Achievement


Group No.

Jump to: A02-3 | A02-4 | Research recruited from the public

*MAPIcons indicate approximate observation points. We expect to update contents accordingly as any new informations are available.

Group A02-3

[Upadated on Oct.16, 2018]

  1. Maderich V., Bezhenar R., Tateda Y., Aoyama M., Tsumune D., Jung, K. T., de With G. (2018) The POSEIDON-R compartment model for the prediction of transport and fate of radionuclides in the marine environment. MethodsX, 5, 1251-1266, Doi:10.1016/j.mex.2018.10.002
  2. Inomata, Y., Aoyama, M., Hamajima, Y., Yamada, M. (2018) Transport of FNPP1-derived radiocaesium from subtropical mode water in the western North Pacific Ocean to the Sea of Japan, Ocean Sci., 14, 813-826, Doi:10.5194/os-14-813-2018
  3. Madericha, V., Bezhenar, R., Tateda, Y., Aoyama, M., Tsumune, D. (2018) Similarities and differences of 137Cs distributions in the marine environments of the Baltic and Black seas and off the Fukushima Dai-ichi nuclear power plant in model assessments, Marine Pollution Bulletin135, 895-906. Doi:10.1016/j.marpolbul.2018.08.026
  4. 青山道夫 (2018) 四度東京電力福島第一原子力発電所事故に由来する汚染水問題を考える. 科学,88 (7), 708-712.
  5. Aoyama, M. (2018) Long-term behavior of 137Cs and 3H activities from TEPCO Fukushima NPP1 accident in the coastal region off Fukushima, Japan, Journal of Radioanalytical and Nuclear Chemistry. 1–10. Doi:10.1007/s10967-018-5815-3
  6. Kaizer, J., Aoyama, M., Kumamoto, Y., Molnár, M., Palcsu, L., Povinec, P. (2018) Tritium and radiocarbon in the western North Pacific waters: post-Fukushima situation, Journal of Environmental Radioactivity, 184–185, 83–94. Doi:10.1016/j.jenvrad.2018.01.015
  7. Takahata, N., Tomonaga, Y., Kumamoto, Y., Yamada, M., and Sano, Y. (2018) Direct tritium emissions to the ocean from the Fukushima Dai-ichi nuclear accident, Geochemical Journal, 52. 211-217. Doi:10.2343/geochemj.2.0499
  8. Men,W., Zheng,J., Wang,H., Ni, Y., Aono,T., Maxwell, S.L., Tagami,K., Uchida, S., Yamada, M.(2018)Establishing rapid analysis of Pu isotopes in seawater to study the impact of Fukushima nuclear accident in the Northwest Pacific, Scientific Reports, 8, 1892-1 - 1892-11, 2018-01, Doi:10.1038/s41598-018-20151-4
  9. 猪股弥生, 青山道夫, 浜島靖典, 山田正俊(2018) 日本沿岸域における福島第一原発事故由来放射性セシウムの再循環, 水産海洋研究.
  10. Yang, G. S., Tazoe, H., Yamada, M. (2018) Improved approach for routine monitoring of 129I activity and 129I/127I atom ratio in environmental samples using TMAH extraction and ICP-MS/MS. Analytica Chimica Acta, 1008 , 66-73. Doi: 10.1016/j.aca.2017.12.049
  11. Vives i Batlle, J., Aoyama, M., Bradshaw, C., Brownd, J., Buesselere, K. O., Casacuberta, N., Christl, M., Duffa, C., Impens, N. R. E. N., Iosjpe, M., Masque, P., Nishikawa, J. (2018) Marine radioecology after the Fukushima Dai-ichi nuclear accident: Are we better positioned to understand the impact of radionuclides in marine ecosystems, Science of The Total Environment, 618, 80-92. Doi: 10.1016/j.scitotenv.2017.11.005
  12. Kitamura, Y., Honda, M.C., Hamajima, Y., Kumamoto, Y., Aoyama, M., Kawakami, H., Aono, T., Fukuda, M., Mino, Y.(2017) Temporal changes in radiocesium contamination derived from the Fukushima Dai-ichi Nuclear Power Plant accident in oceanic zooplankton in the western North Pacific, Journal of Environmental Radioactivity, 172, P.163-172. Doi: 10.1016/j.jenvrad.2017.03.024
  13. Inoue, M., Shirotani, Y., Furusawa, Y., Fujimoto, K., Kofuji, H., Yoshida, K., Nagao, S., Yamamoto, M., Hamajima, Y., Honda, N., Morimoto, A., Takikawa, T., Shiomoto, A., Isoda, Y., Minakawa, M. (2017) Migration area of the Tsushima Warm Current Branches within the Sea of Japan: Implications from transport of 228Ra, Continental Shelf Research, 143, 167-174.Doi:10.1016/j.csr.2016.08.010
  14. Bu,W., Zheng,J., Guo, Q., Xiao,D., Aono, T. (2017) Determination of Pu isotopes in sediment and soil samples by SF-ICP-MS: an improved anion-exchange procedure for Pu separation, Journal of Radioanalytical and Nuclear Chemistry, 314(3), 2417 - 2423, 2017-12. Doi:10.1007/s10967-017-5618-y
  15. 工藤輝, 山形武靖, 永井尚生, 熊本雄一郎, 西野茂人, 松崎浩之(2017) チュクチ海-北極海における海水中129I濃度の分布, Proceedings of the 19th Japanese Symposium on Accelerator Mass Spectrometry, 102-105.
  16. Nagao, S., Otosaka, S. and Kaeriyama, H. (2017) Preface; Radionuclides in coastal sediments after the accident of Fukushima Daiichi Nuclear Power Plant: distribution, dynamics and fate, Journal of Oceanography, 73, 527. DOI: 10.1007/s10872-017-0444-y
  17. Uchiyama, Y., Kanki, R., Takano, A., Yamazaki, H. and Miyazawa, Y. (2017) Mesoscale reproducibility in regional ocean modeling with a 3-D stratification estimate based on Aviso-Argo data, Atmosphere-Ocean, 55, 1-18. Doi: 10.1080/07055900.2017.1399858
  18. 内山雄介, 東晃平, 小谷瑳千花, 岩崎理樹, 津旨大輔, 上平雄基, 清水康行, 恩田裕一(2017)台風201326号出水に伴う新田川起源懸濁態放射性核種の沿岸域でのインベントリ解析,土木学会論文集B2(海岸工学), 73, No. 2, I_685-I_690. Doi:10.2208/kaigan.73.I_685
  19. Yang, G. S., Tazoe, H., Hayano, K., Okamura, K., Yamada, M. (2017) Isotopic compositions of 236U, 239Pu, and 240Pu in soil contaminated by the Fukushima Daiichi Nuclear Power Plant accident. Scientific Reports, 7, 13619. Doi:10.1038/s41598-017-13998-6
  20. Yang, G. S., Tazoe, H., Yamada, M. (2017) Can 129I track 135Cs, 236U, 239Pu, and 240Pu apart from 131I in soil samples from Fukushima Prefecture, Japan Scientific Reports, 7, 15369. Doi:10.1038/s41598-017-15714-w
  21. Kambayashi, S., Zhang, J., Narita, H. (2017) Spatial assessment of radiocaesium in the largest lagoon in Fukushima after the TEPCO Fukushima Dai-ichi Nuclear Power Station accident. Marine Pollution Bulletin, 122, 344-352. Doi:10.1016/j.marpolbul.2017.06.071
  22. 神林翔太, 張勁, 成田尚史, 山田正俊. 汽水域における放射性セシウムの分布状況と輸送過程の把握:福島県松川浦での事例.月刊海洋号外
  23. Buesseler, K., Dai, M., Aoyama, M., Benitez-Nelson, C., Charmasson, S., Higley, K., Maderich, V., Masqué, P., Oughton, D. and Smith, J. N. (2017) Fukushima Daiichi-Derived Radionuclides in the Ocean: Transport, Fate, and Impacts, Annual Review of Marine Science, 9, 173-203. Doi: 10.1146/annurev-marine-010816-060733
  24. Cao, L., Ishii, N., Zheng, J., Kagami, M., Pan, S. M., Tagami, K. and Uchida, S. (2017) Vertical distributions of Pu and radiocesium isotopes in sediments from Lake Inba after the Fukushima Daiichi Nuclear Power Plant accident: Source identification and accumulation, Appl. Geochem., 78, 287-294. Doi:10.1016/j.apgeochem.2017.01.012
  25. Hain, K., Faestermann, T., Fimiani, L., Golser, L., Gómez-Guzmán, J., Korschinek, G., Kortmann, F., von Gostomski, C. L., Ludwig, P., Steier, P., Tazoe, H. and Yamada, M. (2017) Plutonium Isotopes (239-241Pu) Dissolved in Pacific Ocean Waters Detected by Accelerator Mass Spectrometry: No Effects of the Fukushima Accident Observed, Enviromental Science and Technology, 51 (4), 2031-2037. Doi: 10.1021/acs.est.6b05605
  26. Kaeriyama, H. (2017) Oceanic dispersion of Fukushima-derived radioactive cesium: a review. Fisheries Oceanography, 26 (2), 99-113. Doi: 10.1111/fog.12177
  27. Kamidaira, Y., Uchiyama, Y. and Mitarai, S. (2017) Eddy-induced transport of the Kuroshio warm water around the Ryukyu Islands in the East China Sea, Cont. Shelf Res., 143, 206-218. Doi:10.1016/j.csr.2016.07.004
  28. 熊本雄一郎 (2017) 2011年北太平洋東北地方沿岸・沖合域における福島第一原子力発電所事故に由来する放射性セシウムの動態, 沿岸海洋研究誌, 54, 135-142.
  29. Kumamoto, Y., Aoyama, M., Hamajima, Y., Nagai, H., Yamagata, T., Kawai, Y., Oka, E., Yamaguchi, A., Imai, K. and Murata, A. (2017) Fukushima-derived radiocesium in the western North Pacific in 2014, Journal of Radioanalytical and Nuclear Chemistry, 311 (2), 1209-1217. Doi: 10.1007/s10967-016-5055-3
  30. 熊本雄一郎青山道夫濱島靖典永井尚生・山形武靖・村田昌彦 (2017) 2014年末までの西部北太平洋における福島第一原子力発電所事故起源放射性セシウムの広がり, 分析化学, 66 (3), 137-148. Doi:10.2116/bunsekikagaku.66.137
  31. Kumamoto, Y., Aoyama, M., Hamajima, Y., Nishino, S., Murata, A. and Kikuchi, T. (2017) Radiocesium in the western subarctic area of the North Pacific Ocean, Bering Sea, and Arctic Ocean in 2013 and 2014, Applied Radiation and Isotopes, 126, 88-92. Doi:10.1016/j.apradiso.2017.02.036
  32. Hirose, K. and Aoyama, M. (2017) Temporal Variations of Global Fallout-Derived Plutonium and 137Cs in River Water in Japan, International Journal of Earth & Environmental Sciences, 172, 163-172. Doi: 10.15344/2456-351X/2017/125
  33. 升本順夫津旨大輔・郭 新宇・内山雄介・宮澤泰正(2017)放射性物質の分散シミュレーションに影響を及ぼす沿海域海況変動過程とその再現性,沿岸海洋研究,54 (2), 151-157.
  34. Miki, S., Fujimoto, K., Shigenobu, Y., Ambe, D., Kaeriyama, H., Takagi, K., Ono, T., Watanabe, T., Sugisaki, H. and Morita, T. (2017) Concentrations of 90Sr and 137Cs/90Sr activity ratios in marine fishes after the Fukushima Dai-ichi Nuclear Power Plant accident, Fisheries Oceanography, 26, 221-233. Doi: 10.1111/fog.12182
  35. Tateda, Y., Tsumune, D., Misumi, K., Aono, T., Kanda, J. and Ishimaru, T. (2017) Biokinetics of radiocesium depuration in marine fish inhabiting the vicinity of the Fukushima Dai-ichi Nuclear Power Plant, Journal of Environmental Radioactivity, 166, Part1, 67-73. Doi: 10.1016/j.jenvrad.2016.02.028
  36. Tazoe, H., Obata, H., Tomita, M., Namura, S., Nishioka, J., Yamagata, T., Karube, Z. and Yamada, M. (2017) Novel method for low level Sr-90 activity detection in seawater by combining oxalate precipitation and chelating resin extraction, Geochemical Journal, 51 (2), 193-197. Doi:10.2343/geochemj.2.0441
  37. 内山雄介(2017) マルチクラス懸濁質輸送モデルを用いた福島沿岸域における河川由来懸濁質および懸濁態放射性核種の海洋分散について,沿岸海洋研究,54 (2), 159-172.
  38. Yang, G. S., Kato, Y., Tazoe, H. and Yamada, M. (2017) Applying an improved method to measure 134Cs, 135Cs, and 137Cs activities and their atom ratios in marine sediments collected close to the Fukushima Daiichi Nuclear Power Plant, Geochemical Journal, 51. Doi:10.2343/geochemj.2.0484
  39. Aoyama, M., Hamajima, Y., Inomata, Y. and Oka, E. (2016) Recirculation of FNPP1-derived radiocaesium observed in winter 2015/2016 in coastal regions of Japan, Applied Radiation and Isotopes, 126, 83-87. Doi: 10.1016/j.apradiso.2016.12.003
  40. Aoyama, M., Hamajima, Y., Hult, M., Uematsu, M., Oka, E., Tsumune, D. and Kumamoto, Y. (2016) 134Cs and 137Cs in the North Pacific Ocean derived from the March 2011 TEPCO Fukushima Dai-ichi Nuclear Power Plant accident, Japan. Part one: surface pathway and vertical distributions, Journal of Oceanography, 72 (1), 53-65. Doi: 10.1007/s10872-015-0335-z(also in A01-2)
  41. Aoyama, M., Hult, M., Hamajima, Y,. Lutter, G., Marissens, G., Stroh, H. and Tzika, F. (2016) Tracing radioactivity from Fukushima in the Northern Pacific Ocean, Applied Radiation and Isotopes, 109, 435-440. Doi:10.1016/j.apradiso.2015.11.103
  42. Aoyama, M., Kajino, M., Tanaka, Y. T., Sekiyama, T. T., Tsumune, D., Tsubono, T., Hamajima , Y., Inomata, Y. and Gamo, T. (2016) 134Cs and 137Cs in the North Pacific Ocean derived from the March 2011 TEPCO Fukushima Dai-ichi Nuclear Power Plant accident, Japan. Part two: estimation of 134Cs and 137Cs inventories in the North Pacific Ocean, Journal of Oceanography, 72 (1), 67-76. Doi: 10.1007/s10872-015-0332-2(also in A01-2)
  43. Bu, T., Zheng, J., Liu, X. M., Long, K., Hu, S. and Uchida, S. (2016) Mass spectrometry for the determination of fission products 135Cs, 137Cs and 90Sr: A review of methodology and applications, Spectrochimica Acta Part B, 119, 65-75. Doi: 10.1016/j.sab.2016.03.008
  44. Cao, L. G., Bu, W. T., Zheng, J., Pan, S. M., Wang, Z. T. and Uchida, S. (2016) Plutonium determination in seawater by inductively coupled plasma mass spectrometry: A review, Talanta, 151, 30-41. Doi:10.1016/j.talanta.2016.01.010
  45. Cao, L., Zheng, J., Tsukada, H., Pan, S. M., Wang, Z. T., Tagami, K. and Uchida, S. (2016) Simultaneous determination of radiocesium (135Cs, 137Cs) and plutonium (239Pu, 240Pu) isotopes in river suspended particles by ICP-MS/MS and SF-ICP-MS, Talanta, 159, 55-63. Doi:10.1016/j.talanta.2016.06.008
  46. 本多牧生・乙坂重嘉 (2016) 福島原発事故由来の放射性物質が付着した海底堆積物の再懸濁と水平輸送過程, 日本原子力学会誌, 58 (4), 225-228.
  47. Ikenoue T., Takata, H., Kusakabe, M., Kudo, N., Hasegawa, K. and Ishimaru, T. (2016) Temporal variation of cesium isotope concentrations and atom ratios in zooplankton in the Pacific off the east coast of Japan, Scientific Reports, 7:39874. Doi: 10.1038/srep39874
  48. Inomata, Y., Aoyama, M., Tsubono, T., Tsumune, D. and Hirose, K. (2016) Spatial and temporal distributions of 134Cs and 137Cs derived from the TEPCO Fukushima Daiichi Nuclear Power Plant accident in the North Pacific Ocean by using optimal interpolation analysis, Environ. Sci.: Processes Impacts, 18, 126-136. Doi: 10.1039/C5EM00324E
  49. 帰山秀樹 (2016) 水圏生態系への人工放射性物質拡散の影響評価に関する研究、日本水産学会誌, 82 (4), 529-532. Doi: 10.2331/suisan.WA2299
  50. 帰山秀樹 (2016) 東京電力福島第一原発事故影響評価を中心とした海産動物プランクトンの人工放射性核種に関する研究(総説), 日本プランクトン学会報, 63 (1), 8-15.
  51. Kaeriyama, H., Shimizu, Y., Setou, T., Kumamoto, Y., Okazaki, M., Ambe, D. and Ono, T. (2016) Intrusion of Fukushima-derived radiocaesium into subsurface water due to formation of mode waters in the North Pacific, Scientific Reports, 6: 22010. Doi: 10.1038/srep22010
  52. Kakehi, S., Kaeriyama, H., Ambe, D., Ono, T., Ito, S., Shimizu, Y. and Watanabe, T. (2016) Radioactive cesium dynamics derived from hydrographic observations in the Abukuma River Estuary, Japan, Journal of Environmental Radioactivity, 153, 1-9. Doi:10.1016/j.jenvrad.2015.11.015
  53. Kumamoto, Y., Aoyama, M., Hamajima, Y., Nishino, S., Murata, A., Kikuchi, T. (2016) Meridional distribution of Fukushima-derived radiocesium in surface seawater along a trans-Pacific line from the Arctic to Antarctic Oceans in summer 2012, Journal of Radioanalytical and Nuclear Chemistry, 307 (3), 1703-1710. Doi:10.1007/s10967-015-4439-0
  54. Tazoe, H., Obata, H., Yamagata, T., Karube, Z., Nagai, H. and Yamada, M. (2016) Determination of strontium-90 from direct separation of yttrium-90 by solid phase extraction using DGA Resin for seawater monitoring. Talanta, 152, 219-227. Doi:10.1016/j.talanta.2016.01.065(also in A04-8)
  55. Romero, L., Siegel, D. A., McWilliams, J. C., Uchiyama, Y. and Jones, C. (2016) Characterizing Stormwater Dispersal and Dilution from Small Coastal Streams, J. Geophys. Res., 121 (6), 3926-3943. Doi:10.1002/2015JC011323
  56. Takata, H., Kusakabe, M., Inatomi, N., Ikenoue, T. and Hasegawa, K. (2016) The Contribution of Sources to the Sustained Elevated Inventory of 137Cs in Offshore Waters East of Japan after the Fukushima Dai-ichi Nuclear Power Station Accident, Environ. Sci. Technol., 50 (13), 6957-6963. Doi: 10.1021/acs.est.6b00613
  57. Tateda, Y., Tsumune, D., Tsubono, T., Misumi, K., Yamada, M., Kanda, J. and Ishimaru, T. (2016) Status of 137Cs contamination in marine biota along the pacific coast of eastern Japan derived from a dynamic biological model two years simulation following the Fukushima accident, Journal of Environmental Radioactivity, 151, Part2, 495-501. Doi: 10.1016/j.jenvrad.2015.05.013
  58. Tsubono, T., Misumi, K., Tsumune, D., Bryan, F. O., Hirose, K. and Aoyama, M. (2016) Evaluation of radioactive cesium impact from atmospheric deposition and direct release fluxes into the North Pacific from the Fukushima Daiichi nuclear power plant, Deep Sea Research I, 115, 10-21. Doi:10.1016/j.dsr.2016.02.019
  59. 内山雄介・鈴江洋太・小硲大地 (2016) 瀬戸内海および遠州灘沿岸域における陸域起源物質分散の季節変動特性について,土木学会論文集B1(水工学),72 (4), I_949-I_954. Doi:10.2208/jscejhe.72.I_949
  60. 山西琢文・内山雄介・岩崎理樹・清水康行・津旨大輔三角和弘・恩田裕一 (2016) 出水イベントに伴う福島新田川河口周辺海域における懸濁態放射性核種の海洋分散について、土木学会論文集B2(海岸工学), 72 (2), I_757-I_762. Doi: 10.2208/kaigan.72.I_757
  61. Yang, G., Tazoe, H. and Yamada, M. (2016) Determination of 236U in environmental samples by single extraction chromatography coupled to triple-quadrupole inductively coupled plasma-mass spectrometry, Analytica Chimica Acta, 944, 44-50. Doi:10.1016/j.aca.2016.09.033
  62. Yang, G., Tazoe, H. and Yamada, M. (2016) 135Cs activity and 135Cs/137Cs atom ratio in environmental samples before and after the Fukushima Daiichi Nuclear Power Plant accident, Scientific Reports, 6, 24119. Doi:10.1038/srep24119
  63. Yang, G., Tazoe, H. and Yamada, M. (2016) Rapid determination of 135Cs and precise 135Cs/137Cs atomic ratio in environmental samples by single-column chromatography coupled to triple-quadrupole inductively coupled plasma-mass spectrometry, Analytica Chimica Acta, 908, 177-184. Doi:10.1016/j.aca.2015.12.041
  64. Yasutaka, T., Miyazu, S., Kondo, Y., Tsuji, H., Arita, K., Hayashi, S., Takahashi, A., Kawamoto, T. and Aoyama, M. (2016) Development of a copper-substituted, Prussian blue-impregnated, nonwoven cartridge filter to rapidly measure radiocesium concentration in seawater, Journal of Nuclear Science and Technology, 53 (9), 1243-1250. Doi:10.1080/00223131.2015.1135302
  65. Bu, W. T,. Zheng, J., Aono, T., Wu, J. W., Tagami, K., Shigeo, S., Guo, Q. J. and Yamada, M.(2015) Pu Distribution in Seawater in the Near Coastal Area off Fukushima after the Fukushima Daiichi Nuclear Power Plant Accident, Journal of Nuclear and Radiochemical Sciences, 15 (1), 1-6. Doi:10.14494/jnrs.15.1_1MAP
  66. Bu, W. T., Zheng, J., Guo. Q. J,. Aono, T., Otosaka, S., Tagami, K. and Uchida, S. (2015) Temporal distribution of plutonium isotopes in marine sediments off Fukushima after the Fukushima Dai-ichi Nuclear Power Plant accident, Journal of Radioanalytical and Nuclear Chemistry, 303 (2), 1151-1154. Doi:10.1007/s10967-014-3437-yMAP
  67. Buesseler, K. O., German, C. R., Honda, M. C., Otosaka, S., Black, E. E., Kawakami, H., Manganini, S. J. and Pike, S. M. (2015) Tracking the fate of particle associated Fukushima cesium in the ocean off Japan, Environ. Science and Technology, 49, 9807-9816. Doi: 10.1021/acs.est.5b02635MAP
  68. Fujimoto, K., Miki, S., Kaeriyama, H., Shigenobu, Y., Takagi, K., Ambe, D., Ono, T., Watanabe, T., Morinaga, K., Nakata, K. and Morita, T. (2015) Use of otolith for detecting strontium-90 in fish from the harbor of FukushimaDai-ichi Nuclear Power Plant, Environ. Science. and Technology, 49, 7294-7301. Doi:10.1021/es5051315
  69. 本多牧生 (2015) 時系列式セジメントトラップによる原子力発電所事故由来の粒状態放射性核種の挙動に関する観測研究, 地球化学, 49 (4), 227-238. Doi:10.14934/chikyukagaku.49.227
  70. Honda, M., Matsuzaki, H., Miyake, Y., Maejima, Y., Yamagata, T. and Nagai, H. (2015) Depth profile and mobility of 129I and 137Cs in soil originating from the Fukushima Dai-ichi Nuclear Power Plant accident, J. Environ. Radioact., 146, 35-43. Doi:10.1016/j.jenvrad.2015.03.029
  71. Kaeriyama, H., Fujimoto, K., Ambe, D., Shigenobu, Y., Ono, T., Tadokoro, K., Okazaki, Y., Kakehi, S., Ito, S., Narimatsu, Y., Nakata, K., Morita, T. and Watanabe, T. (2015) Fukushima-derived 134Cs and 137Cs in zooplankton and seawater samples collected off the Joban-Sanriku coast, in Sendai Bay, and the Oyashio region, Fisheries Science, 81, 139-153. Doi: 10.1007/s12562-014-0827-6
  72. Kumamoto, Y., Aoyama, M., Hamajima, Y., Murata, A. and Kawano, T. (2015) Impact of Fukushima-derived radiocesium in the western North Pacific Ocean about ten months after the Fukushima Dai-ichi nuclear power plant accident, Journal of Environmental Radioactivity, 140, 114-122. Doi:10.1016/j.jenvrad.2014.11.010
  73. Kumar, N., Feddersen, F., Uchiyama, Y., McWilliams, J. and O'Reilly, W. (2015) Mid-shelf to surf zone coupled ROMS-SWAN model-data comparison of waves, currents, and temperature : Diagnosis of subtidal forcings and response, J. Phys. Oceanogr., 45, 1464-1490. Doi: 10.1175/JPO-D-14-0151.1
  74. Lutter, G., Tzika, F., Hult, M., Aoyama, M., Hamajima, Y., Marissens, G. and Stroh H. (2015) Measurement of anthropogenic radionuclides in post-Fukushima Pacific sea water samples, Nukleonika, 60 (3), 545-550. Doi:10.1515/nuka-2015-0112
  75. Marchesiello, P., Benshila, R., Almar, R., Uchiyama, Y., McWilliams, J. and Shchepetkin, A. (2015) On tridimensional rip current modeling, Ocean Modell., 96, Part1, 36-48. Doi:10.1016/j.ocemod.2015.07.003
  76. Matsuda, K., Takagi, K., Tomiya, A., Enomoto, M., Tsuboi, J., Kaeriyama, H., Ambe, D., Fujimoto, K., Ono, T., Uchida, K. and Yamamoto, S. (2015) Comparison of radioactive cesium contamination of lake water, bottom sediment, plankton and freshwater fish among lakes of Fukushima prefecture, Japan, after the Fukushima fallout, Fisheries Science, 81, 737-747. Doi: 10.1007/s12562-015-0874-7
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  149. Michel, R., Daraoui, A., Gorny, M., Jakob, D., Sachse, R., Tosch, L., Nies, H., Goroncy, I., Herrmann, J., Synal, H. A., Stocker, M. and Alfimov, V. (2012) Iodine-129 and iodine-127 in European seawaters and in precipitation from Northern Germany, Science of the Total Environment, 419, 151-169. Doi:10.1016/j.scitotenv.2012.01.009
  150. Miyazawa, Y., Masumoto, Y., Varlamov, S. M. and Miyama, T. (2012) Transport simulation of the radionuclide from the shelf to open ocean around Fukushima, Continental Shelf Research, 50-51, 16-29. Doi:10.1016/j.csr.2012.09.002
  151. Nakano, M. and Povinec, P. P. (2012) Long-term simulations of the 137Cs dispersion from the Fukushima accident in the world ocean, J. Environmental Radioactivity, 111, 109-115. Doi:10.1016/j.jenvrad.2011.12.001
  152. Pham, M. K., Eriksson, M., Levy, I., Nies, H., Osvath, I. and Betti, M. (2012) Detection of Fukushima Daiichi nuclear power plant accident radioactive traces in Monaco, J. Environmental Radioactivity, 114, 131-137. Doi:10.1016/j.jenvrad.2012.01.010
  153. Povinec, P. P., Hirose, K. and Aoyama, M. (2012) Radiostrontium in the Western North Pacific: Characteristics, Behavior, and the Fukushima Impact, Environmental Science and Technology, 46, 10356-10363. Doi:10.1021/es301997c
  154. Povinec, P. P., Sykora, I., Holy, K., Gera, M., Kovacik, A. and Brestakova, L. (2012) Aerosol radioactivity record in Bratislava/Slovakia following the Fukushima accident -A comparison with global fallout and the Chernobyl accident, J. Environmental Radioactivity, 114, 81-88. Doi:10.1016/j.jenvrad.2012.05.008
  155. Schoppner, M., Plastino, W., Povinec, P. P., Wotawa, G., Bella, F., Budano, A., De Vincenzi, M. and Ruggieri, F. (2012) Estimation of the time-dependent radioactive source-term from the Fukushima nuclear power plant accident using atmospheric transport modelling, J. Environmental Radioactivity, 114, 10-14. Doi:10.1016/j.jenvrad.2011.11.008
  156. Tazoe, H., Hosoda, M., Sorimachi, A., Nakata, A., Yoshida, M. A., Tokonami, S. and Yamada, M. (2012) Radioactive Pollution from Fukushima Daiichi Nuclear Power Plant in the Terrestrial Environment, Radiation Protection Dosimetry, 152 (1-3), 198-203. Doi:10.1093/rpd/ncs222
  157. Toyama, C., Muramatsu, Y., Uchida, Y., Igarashi, Y., Aoyama, M. and Matsuzaki, H. (2012) Variations of 129I in the atmospheric fallout of Tokyo, Japan: 1963-2003, Journal of environmental radioactivity, 113, 116-122. Doi: 10.1016/j.jenvrad.2012.04.014
  158. Tsumune, D., Tsubono, T., Aoyama, M. and Hirose, K. (2012) Distribution of oceanic 137Cs from the Fukushima Dai-ichi Nuclear Power Plant simulated numerically by a regional ocean model, J. Environmental Radioactivity, 111, 100-108. Doi:10.1016/j.jenvrad.2011.10.007
  159. Tumey, S. J., Guilderson, T. P., Brown, T. A., Broek, T. and Buesseler, K. O. (2012) Input of 129I into the Western Pacific Ocean Resulting from the Fukushima Nuclear Event, Journal of Radioanalytical and Nuclear Chemistry, 296, 957-962. Doi:10.1007/s10967-012-2217-9
  160. 内山雄介・石井倫生・津旨大輔・宮澤泰正 (2012) 福島第一原子力発電所を放出源とする放射性セシウム137の沿岸域での分散特性, 土木学会論文集B2(海岸工学), 6, 931-935. Doi:10.2208/kaigan.68.I_931
  161. Zheng, J., Aono, T., Uchida, S., Zhang, J. and Honda, M. C. (2012) Distribution of Pu isotopes in marine sediments in the Pacific 30km off Fukushima after the Fukushima Daiichi nuclear power plant accident, Geochemical Journal, 46, 361-369. Doi:10.2343/geochemj.2.0209 (also in A02-4)MAP
  162. Zheng, J., Tagami, K., and Uchida, S. (2012) Rapid analysis of U isotopes in vegetables using ICP-MS: application to the emergency U monitoring after the nuclear accident at TEPCO's Fukushima Dai-ichi power station, Journal of Radioanalytical and Nuclear Chemistry, 292 (1), 171-175. Doi:10.1007/s10967-011-1387-1
  163. Zheng, J., Tagami, K., Watanabe, Y., Uchida, S., Aono, T., Ishii, N., Yoshida, S., Kubota, Y., Fuma, S. and Ihara, S. (2012) Isotopic evidence of plutonium release into the environment from the Fukushima DNPP accident, Scientific Reports, 2, 304. Doi:10.1038/srep00304
  164. Buesseler, K., Aoyama, M. and Fukasawa, M. (2011) Impacts of the Fukushima Nuclear Power Plants on Marine Radioactivity, Environmental Science & Technology, 45, 9931-9935. Doi:10.1021/es202816c
  165. Lujaniene, G., Bycenkiene, S., Sciglo, T., Povinec, P. P., Gera, M., Bartok, J. and Gazak, M. (2011) Radionuclides from the Fukushima accident in Europe-Modelling the air mass transport, Fuzzy Systems and Knowledge Discovery (FSKD), 2011 Eighth International Conference (Volume:4), 2707-2709. Doi:10.1109/FSKD.2011.6020078
  166. Plastino, W., Schoppner, M., Bella, F., De Vincenzi, M., Povinec, P. P., Wotawa, G., Budano, A. and Ruggieri, F. (2011) Atmospheric transport modeling based estimation of radioactive release from the Fukushima Dai-ichi nuclear power plant accident, Natural Computation (ICNC), 2011 Seventh International Conference on Natural Computation (Volume:4), 2002-2005. Doi:10.1109/ICNC.2011.6022577
[Books]
  1. Kaeriyama, H. (2015) 2. 134Cs and 137Cs in the seawater around Japan and in the North Pacific. In: Nakata, K. and Sugisaki, H. (eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds, 11-32, Springer Japan, Doi:10.1007/978-4-431-55537-7_2, ISBN(Print): 978-4-431-55536-0, ISBN(Online): 978-4-431-55537-7
  2. Kaeriyama, H. (2015) 3. Temporal changes in 137Cs concentration in zooplankton and seawater off the Joban-Sanriku coast, and in Sendai Bay, after the Fukushima Dai-ichi Nuclear Accident. In: Nakata, K. and Sugisaki, H. (eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds. Springer Japan, 33-49. Doi:10.1007/978-4-431-55537-7_3, ISBN(Print): 978-4-431-55536-0, ISBN(Online):978-4-431-55537-7
  3. Ambe, D., Kaeriyama, H., Shigenobu, Y., Fujimoto, K., Ono, T., Sawada, H., Saito, H., Tanaka, M., Miki, S., Setou, T., Morita, T. and Watanabe, T. (2015) 4. Three-dimensional distribution of radiocesium in sea sediment derived from the Fukushima Dai-ichi Nuclear Power Plant. In: Nakata, K. and Sugisaki, H.(eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds, 53-65, Springer Japan. Doi:10.1007/978-4-431-55537-7_4, ISBN(Print): 978-4-431-55536-0, ISBN(Online):978-4-431-55537-7
  4. Ono, T., Ambe, D., Kaeriyama, H., Shigenobu, Y., Fujimoto, K., Sogame, K., Nishiura, N., Fujikawa, T., Morita, T. and Watanabe, T. (2015) 5. Radiocesium concentrations in the organic fraction of sea sediments. In: Nakata, K. and Sugisaki, H. (eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds, 67-75, Springer Japan, Doi:10.1007/978-4-431-55537-7_5, ISBN(Print): 978-4-431-55536-0, ISBN(Online):978-4-431-55537-7
  5. Shigenobu, Y., Ambe, D., Kaeriyama, H., Sohtome, T., Mizuno, T., Koshiishi, Y., Yamasaki, S. and Ono, T. (2015) 7. Investigation of radiocesium translation from contaminated sediment to benthic organisms. In: Nakata, K. and Sugisaki, H. (eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds, 91-98, Springer Japan. Doi:10.1007/978-4-431-55537-7_7,ISBN(Print): 978-4-431-55536-0, ISBN(Online):978-4-431-55537-7
  6. Watanabe, T., Fujimoto, K., Shigenobu, Y., Kaeriyama, H., Morita, T. (2015) 13. Analysis of the contamination process of the extremely contaminated fat greenling by Fukushima-derived radioactive material. In: Nakata, K. and Sugisaki, H. (eds) Impacts of the Fukushima Nuclear Accident on Fish and Fishing grounds. 163-176, Springer Japan. Doi:10.1007/978-4-431-55537-7_13, ISBN(Print): 978-4-431-55536-0, ISBN(Online): 978-4-431-55537-13
  7. 植松光夫津旨大輔浜島靖典青山道夫升本順夫(2014) 中島映至・大原利眞・植松光男・恩田裕一 編 (2014) 『原発事故環境汚染 福島第一原発事故の地球科学的側面』, ISBN978-4-13-060312-6, 東京大学出版会, 判型:A5, 312頁
  8. Bu, W., Zheng, J., Guo, Q. J., Tagami, K. and Uchida, S. (2014) Distribution of plutonium isotopes in marine sediments off Japan before and after the Fukushima Daiichi Nuclear Power Plant accident: a review. Chapter 9, in Radiation Monitoring and Dose Estimation of the Fukushima Nuclear Accident, S. Takahashi (Ed.), Springer, 2014. ISBN 978-4-431-54582-8. pp.91-101.
  9. Buesseler, K. and Uematsu, M. (2013) Fukushima and the Ocean; what have we learned from this unprecedented release of radioactive contaminants to the ocean?, Oceanus, 50 (1), 26 pp.
  10. Povinec, P. P., Hirose, K. and Aoyama, M. (2013) Fukushima Accident: Radioactivity Impact on the Environment, Elsevier
  11. Zheng, J., Tagami, K. and Uchida, S. (2012) Release of plutonium isotopes from the Fukushima Daiichi nuclear power plant accident. In: Environmental monitoring and dose estimation of residents after accident of TEPCO’s Fukushima Daiichi nuclear power stations, Edited by S. Takahashi, H. Yamana, T. Takahashi, K. Takamiya, S. Fukutani, N. Sato and M. Nakatani. Research Reactor Institute,Kyoto University, Japan. pp. 184-189, ISSN 978-4-9906815-0-0. (査読無)
  12. Bu, W. T., Zheng, J., Aono, T., Tagami, K., Uchida, S., Zhang, J., Guo, Q. J. and Yamada, M. (2012) Investigating plutonium contamination in marine sediments off Fukushima following the Fukushima Daiichi nuclear power plant accident. In: Environmental monitoring and dose estimation of residents after accident of TEPCO’s Fukushima Daiichi nuclear power stations, Edited by S. Takahashi, H. Yamana, T. Takahashi, K. Takamiya, S. Fukutani, N. Sato and M. Nakatani. Research Reactor Institute, Kyoto University, Japan, pp. 141-145, ISSN 978-4-9906815-0-0. (査読無)
[Proceedings]
  1. 長谷川憲・山形武靖・永井尚生青山道夫・松崎浩之 (2013) 福島沖および北太平洋における海水中のI-129濃度分布, Proceedings of the 14th Workshop on Environmental Radioactivity, 257-260.
  2. 辻田一樹・長谷川憲・原田直弥・山形武靖・永井尚生青山道夫 (2013) 西部北太平洋における海水中の放射性セシウム濃度分布 - KOK 航海およびKH-12-4 航海 -, Proceedings of the 14th Workshop on Environmental Radioactivity, 359-364.
  3. 山形武靖・長谷川憲・段野文彰・本多真紀・松崎浩之・永井尚生 (2013) 福島沖および北太平洋における海水中のI-129濃度分布, Proceedings of the 14th Workshop on Environmental Radioactivity, 257-260.
  4. Zheng, J., Tagami, K., Bu, W. T. and Uchida, S. (2013) Exploring analytical potential of SF-ICP-MS and reaction cell ICP-MS for the determination of radioactive Cs isotopes,Proceedings of the 89th Symposium of Discussion Group for Plasma Spectrochemistry, 3-11.(査読無)
  5. Zheng, J., Tagami, K. and Uchida, S. (2013) Exploring analytical potential of ICP-MS for the determination of radioactive Cs, Proceedings of the 14th Workshop on Environmental Radioactivity, 359-364.
  6. Bu, W. T., Zheng, J., Aono, T., Tagami, K., Uchida, S., Zhang, J., Guo, Q. J. and Yamada, M. (2012) Investigating plutonium contamination in marine sediments off Fukushima coast following the Fukushima Dai-ichi Nuclear Power Plant Accident, Proceedings of the International Symposium on Environmental monitoring and dose estimation of residents after accident of TEPCO's Fukushima Daiichi Nuclear Power Stations, December 14, 2012.
  7. Buesseler, K. O., Jayne, S. R., Fisher, N. S., Rypina, I. I., Baumann, H., Baumann, Z., Breier, C. F., Douglass, E. M., George, J., Macdonald, A. M., Miyamoto, H., Nishikawa, J., Pike, S. M. and Yoshida, S. (2012) Fukushima-derived radionuclides in the ocean and biota off Japan, Proceedings of the National Academy of Sciences U S A, 109, 5984-5988. Doi:10.1073/pnas.1120794109
  8. Zheng, J., Tagami, K. and Uchida, S. (2012) Release of plutonium isotopes from the Fukushima Daiichi Nuclear Power Plant accident, Proceedings of the International Symposium on Environmental monitoring and dose estimation of residents after accident of TEPCO's Fukushima Daiichi Nuclear Power Stations, December 14, 2012.
  9. Aoyama, M., Kajino, M., Tanaka, T. Y., Sekiyama, T. T., Tsumune, D., Tsubono, T., Hamajima, Y., Gamo, T., Uematsu, M., Kawano, T., Murata, A., Kumamoto, Y., Fukasawa, M. and Chino, M. (2012) North Pacific Distribution and Budget of Radiocesium Released by the 2011 Fukushima Nuclear Accident 2012.
Group A02-4

[Upadated on Apr.16, 2018]

  1. Fukuda, M., Aono, T., Yamazaki, S.,Ishimaru, T., Kanda, J., Nishikawa, J., Otosaka,S., (2018) Factors controlling 134Cs activity concentrations in sediment collected off the coast of Fukushima Prefecture in 2013-2015, Geochemical journal 52. 201-209Doi: 10.2343/geochemj.2.0504
  2. Fukuda, M., Aono, T., Yamazaki, S., Nishikawa, J., Otosaka, S., Ishimaru, T. and Kanda, J. (2017) Dissolved radiocaesium in seawater off the coast of Fukushima during 2013-2015, J. Radioanal. Nucl. Chem., 311 (2), 1479-1484. Doi: 10.1007/s10967-016-5009-9
  3. Ikenoue, T., Takata, H., Kusakabe, M., Kudo, N., Hasegawa, K. and Ishimaru, T. (2017) Temporal variation of cesium isotope concentrations and atom ratios in zooplankton in the Pacific off the east coast of Japan, Scientific Reports, 7, 39874. Doi: 10.1038/srep39874
  4. 石丸 隆・伊藤友加里・神田穣太 (2017) 放射性物質と海洋生態系, 沿岸海洋研究,54 (2), 143-149.
  5. Ishimaru, T., Yamada, M., Tateda, Y., Aoyama, M., Hamajima, Y., Tsumune, D., Yoshimura, T., Matsumoto, T. T., Kasamatsu, N., Sato, T., Morioka, Y., Kanda, J. and Mizuno, T. (in preparation) Radioecological kinetics of radiocesium content in Sebastes cheni habituating southern coastal water of Fukushima, Marine Ecology Progress Series
  6. Kitamura, M., Honda, M. C., Hamajima, Y., Kumamoto, Y., Aoyama, M., Kawakami, H., Aono, T., Fukuda, M. and Mino, Y. (2017) Temporal changes in radiocesium contamination derived from the Fukushima Dai-ichi Nuclear Power Plant accident in oceanic zooplankton in the western North Pacific, J. Environ. Radioact., 172, 163-172. Doi: 10.1016/j.jenvrad.2017.03.024
  7. Madigan, D. J., Baumann, Z., Snodgrass, O. E., Dewar, H., Berman-Kowalewski, M., Weng, K. C., Nishikawa, J., Dutton, P. H. and Fisher, N. S. (in review) Assessing Fukushima-derived radiocesium in migratory Pacific predators, Environmental Science and Technology, 51 (16), 8962-8971. Doi:10.1021/acs.est.7b00680
  8. 立田 穣 (2017) 放射性セシウムの海洋生物への移行と浄化過程の解明, Isotope News, 749, 16-19.
  9. Tateda, Y., Tsumune, D. and Aono, T. (in preparation) Reconstruction of radiocesium levels in Fukushima coastal organisms: Best practice for planning emergency monitoring, Environment. Radioact.
  10. Tateda, Y., Tsumune, D., Misumi, K., Aono, T. and Kanda, J. (2017) Biokinetics of radiocesium depuration in marine fish inhabiting the vicinity of the Fukushima Dai-ichi Nuclear Power Plant, J. Environ. Radioact., 166 (Pt1), 67-73. Doi: 10.1016/j.jenvrad.2016.02.028
  11. Yamaguchi, A., Matsuno, K., Abe, Y., Arima, D. and Imai, I. (2017) Latitudinal variations in the abundance, biomass, taxonomic composition and estimated production of epipelagic mesozooplankton along the 155°E longitude in the western North Pacific during spring, Progress in Oceanography, 150, 13-19. Doi: 10.1016/j.pocean.2015.04.011
  12. Abe, Y., Miyamoto, H., Saito, R., Matsuno, K., Yamaguchi, A. and Imai, I. (2016) Comparative ecology of three dominant pelagic chaetognaths (Eukrohnia hamata, Parasagitta elegans, Pseudosagitta scrippsae) in the Oyashio region during the spring phytoplankton bloom, Regional Studies in Marine Science, 8, Part1, 122-132. Doi: 10.1016/j.rsma.2016.08.006
  13. Abe, Y., Yamada, Y., Saito, R., Matsuno, K., Yamaguchi, A., Komatsu, K. and Imai, I. (2016) Short-term changes in abundance and population structure of dominant pelagic amphipod species in the Oyashio region during the spring phytoplankton bloom, Regional Studies in Marine Science, 3, 154-162. Doi: 10.1016/j.rsma.2015.07.005
  14. Arima, D., Yamaguchi, A., Nobetsu, T. and Imai, I. (2016) Seasonal abundance, population structure, sex ratio and gonad maturation of Metridia okhotensis Brodsky, 1950 in the Okhotsk Sea: Analysis of samples collected by pumping up from deep water, Crustaceana, 89 (2), 151-161. Doi: 10.1163/15685403-00003516
  15. Arima, D., Yamaguchi, A., Nobetsu, T. and Imai, I. (2016) Usefulness of deep-ocean water pumping for the seasonal monitoring of mesozooplankton, Regional Studies in Marine Science, 3, 18-24. Doi: 10.1016/j.rsma.2015.10.005
  16. 松本健太郎・有馬大地・松野孝平・山﨑康裕・大西広二・大木淳之・平譯 享・山口 篤・今井一郎 (2016) 西部北太平洋155°E線に沿った春季植物プランクトン群集の水平および鉛直分布:多波長励起蛍光光度計による解析, 北大水産彙報, 66 (1), 29-38. Doi: 10.14943/bull.fish.66.1.29
  17. Matsuno, K., Abe, Y., Yamaguchi, A. and Kikuchi, T. (2016) Regional patterns and controlling factors on summer population structure of Calanus glacialis in the western Arctic Ocean, Polar Science, 10 (4), 503-510. Doi: 10.1016/j.polar.2016.09.001
  18. Matsuno, K., Landeira Sanchez, J. M., Yamaguchi, A., Hirawake, T. and Kikuchi, T. (2016) Spatial and geographical changes in the mesozooplankton community in the Bering and Chukchi Seas during the summers of 2007 and 2008, Polar Science, 10 (3), 335-345. Doi: 10.1016/j.polar.2016.04.006
  19. Matsuno, K., Yamaguchi, A., Fujiwara, A., Onodera, J., Watanabe, E., Harada, N. and Kikuchi, T. (2016) Seasonal changes in mesozooplankton swimmer community and fecal pellets collected by sediment trap moored at the Northwind Abyssal Plain in the western Arctic Ocean, Bulletin of Fisheries Sciences Hokkaido University, 66 (2), 77-85. Doi: 10.14943/bull.fish.66.2.77
  20. Tateda, Y., Tsumune, D., Tsubono, K., Misumi, M., Yamada, T., Kanda, J. and Ishimaru, T. (2016) Status of 137Cs contamination in marinr biota along the pacific coast of eastern Japan derived from a dynamic biological model two years simulation following the Fukushima accident, J. Environ. Radioactivity, 151, Part 2, 495-501. Doi: 10.1016/j.jenvrad.2015.05.013
  21. Wang, C., Baumann, Z., Madigan, D. J. and Fisher, N. S. (2016) Contaminated marine sediments as a source of cesium radioisotopes for benthic fauna near Fukushima, Environmental Science and Technology, 50 (19), 10448-10455. Doi: 10.1021/acs.est.6b02984 (謝辞)
  22. Yokoi, N., Matsuno, K., Ichinomiya, M., Yamaguchi, A., Nishino, S., Onodera, J., Inoue, J. and Kikuchi, T. (2016) Short-term changes in a microplankton community in the Chukchi Sea during autumn: consequences of a strong wind event, Biogeosciences, 13, 913-923. Doi: 10.5194/bg-13-913-2016
  23. Arima, D., Matsuno, K., Yamaguchi, A., Nobetsu, T. and Imai, I. (2015) Seasonal and inter-species comparison of asymmetry in the genital system of some species of the oceanic copepod genus Metridia (Copepoda, Calanoida), Crustaceana, 88 (12-14), 1307-1321. Doi:10.1163/15685403-00003485
  24. Baumann, Z., Fisher, N. S., Gobler, C. J., Buesseler, K. O., George, J. A., Breier, C. F. and Nishikawa, J. (2015) Fukushima 137Cs at the base of planktonic food webs off Japan, Deep-Sea Research Part I, 106, 9-16. Doi:10.1016/j.dsr.2015.09.006MAP
  25. 今井圭理・渡辺 豊 (2015)「おしょろ丸」を利用した北太平洋表層における東京電力福島第一原子力発電所事故後の放射性セシウム濃度の継続的調査. 北海道大学水産科学研究彙報, 65 (2), 111-116. Doi: 10.14943/bull.fish.65.2.111
  26. Matsuno, K., Yamaguchi, A., Fujiwara, A., Onodera, J., Watanabe, E., Harada, N. and Kikuchi, T. (2015) Seasonal changes in the population structure of dominant planktonic copepods collected using a sediment trap moored in the western Arctic Ocean, Journal of Natural History, 49 (45-48), 2711-2726. Doi: 10.1080/00222933.2015.1022613
  27. Matsuno, K., Yamaguchi, A., Hirawake, T., Nishino, S., Inoue, J. and Kikuchi, T. (2015) Reproductive success of Pacific copepods in the Arctic Ocean and the possibility of changes in the Arctic ecosystem, Polar Biology, 38 (7), 1075-1079. Doi: 10.1007/s00300-015-1658-3
  28. Matsuno, K., Yamaguchi, A., Nishino, S., Inoue, J. and Kikuchi, T. (2015) Short-term changes in the mesozooplankton community and copepod gut pigment in the Chukchi Sea in autumn: reflections of a strong wind event, Biogeosciences, 12, 4005-4015. Doi: 10.5194/bg-12-4005-2015
  29. Sato, K., Matsuno, K., Arima, D., Abe, Y. and Yamaguchi, A. (2015) Spatial and temporal changes in zooplankton abundance, biovolume, and size spectra in the neighboring waters of Japan: analyses using an optical plankton counter. Zoological Studies, 54, 18. Doi:10.1186/s40555-014-0098-z
  30. Tateda, Y., Tsumune, D., Tsubono, T., Aono, T., Kanda, J., Ishimaru, T. (2015) Radiocesium biokinetics in olive flounder inhabiting the Fukushima accident-affected Pacific coastal waters of eastern Japan. J. Environ. Radioactivity, 147, 130-141. Doi: 10.1016/j.jenvrad.2015.05.025
  31. Yamaguchi, A. (2015) Inter-oceanic comparison of planktonic copepod ecology (vertical distribution, abundance, community structure, population structure and body size) between the Okhotsk Sea and Oyashio region in autumn, Journal of Natural History, 49 (45-48), 2743-2757. Doi: 10.1080/00222933.2015.1022616
  32. Yamaguchi, A., Matsuno, K. and Homma, T. (2015) Spatial changes in the vertical distribution of calanoid copepods down to great depths in the North Pacific, Zoological Studies, 54, 13. Doi:10.1186/s40555-014-0091-6
  33. Arima, D., Yamaguchi, A., Abe, Y., Matsuno, K., Saito, R., Asami, H., Shimada, H. and Imai, I. (2014) Seasonal changes in body size and oil sac volume of three planktonic copepods, Paracalanus parvus (Claus, 1863), Pseudocalanus newmani Frost, 1989 and Oithona similis Claus, 1866, in a temperate embayment: what controls their seasonality?, Crustaceana, 87 (3), 364-375. Doi: 10.1163/15685403-00003287
  34. Aono, T., Ito, Y., Sotome, T., Mizuno, T., Igarashi, S., Kanda, J. and Ishimaru, T. (2014) Observation of Radionuclides in Marine Biota off the Coast of Fukushima Prefecture After TEPCO's Fukushima Daiichi Nuclear Power Station Accident, In: Radiation Monitoring and Dose Estimation of the Fukushima Nuclear Accident, 115-123. Doi: 10.1007/978-4-431-54583-5_11
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  38. Bu, W., Zheng, J., Guo, Q. J., Aono, T., Tazoe, H., Tagami, K., Uchida, S. and Yamada, M. (2014) A method of measurement of 239Pu, 240Pu, 241Pu in high U content marine sediments by sector field ICP-MS and its application to Fukushima sediment samples, Environmental Science and Technology, 48, 534-541. Doi:10.1021/es403500e (also in A02-3)
  39. Bu, W., Zheng, J., Guo, Q. J., Aono, T., Tagami, K., Uchida, S., Tazoe, H. and Yamada, M.(2014) Ultra-trace determination of plutonium in small volume seawater by sector-field inductively coupled plasma mass spectrometry with application to Fukushima seawater samples, Journal of Chromatography A, 1337 (11), 171-178, Doi:10.1016/j.chroma.2014.02.066 (also in A02-3)
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  41. Matsuno, K., Ichinomiya, M., Yamaguchi, A., Imai I. and Kikuchi, T. (2014) Horizontal distribution of microprotist community structure in the western Arctic Ocean during late summer and early fall of 2010, Polar Biology, 37 (8), 1185-1195. Doi: 10.1007/s00300-014-1512-z
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  43. Sohtome, T., Wada, T., Mizuno, T., Nemoto, Y., Igarashi, S., Nishimune, A., Aono, T., Ito, Y., Kanda, J. and Ishimaru, T. (2014) Radiological impact of TEPCO's Fukushima Dai-ichi Nuclear Power Plant accident on invertebrates in the coastal benthic food web, Journal of Environmental Radioactivity, 138, 106-15. Doi:10.1016/j.jenvrad.2014.08.008
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[Books]
  1. 神田穣太青野辰雄石丸隆(2014)中島映至, 大原利眞, 植松光男, 恩田裕一 編 (2014) 『原発事故環境汚染 福島第一原発事故の地球科学的側面』ISBN978-4-13-060312-6, 東京大学出版会, 判型:A5, 312頁
  2. 青野辰雄 (2011) 環境放射能モニタリングに反映された原発事故 その2.海洋, 資源環境対策, 別冊47 (10), 31-36.
[Proceedings]
  1. 青野辰雄石丸 隆神田穣太伊藤友加里・早乙女忠弘・水野拓治・五十嵐敏・吉田 聡 (2013) 福島沿岸における海洋生物中の放射性核種濃度について, Proceedings of the Workshop on Environmental Radioactivity (KEK Proceedings), 261-264, 2013-11.
  2. Aono, T., Ito, Y., Saotome, T., Mizuno, T., Igarashi, S., Kanda, J. and Ishimaru, T.. (2012) Observation of radionuclides in marine biota off the coast of Fukushima prefecture after TEPCO's Fukushima Daiichi Nuclear Power Plant accident, Proceedings of the International Symposium on Environmental monitoring and dose estimation of residents after accident of TEPCO's Fukushima Daiichi Nuclear Power Stations, 2012.
  3. Bu, W. T., Zheng, J., Aono, T., Tagami, K., Uchida, S., Zhang, J., Guo, Q. J. and Yamada, M. (2012) Investigating plutonium contamination in marine sediments off Fukushima coast following the Fukushima Dai-ichi Nuclear Power Plant Accident, Proceedings of the International Symposium on Environmental monitoring and dose estimation of residents after accident of TEPCO's Fukushima Daiichi Nuclear Power Stations, December 14, 2012.
  4. Buesseler, K. O., Jayne, S. R., Fisher, N. S., Rypina, I. I., Baumann, H., Baumann, Z., Breier, C. F., Douglass, E. M., George, J., Macdonald, A. M., Miyamoto, H., Nishikawa, J., Pike, S. M. and Yoshida, S. (2012) Fukushima-derived radionuclides in the ocean and biota off Japan, Proceedings of the National Academy of Sciences U S A, 109, 5984-5988. Doi:10.1073/pnas.1120794109MAP

Research recruited from the public / 採択された公募研究

*Peer Reviewed
  1. 内山雄介・山西琢文・津旨大輔・宮澤泰正(2014)福島沿岸域における放射性核種の海域移行定量化を目的とした領域土砂輸送モデルの開発,土木学会論文集B2(海岸工学),70 (2), I_571-I_575. Doi:10.2208/kaigan.70.I_571
  2. 内山雄介・山西琢文・津旨大輔・宮澤泰正・石井倫生(2013)福島第一原発からの放射性核種の初期分散に及ぼす沿岸ジェットとメソスケール渦の影響, 土木学会論文集B2(海岸工学),69 (2), I_1051-I_1055) Doi:10.2208/kaigan.69.I_1051
  3. Inomata, Y., Aoyama, M., Hirose, K., Sanada, Y., Torii, T., Tsubono, T., Tsumune, D. and Yamada, M. (2014) Distribution of radionuclides in surface seawater obtained by an aerial radiological survey, Journal of Nuclear Science and Technology, 51 (9), 1059-1063. Doi:10.1080/00223131.2014.914451

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