Research result
Ecosystem
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Phytoplankton increase along the Kuroshio due to the large meander
Lizarbe Barreto, D.A., Chevarria Saravia, R., Nagai, T. and Hirata, T., 2021. Phytoplankton increase along the Kuroshio due to the large meander. Frontiers in Marine Science, 8, 677632.
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Photoacclimation by phytoplankton determines the distribution of global subsurface chlorophyll maxima in the ocean
Masuda, Y., Yamanaka, Y., Smith, S.L., Hirata, T., Nakano, H., Oka, A. and Sumata, H., 2021. Photoacclimation by phytoplankton determines the distribution of global subsurface chlorophyll maxima in the ocean. Communications Earth & Environment, 2(1), p.128.
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Ocean-bottom seismology of glacial earthquakes: the concept, lessons learned, and mind the sediments
Podolskiy, E.A., Murai, Y., Kanna, N., and S. Sugiyama (2021). Ocean-bottom seismology of glacial earthquakes: the concept, lessons learned, and mind the sediments. Seismological Research Letters, 92(5), 2850–2865, https://doi.org/10.1785/0220200465
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Marine biodiversity refugia in a climate-sensitive subarctic shelf
Alabia, I. D.; García Molinos, J.; Hirata, T.; Mueter, F. J.; Hirawake, T.; and Saitoh, S.-I. 2021. Marine biodiversity refugia in a climate-sensitive subarctic shelf. Global Change Biology, 27 (14): 3299-3311. https://doi.org/10.1111/gcb.15632 25 April 2021
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Rapidly changing glaciers, ocean and coastal environments, and their impact on human society in the Qaanaaq region, northwestern Greenland
Sugiyama, S., N. Kanna, D. Sakakibara, T. Ando, I. Asaji, K. Kondo, Y. Wang, Y. Fujishi, S. Fukumoto, E. Podolskiy, Y. Fukamachi, M. Takahashi, S. Matoba, Y. Iizuka, R. Greve, M. Furuya, K. Tateyama,T. Watanabe, S. Yamasaki, A. Yamaguchi, B. Nishizawa, K. Matsuno, D. Nomura, Y. Sakuragi, Y. Matsumura, Y. Ohashi, T. Aoki, M. Niwano, N. Hayashi, M. Minowa, G. Jouvet, E. van Dongen, A. Bauder, M. Funk, A. A. Bjork, T. Oshima. 2021, Rapidly changing glaciers, ocean and coastal environments, and their impact on human society in the Qaanaaq region, northwestern Greenland. Polar Science, 27, 100632, https://doi.org/10.1016/j.polar.2020.100632
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Iron supply by subglacial discharge into a fjord near the front of a marine-terminating glacier in northwestern Greenland
Kanna, N., S. Sugiyama, Y. Fukamachi, D. Nomura and J. Nishioka. 2020. Iron supply by subglacial discharge into a fjord near the front of a marine-terminating glacier in northwestern Greenland. Global Biogeochemical Cycles, 34(10), e2020GB006567, https://doi.org/10.1029/2020GB006567
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Inhibition of competitive exclusion due to phytoplankton dispersion: a contribution for solving Hutchinson’s paradox
Masuda, Y., Yamanaka, Y., Hirata, T., Nakano, H. and Kohyama, T.S., 2020. Inhibition of competitive exclusion due to phytoplankton dispersion: a contribution for solving Hutchinson’s paradox. Ecological Modelling, 430, p.109089.
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Multiple facets of marine biodiversity in the Pacific Arctic under future climate
Alabia, I. D.; García Molinos, J.; Saitoh, S.- I.; Hirata, T.; Hirawake, T.; and Mueter, F. 2020. Multiple facets of marine biodiversity in the Pacific Arctic under future climate. Science of The Total Environment, 744: 140913. https://doi.org/10.1016/j.scitotenv.2020.140913
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Impacts of meltwater discharge from marine-terminating glaciers on the protist community in Inglefield Bredning, northwestern Greenland
Matsuno, K., N. Kanna, S. Sugiyama, A. Yamaguchi, E. Y. Yang 2020. Impacts of meltwater discharge from marine-terminating glaciers on the protist community in Inglefield Bredning, northwestern Greenland. Marine Ecology Progress Series, 642, 55-65, https://doi.org/10.3354/meps13324
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Climate velocity reveals increasing exposure of deep-ocean biodiversity to future warming
Brito-Morales, I.; Schoeman, D. S.; García Molinos, J.; Burrows, M. T.; Klein, C. J.; Arafeh-Dalmau, N.; Kaschner, K.; Garilao, C.; Kesner-Reyes, K.; and Richardson, A. J. 2020. Climate velocity reveals increasing exposure of deep-ocean biodiversity to future warming. Nature Climate Change, 10: 576–581. https://doi.org/10.1038/s41558-020-0773-5