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Laget, M., L. Drago, T. Panaïotis, R. Kiko, L. Stemmann, A. Rogge, N. Llopis Monferrer, A. Leynaert, J.-O. Irisson, und T. Biard (2024), Global census of the significance of giant mesopelagic protists to the marine carbon and silicon cycles, Nature Communications 15, doi:10.1038/s41467-024-47651-4. |
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Panaïotis, T., M. Babin, T. Biard, F. Carlotti, L. Coppola, L. Guidi, H. Hauss, L. Karp‐Boss, R. Kiko, F. Lombard, A.M.P. McDonnell, M. Picheral, A. Rogge, A.M. Waite, L. Stemmann, und J.-O. Irisson (2023), Three major mesoplanktonic communities resolved by in situ imaging in the upper 500 m of the global ocean, Global Ecol Biogeogr., doi:10.1111/geb.13741. |
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Drago, L., T. Panaïotis, J.-O. Irisson, M. Babin, T. Biard, F. Carlotti, L. Coppola, L. Guidi, H. Hauss, L. Karp-Boss, F. Lombard, A.M.P. McDonnell, M. Picheral, A. Rogge, A.M. Waite, L. Stemmann, und R. Kiko (2022), Global Distribution of Zooplankton Biomass Estimated by In Situ Imaging and Machine Learning, Frontiers in Marine Sciences 9, doi:10.3389/fmars.2022.894372. |
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Rogge, A., M. Janout, N. Loginova, E. Trudnowska, C. Hörstmann, C. Wekerle, L. Oziel, V. Schourup-Kristensen, E. Ruiz-Castillo, K. Schulz, V.V. Povazhnyy, M.H. Iversen, und A.M. Waite (2022), Carbon dioxide sink in the Arctic Ocean from cross-shelf transport of dense Barents Sea water, Nature Geoscience 16, doi:10.1038/s41561-022-01069-z. |
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Kiko, R., M. Picheral, D. Antoine, M. Babin, L. Berline, T. Biard, E. Boss, P. Brandt, F. Carlotti, S. Christiansen, L. Coppola, L. de la Cruz, E. Diamond-Riquier, X. Durrieu de Madron, A. Elineau, G. Gorsky, G., L. Guidi, H. Hauss, J.-O. Irisson, L. Karp-Boss, J. Karstensen, D. Kim, R.M. Lekanoff, F. Lombard, R.M. Lopes, C. Marec, A.M.P. McDonnell, D. Niemeyer, M. Noyon, S.H. O'Daly, M.D. Ohman, J.L. Pretty, A. Rogge, S. Searson, M. Shibata, Y. Tanaka, T. Tanhua, J. Taucher, E. Trudnowska, J.S. Turner, A.M. Waite, und L. Stemmann (2022), A global marine particle size distribution dataset obtained with the Underwater Vision Profiler, Earth System Science Data 14, doi:10.5194/essd-14-4315-2022. |
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Picheral, M., C. Catalano, D. Brousseau, H. Claustre, L. Coppola, E. Leymarie, J. Coindat, F. Dias, S. Fevre, L. Guidi, J.O. Irisson, L. Legendre, F. Lombard, L. Mortier, C. Penkerch, A. Rogge, C. Schmechtig, S. Thibault, T. Tixier, A. Waite, und L. Stemmann (2022), The Underwater Vision Profiler 6: an imaging sensor of particle size spectra and plankton, for autonomous and cabled platforms. Limnology and Oceanography: Methods 20, doi:10.1002/lom3.10475. |
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Purser, A., L. Hehemann, L. Boehringer, S. Tippenhauer, M. Wege, H. Bornemann, S.E. A. Pineda-Metz, C.M. Flintrop, F. Koch, H.H. Hellmer, P. Burkhardt-Holm, M. Janout, E. Werner, B. Glemser, J. Belaguer, A. Rogge, M. Holtappels, und F. Wenzhöfer (2022), A vast icefish breeding colony discovered in the Antarctic, Current Biology 32, doi:10.1016/j.cub.2021.12.022. |
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Schulz, K., S. Büttner, A. Rogge, J. Hölemann, und M. Janout, M. (2021), Turbulent Mixing and the Formation of an Intermediate Nepheloid Layer Above the Siberian Continental Shelf Break, Geophysical Research Letters 48, doi:10.1029/2021GL092988. |
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Trudnowska, E., L. Lacour, M. Ardyna, A. Rogge, J.-O. Irisson, A.M. Waite, M. Babin, und L. Stemmann (2021), Marine snow morphology illuminates the evolution of phytoplankton blooms and determines their subsequent vertical export, Nature communications 12, doi:10.1038/s41467-021-22994-4. |
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Fadeev, E., A. Rogge, E.-M. Nöthig, C. Wekerle, C. Bienhold, I. Salter, A.M. Waite, L. Hehemann, A. Boetius, A., und M.H. Iversen (2021), Sea ice presence is linked to higher carbon export and vertical microbial connectivity in the Eurasian Arctic Ocean, Communications Biology 4, doi:10.1038/s42003-021-02776-w. |
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Flintrop, C. M., A. Rogge, S. Miksch, S. Thiele, A.M: Waite, und M.H. Iversen (2018), Embedding and slicing of intact in situ collected marine snow, Limnology and Oceanography: Methods 16, 339-355, doi:10.1002/lom3.10251. |
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Rogge, A., C.M. Flintrop, M.H. Iversen, I. Salter, A.A. Fong, A. Vogts, und A.M. Waite (2018), Hard and soft plastic resin embedding for single-cell element uptake investigations of marine-snow-associated microorganisms using nano-scale secondary ion mass spectrometry, Limnology and Oceanography: Methods 16, 484-503, doi:10.1002/lom3.10261. |
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Möller, L., P. Laas, A. Rogge, F. Götz, R. Bahlo, T. Leipe, und M. Labrenz (2018), Sulfurimonas subgroup GD17 cells accumulate polyphosphate under fluctuating redox conditions in the Baltic Sea: possible implications for their ecology, The ISME Journal, doi:10.1038/s41396-018-0267-x. |
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Rogge, A., A. Vogts, M. Voss, K. Jürgens, G. Jost, und M. Labrenz, M. (2017), Success of chemolithoautotrophic SUP05 and Sulfurimonas GD17 cells in pelagic Baltic Sea redox zones is facilitated by their lifestyles as K- and r-strategists, Environmental microbiology 19, 2495-2506, doi:10.1111/1462-2920.13783. |
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