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ROSI and GEANT4 – a comparison in the context of high energy X-ray physics
Kiunke, M., Stritt, C., Schielein, R., Sukowski, F., Hölzing, A., Zabler, S., … Hanke, R. (2016). ROSI and GEANT4 – a comparison in the context of high energy X-ray physics. Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, 377, 50-58. https://doi.org/10.1016/j.nimb.2016.04.029
Cooperative data fusion of transmission and surface scan for improving limited-angle computed tomography reconstruction
Liu, Y., Beyer, A., Schuetz, P., Hofmann, J., Flisch, A., & Sennhauser, U. (2016). Cooperative data fusion of transmission and surface scan for improving limited-angle computed tomography reconstruction. NDT and E International, 83(4), 24-31. https://doi.org/10.1016/j.ndteint.2016.05.003
Quantitative Untersuchung der Streubeiträge in Hochenergie-Röntgencomputertomografie
Stritt, C., Schuetz, P., Plamondon, M., Flisch, A., Hofmann, J., & Sennhauser, U. (2016). Quantitative Untersuchung der Streubeiträge in Hochenergie-Röntgencomputertomografie. Materials Testing, 58(2), 122-126. https://doi.org/10.3139/120.110824
Quantitative assessment of scattering contributions in MeV-industrial X-ray computed tomography
Stritt, C., Schuetz, P., Hofmann, J., Flisch, A., & Sennhauser, U. (2014). Quantitative assessment of scattering contributions in MeV-industrial X-ray computed tomography (p. (9 pp.). Presented at the 11th European conference on non-destructive testing (ECNDT 2014).
Estimation of affine transformations directly from tomographic projections in two and three dimensions
Mooser, R., Forsberg, F., Hack, E., Székely, G., & Sennhauser, U. (2013). Estimation of affine transformations directly from tomographic projections in two and three dimensions. Machine Vision and Applications, 24(2), 419-434. https://doi.org/10.1007/s00138-011-0376-2
Hybrid simulation of scatter intensity in industrial cone-beam computed tomography
Thierry, R., Miceli, A., Hofmann, J., Flisch, A., & Sennhauser, U. (2009). Hybrid simulation of scatter intensity in industrial cone-beam computed tomography. Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 598(2), 611-619. https://doi.org/10.1016/j.nima.2008.10.011
Schnelle und genaue Abschätzung des Streusignals in Cone-Beam Computertomografie
Thierry, R., Hofmann, J., Miceli, A., Flisch, A., & Simon, M. (2008). Schnelle und genaue Abschätzung des Streusignals in Cone-Beam Computertomografie. In Proceedings Industrielle Computertomografie Tagung (p. (6 pp.). Shaker Verlag.
Fast estimation of single scattering projections: a simulation case in cone-beam CT
Thierry, R., Miceli, A., Hofmann, J., & Flisch, A. (2007). Fast estimation of single scattering projections: a simulation case in cone-beam CT. In Proceedings: European NDT days in Prague 2007 (pp. 207-215). Brno University of Technology.