine learning and AI and a wide range of applications that essentially cover all phases of matter; namely, solid, liquid, gas and plasma. 

RadIT provides a unique interdisciplinary forum to bring together pioneers, leading experts and new explorers, and jointly advance imaging and tomography under extremely broad contexts, including the synergies among visible light, ionizing radiation and other forms of probes (e.g., ultrasound, magnetic resonances).

 

Chairs

Alexander Rack

European Synchrotron Radiation Facility, France,
General Chair

Zhehui Wang

Los Alamos National Laboratory, United States,
General Chair

Outi Supponen

ETH Zurich, Switzerland,
Program Chair

Liangzhong Xiang

University of California Irvine, United States,
Program Chair

Committee Members

  • Alexander Rack, European Synchrotron Radiation Facility, France, General Chair
  • Zhehui Wang, Los Alamos National Laboratory, United States, General Chair
  • Outi Supponen, ETH Zurich, Switzerland, Program Chair
  • Liangzhong Xiang, University of California Irvine, United States, Program Chair
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