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Comparison between high-resolution gamma-ray tomography and wire-mesh sensor for air-water flow in a rod bundle geometry
Ahn, T., Petrov, V., & Manera, A. (2023). Comparison between high-resolution gamma-ray tomography and wire-mesh sensor for air-water flow in a rod bundle geometry. In 20th international topical meeting on nuclear reactor thermal hydraulics (NURETH-20) (pp. 2196-2209). https://doi.org/10.13182/NURETH20-40846
Practical implementations of speckle-based phase-retrieval methods in Python and GPU for tomography
Vo, N. T., Wang, H., Hu, L., Zhu, T., Zdora, M. C., Deyhle, H., … Drakopoulos, M. (2022). Practical implementations of speckle-based phase-retrieval methods in Python and GPU for tomography. In B. Müller & G. Wang (Eds.), Proceedings of SPIE: Vol. 12242. Developments in X-Ray tomography XIV (p. 122420E (12 pp.). https://doi.org/10.1117/12.2636834
Energy resolved imaging using the GP2 detector: progress in instrumentation, methods and data analysis
Pooley, D. E., Lee, J. W. L., Akeroyd, F. A., Arnold, O., Hart, M., John, J. J., … Woracek, R. (2020). Energy resolved imaging using the GP2 detector: progress in instrumentation, methods and data analysis. In U. Garbe, F. Salvemini, & J. J. Bevitt (Eds.), Materials research proceedings: Vol. 15. Neutron radiography. WCNR-11 (pp. 35-41). https://doi.org/10.21741/9781644900574-6
Full-field hard X-ray microscopy based on aberration-corrected Be CRLs
Schropp, A., Brückner, D., Bulda, J., Falkenberg, G., Garrevoet, J., Hagemann, J., … Schroer, C. G. (2019). Full-field hard X-ray microscopy based on aberration-corrected Be CRLs. In B. Lai & A. Somogyi (Eds.), Proceedings of SPIE: Vol. 11112. X-Ray nanoimaging: instruments and methods IV (p. 1111208 (7 pp.). https://doi.org/10.1117/12.2528422
Development of synchrotron pink beam X-ray grating interferometer at the Diamond Light Source I13-2 beamline
Marathe, S., Storm, M., Kuppilli, V. S. C., Harrison, R., Das, G., Schroeder, S. L. M., … Rau, C. (2019). Development of synchrotron pink beam X-ray grating interferometer at the Diamond Light Source I13-2 beamline. In B. Müller & G. Wang (Eds.), Proceedings of SPIE: Vol. 11113. Developments in X-ray tomography XII (p. 1111319 (7 pp.). https://doi.org/10.1117/12.2530698
High resolution 3D imaging of integrated circuits by X-ray ptychography
Odstrcil, M., Holler, M., Raabe, J., & Guizar-Sicairos, M. (2018). High resolution 3D imaging of integrated circuits by X-ray ptychography. In N. K. Dhar & A. K. Dutta (Eds.), Proceedings of SPIE: Vol. 10656. Image sensing technologies: materials, devices, systems, and applications V (p. 106560U (8 pp.). https://doi.org/10.1117/12.2304835
The osteocyte lacuno-canalicular network in bone investigated by synchrotron radiation-based tomography techniques
Palle, J., Wittig, N. K., Østergaard, M., Jensen, A. B., & Birkedal, H. (2019). The osteocyte lacuno-canalicular network in bone investigated by synchrotron radiation-based tomography techniques. In B. Müller & G. Wang (Eds.), Proceedings of SPIE: Vol. 11113. Developments in X-Ray tomography XII (p. 1111316 (8 pp.). https://doi.org/10.1117/12.2531980
Three-dimensional imaging of magnetic domains with neutron grating interferometry
Manke, I., Kardjilov, N., Schäfer, R., Hilger, A., Grothausmann, R., Strobl, M., … Banhart, J. (2015). Three-dimensional imaging of magnetic domains with neutron grating interferometry. In E. H. Lehmann, A. P. Kaestner, & D. Mannes (Eds.), Physics procedia: Vol. 69. Proceedings of the 10th world conference on neutron radiography (WCNR-10) Grindelwald, Switzerland October 5-10, 2014 (pp. 404-412). https://doi.org/10.1016/j.phpro.2015.07.057
Combining neutron and magnetic resonance imaging to study the interaction of plant roots and soil
Oswald, S. E., Tötzke, C., Haber-Pohlmeier, S., Pohlmeier, A., Kaestner, A. P., & Lehmann, E. (2015). Combining neutron and magnetic resonance imaging to study the interaction of plant roots and soil. In E. H. Lehmann, A. P. Kaestner, & D. Mannes (Eds.), Physics procedia: Vol. 69. Proceedings of the 10th world conference on neutron radiography (WCNR-10) Grindelwald, Switzerland October 5-10, 2014 (pp. 237-243). https://doi.org/10.1016/j.phpro.2015.07.033
High-throughput, scalable, quantitative cellular phenotyping using X-Ray tomographic microscopy
Mader, K., Donahue, L. R., Müller, R., & Stampanoni, M. (2014). High-throughput, scalable, quantitative cellular phenotyping using X-Ray tomographic microscopy. In Proceedings IWBBIO 2014: international work-conference on bioinformatics and biomedical engineering, vols 1 and 2 (pp. 1483-1498). sine nomine.
A new method for phase contrast tomography
Groso, A., Abela, R., David, C., & Stampanoni, M. (2007). A new method for phase contrast tomography. In J. Y. Choi & S. Rah (Eds.), AIP conference proceedings: Vol. 879. Synchrotron radiation instrumentation. Ninth international conference on synchrotron radiation instrumentation (pp. 1912-1915). https://doi.org/10.1063/1.2436446
Neutron radiography, tomography, and diffraction of commercial lithium-ion polymer batteries
Butler, L. G., Lehmann, E. H., & Schillinger, B. (2013). Neutron radiography, tomography, and diffraction of commercial lithium-ion polymer batteries. In P. C. Hungler (Ed.), Physics procedia: Vol. 43. The 7th international topical meeting on neutron radiography (ITMNR-7) (pp. 331-336). https://doi.org/10.1016/j.phpro.2013.03.039