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Heitt Mjölnir: a heated miniature triaxial apparatus for 4D synchrotron microtomography
Freitas, D., Butler, I. B., Elphick, S. C., Gilgannon, J., Rizzo, R. E., Plümper, O., … Fusseis, F. (2024). Heitt Mjölnir: a heated miniature triaxial apparatus for 4D synchrotron microtomography. Journal of Synchrotron Radiation, 31(1), 150-161. https://doi.org/10.1107/S1600577523009876
Elastic stresses can form metamorphic fabrics
Gilgannon, J., Freitas, D., Rizzo, R. E., Wheeler, J., Butler, I. B., Seth, S., … Fusseis, F. (2024). Elastic stresses can form metamorphic fabrics. Geology, 52(3), 166-170. https://doi.org/10.1130/G51612.1
Tomographic microscopy of functionally graded polymer-derived SiCN ceramics with tunable gradients
Hagelüken, L., Makowska, M. G., Marone, F., & Brugger, J. (2024). Tomographic microscopy of functionally graded polymer-derived SiCN ceramics with tunable gradients. Materialia, 33, 102025 (9 pp.). https://doi.org/10.1016/j.mtla.2024.102025
A Collagen10a1 mutation disrupts cell polarity in a medaka model for metaphyseal chondrodysplasia type Schmid
Tan, W. H., Rücklin, M., Larionova, D., Ngoc, T. B., Joan van Heuven, B., Marone, F., … Winkler, C. (2024). A Collagen10a1 mutation disrupts cell polarity in a medaka model for metaphyseal chondrodysplasia type Schmid. iScience, 27(4), 109405 (19 pp.). https://doi.org/10.1016/j.isci.2024.109405
Healing of keyhole porosity by means of defocused laser beam remelting: <em>Operando</em> observation by X-ray imaging and acoustic emission-based detection
de Formanoir, C., Hamidi Nasab, M., Schlenger, L., Van Petegem, S., Masinelli, G., Marone, F., … Logé, R. E. (2024). Healing of keyhole porosity by means of defocused laser beam remelting: Operando observation by X-ray imaging and acoustic emission-based detection. Additive Manufacturing, 79, 103880 (18 pp.). https://doi.org/10.1016/j.addma.2023.103880
FEM heat transfer modelling with tomography-based SiC<sub>f</sub>/SiC unit cell
Cavaliere, A., Marone, F., Cozzo, C., Buchanan, K., Lorrette, C., & Pouchon, M. A. (2023). FEM heat transfer modelling with tomography-based SiCf/SiC unit cell. High Temperatures-High Pressures, 52(2), 95-110. https://doi.org/10.32908/hthp.v52.1281
On the water transport mechanism through the microporous layers of <em>operando </em>polymer electrolyte fuel cells probed directly by X-ray tomographic microscopy
Chen, Y. C., Dörenkamp, T., Csoklich, C., Berger, A., Marone, F., Eller, J., … Büchi, F. N. (2023). On the water transport mechanism through the microporous layers of operando polymer electrolyte fuel cells probed directly by X-ray tomographic microscopy. Energy Advances, 2(9), 1447-1463. https://doi.org/10.1039/d3ya00189j
Operando tomographic microscopy during laser-based powder bed fusion of alumina
Makowska, M. G., Verga, F., Pfeiffer, S., Marone, F., Chang, C. S. T., Florio, K., … Van Petegem, S. (2023). Operando tomographic microscopy during laser-based powder bed fusion of alumina. Communications Materials, 4, 73 (15 pp.). https://doi.org/10.1038/s43246-023-00401-3
Synchrotron microtomography-based osteohistology of <em>Gansus yumenensis</em>: new data on the evolution of uninterrupted bone deposition in basal birds
Monfroy, Q. T., Kundrát, M., O’Connor, J. K., Hai-Lu, Y., Marone, F., Stampanoni, M., & Šmajda, B. (2023). Synchrotron microtomography-based osteohistology of Gansus yumenensis: new data on the evolution of uninterrupted bone deposition in basal birds. Acta Zoologica, 104(2), 149-175. https://doi.org/10.1111/azo.12402
Investigating microstructure evolution of lithium metal during plating and stripping via operando X-ray tomographic microscopy
Sadd, M., Xiong, S., Bowen, J. R., Marone, F., & Matic, A. (2023). Investigating microstructure evolution of lithium metal during plating and stripping via operando X-ray tomographic microscopy. Nature Communications, 14, 854 (11 pp.). https://doi.org/10.1038/s41467-023-36568-z
Structural formation during bread baking in a combined microwave-convective oven determined by sub-second in-situ synchrotron X-ray microtomography
Schott, F., Isaksson, S., Larsson, E., Marone, F., Öhgren, C., Röding, M., … Raaholt, B. W. (2023). Structural formation during bread baking in a combined microwave-convective oven determined by sub-second in-situ synchrotron X-ray microtomography. Food Research International, 173, 113283 (13 pp.). https://doi.org/10.1016/j.foodres.2023.113283
Nanoplastics causes extensive congenital malformations during embryonic development by passively targeting neural crest cells
Wang, M., Rücklin, M., Poelmann, R. E., de Mooij, C. L., Fokkema, M., Lamers, G. E. M., … Richardson, M. K. (2023). Nanoplastics causes extensive congenital malformations during embryonic development by passively targeting neural crest cells. Environment International, 173, 107865 (14 pp.). https://doi.org/10.1016/j.envint.2023.107865
Exploration of the X-ray dark-field signal in mineral building materials
Blykers, B. K., Organista, C., Kagias, M., Marone, F., Stampanoni, M., Boone, M. N., … Aelterman, J. (2022). Exploration of the X-ray dark-field signal in mineral building materials. Journal of Imaging, 8(10), 282 (19 pp.). https://doi.org/10.3390/jimaging8100282
High-spatial resolution measurements with a GaAs:Cr sensor using the charge integrating MÖNCH detector with a pixel pitch of 25 μm
Chiriotti, S., Barten, R., Bergamaschi, A., Brückner, M., Carulla, M., Chsherbakov, I., … Zhang, J. (2022). High-spatial resolution measurements with a GaAs:Cr sensor using the charge integrating MÖNCH detector with a pixel pitch of 25 μm. Journal of Instrumentation, 17, P04007 (17 pp.). https://doi.org/10.1088/1748-0221/17/04/P04007
Direct observation of crack formation mechanisms with <em>operando</em> laser powder bed fusion X-ray imaging
Ghasemi-Tabasi, H., de Formanoir, C., Van Petegem, S., Jhabvala, J., Hocine, S., Boillat, E., … Logé, R. E. (2022). Direct observation of crack formation mechanisms with operando laser powder bed fusion X-ray imaging. Additive Manufacturing, 51, 102619 (11 pp.). https://doi.org/10.1016/j.addma.2022.102619
Macroscopic mapping of microscale fibers in freeform injection molded fiber-reinforced composites using X-ray scattering tensor tomography
Kim, J., Slyamov, A., Lauridsen, E., Birkbak, M., Ramos, T., Marone, F., … Kagias, M. (2022). Macroscopic mapping of microscale fibers in freeform injection molded fiber-reinforced composites using X-ray scattering tensor tomography. Composites Part B: Engineering, 233, 109634 (11 pp.). https://doi.org/10.1016/j.compositesb.2022.109634
Tomographic reconstruction of the small-angle x-ray scattering tensor with filtered back projection
Kim, J., Pelt, D. M., Kagias, M., Stampanoni, M., Batenburg, K. J., & Marone, F. (2022). Tomographic reconstruction of the small-angle x-ray scattering tensor with filtered back projection. Physical Review Applied, 18(1), 014043 (7 pp.). https://doi.org/10.1103/PhysRevApplied.18.014043
<em>Saccorhytus</em> is an early ecdysozoan and not the earliest deuterostome
Liu, Y., Carlisle, E., Zhang, H., Yang, B., Steiner, M., Shao, T., … Donoghue, P. C. J. (2022). Saccorhytus is an early ecdysozoan and not the earliest deuterostome. Nature, 609, 541-546. https://doi.org/10.1038/s41586-022-05107-z
Deep learning-based monitoring of laser powder bed fusion process on variable time-scales using heterogeneous sensing and <em>operando</em> X-ray radiography guidance
Pandiyan, V., Masinelli, G., Claire, N., Le-Quang, T., Hamidi-Nasab, M., de Formanoir, C., … Wasmer, K. (2022). Deep learning-based monitoring of laser powder bed fusion process on variable time-scales using heterogeneous sensing and operando X-ray radiography guidance. Additive Manufacturing, 58, 103007 (15 pp.). https://doi.org/10.1016/j.addma.2022.103007
Crack-reduced alumina/aluminum titanate composites additive manufactured by laser powder bed fusion of black TiO<sub>2-x</sub> doped alumina granules
Pfeiffer, S., Florio, K., Makowska, M., Marone, F., Yüzbasi, S., Aneziris, C. G., … Graule, T. (2022). Crack-reduced alumina/aluminum titanate composites additive manufactured by laser powder bed fusion of black TiO2-x doped alumina granules. Journal of the European Ceramic Society, 42(8), 3515-3529. https://doi.org/10.1016/j.jeurceramsoc.2022.02.046
 

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