研究成果
論文
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Arctic Frontiers: Four things to know about Arctic politics, business, and science
Podolskiy, E. A. 2016. Arctic Frontiers: Four things to know about Arctic politics, business, and science, JCAR Newsletter, 4 (July 2016), 10-12.
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Distribution of Arctic and Pacific copepods and their habitat in the northern Bering and Chukchi seas
Sasaki H., Matsuno K., Fujiwara A., Onuka M., Yamaguchi A., Ueno H., Watanuki Y., Kikuchi T.(2016). Distribution of Arctic and Pacific copepods and their habitat in the northern Bering and Chukchi seas. Biogeosciences 13:4555-4567
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Spatial variations in larch needle and soil δ15N at a forest–grassland boundary in northern Mongolia.
Lei Fujiyoshi, Atsuko Sugimoto, Akemi Tsukuura, Asami Kitayama, M. Larry Lopez Caceres, Byambasuren Mijidsuren, Ariunaa Saraadanbazar and Maki Tsujimura.(2016)Spatial variations in larch needle and soil δ15N at a forest–grassland boundary in northern Mongolia. Istopes in Health and Environmental Studiesd, 52.
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Flight paths of seabirds soaring over ocean surface enable measurement of fine-scale wind speed and direction.
Yonehara Y., Goto Y., Yoda K., Yatanuki Y., Yong LC, Wimerskirch H, Bost CA, Sato K.(2016). Flight paths of seabirds soaring over ocean surface enable measurement of fine-scale wind speed and direction. Proc Natl Acad Sci 168
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Predicting potential fishing zones for Pacific saury (Cololabis saira) with maximum entropy models and remotely sensed data
Syah, Achmad F., Sei-Ichi Saitoh, Irene D. Alabia and Toru Hirawake (2016).Predicting potential fishing zones for Pacific saury (Cololabis saira) with maximum entropy models and remotely sensed data. Fishery Bulletin
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生物を使った海洋汚染モニタリング
綿貫豊(2016)生物を使った海洋汚染モニタリング, 生態学会誌, 66:109-11 165.
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Optimal response to habitat linkage of local fish diversity and mean trophic level. Limnology and Oceanography.
Xu, J., H. Zhang, Y. Cai, J. García Molinos, and M. Zhang. (2016). Optimal response to habitat linkage of local fish diversity and mean trophic level. Limnology and Oceanography.61 (2016): 1438-1448
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Ensemble squid habitat model using three-dimensional ocean data.
Irene D. Alabia, Sei-Ichi Saitoh, Hiromichi Igarashi, Yoichi Ishikawa, Norihisa Usui, Masafumi Kamachi, Toshiyuki Awaji and Masaki Seito (2016).Ensemble squid habitat model using three-dimensional ocean data. ICES Journal of Marine Science, Volume 73, Issue 7, 1 July 2016, Pages 1863–1874
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Responses of Marine Organisms to Climate Change across Oceans.
Elvira S. Poloczanska, Michael T. Burrows, Christopher J. Brown, Jorge García Molinos, Benjamin S. Halpern, Ove Hoegh-Guldberg, Carrie V. Kappel, Pippa J. Moore, Anthony J. Richardson, David S. Schoeman and William J. Sydeman.(2016).Responses of Marine Organisms to Climate Change across Oceans. Frontiers in Marine Science.3
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Foraging segregation of two congeneric diving seabirds species breeding on St. George Island, Bering Sea.
Kokubun N., Yamamoto T., Sato N., Atanuki Y., Will A, Kitaysky AS, Takahashi A.(2016) Foraging segregation of two congeneric diving seabirds species breeding on St. George Island, Bering Sea. Biogeosciences 13: 2579-2591