Search results
Results: 145
Number of items: 145
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Costa-Almeida, R., Carvalho, D. T. O., Ferreira, M. J. S., Pesqueira, T., Monici, M., van Loon, J. J. W. A., Granja, P. L., & Gomes, M. E. (2018). Continuous exposure to simulated hypergravity-induced changes in proliferation, morphology, and gene expression of human tendon cells. Stem Cells and Development, 27(12), 858-869. https://doi.org/10.1089/scd.2017.0206
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Quadrini, F., Tedde, G. M., Santo, L., & van Loon, J. J. W. A. (2018). Solid-state foaming of epoxy resin under hypergravity and simulated microgravity. Advances in Polymer Technology, 37(7), 2616-2624. https://doi.org/10.1002/adv.21937
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Manzano, A., Herranz, R., den Toom, L. A., te Slaa, S., Borst, G., Visser, M., Medina, F. J., & van Loon, J. J. W. A. (2018). Novel, Moon and Mars, partial gravity simulation paradigms and their effects on the balance between cell growth and cell proliferation during early plant development. NPJ Microgravity, 4(1), Article 9. https://doi.org/10.1038/s41526-018-0041-4 -
Leguy, C. A. D., Delfos, R., Pourquie, M. J. B. M., Poelma, C., Westerweel, J., & van Loon, J. J. W. A. (2017). Fluid dynamics during Random Positioning Machine micro-gravity experiments. Advances in Space Research, 59(12), 3045-3057. https://doi.org/10.1016/j.asr.2017.03.009
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Kamal, K. Y., van Loon, J. J. W. A., Medina, F. J., & Herranz, R. (2017). Embedding Arabidopsis Plant Cell Suspensions in Low-Melting Agarose Facilitates Altered Gravity Studies. Microgravity Science and Technology, 29(1-2), 115-119. https://doi.org/10.1007/s12217-016-9531-8
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Potočňáková, L., Šperka, J., Zikán, P., Van Loon, J. J. W. A., Beckers, J., & Kudrle, V. (2017). Experimental study of gliding arc plasma channel motion: Buoyancy and gas flow phenomena under normal and hypergravity conditions. Plasma Sources Science and Technology, 26(4), Article 045014. https://doi.org/10.1088/1361-6595/aa5ee8
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Simon, Á., Stoicu, A., Tozar, T., Andrei, I. R., Simion, S., van Loon, J. J. W. A., Dowson, A., & Pascu, M. L. (2017). Microvolumetric droplets in air in hypergravity conditions. In M. L. Pascu (Ed.), Laser optofluidics in fighting multiple drug resistance (pp. 428-445). Bentham Science Publishers. https://doi.org/10.2174/97816810849851170101
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Lang, T., van Loon, J. J. W. A., Bloomfield, S., Vico, L., Chopard, A., Rittweger, J., Kyparos, A., Blottner, D., Vuori, I., Gerzer, R., & Cavanagh, P. R. (2017). Towards human exploration of space: the THESEUS review series on muscle and bone research priorities. NPJ Microgravity, 3, Article 8 . https://doi.org/10.1038/s41526-017-0013-0 -
Martins, Z., Cottin, H., Kotler, J. M., Carrasco, N., Cockell, C. S., de la Torre Noetzel, R., Demets, R., de Vera, J. P., d'Hendecourt, L., Ehrenfreund, P., Elsaesser, A., Foing, B., Onofri, S., Quinn, R., Rabbow, E., Rettberg, P., Ricco, A. J., Slenzka, K., Stalport, F., ... Westall, F. (2017). Earth as a Tool for Astrobiology: A European Perspective. Space Science Reviews, 209(1-4), 43-81. https://doi.org/10.1007/s11214-017-0369-1 -
Cottin, H., Kotler, J. M., Billi, D., Cockell, C., Demets, R., Ehrenfreund, P., Elsaesser, A., d’Hendecourt, L., van Loon, J. J. W. A., Martins, Z., Onofri, S., Quinn, R. C., Rabbow, E., Rettberg, P., Ricco, A. J., Slenzka, K., de la Torre, R., de Vera, J.-P., Westall, F., ... Klamm, B. A. (2017). Space as a Tool for Astrobiology: Review and Recommendations for Experimentations in Earth Orbit and Beyond. Space Science Reviews, 209(1-4), 83-181. https://doi.org/10.1007/s11214-017-0365-5
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