松岡敦
From Wikipedia, the free encyclopedia
松岡 敦(まつおか あつし)は、日本の水産科学研究者。人工衛星を使用するリモートセンシング(RS)を専門とし、地球環境の変化が水圏に及ぼす影響をRSで時空間的に把握して,その改善に貢献する研究を続ける。アメリカ・ニューハンプシャー大学、カナダ・ラヴァル大学、フランス国立宇宙研究センターを経て、京都情報大学院大学教授[1]
業績
受賞
- 日本海洋学会論文表彰(JOMOCA, 2025): Matsuoka, A., Campbell, J. W., Hooker, S. B., Steinmetz, F., Ogata, K., Hirata, T., Higa, H., Kuwahara, V. S., Isada, T., Suzuki, K., Hirawake, T., Ishizaka, J., and Murakami, H. "Performance of JAXA's SGLI standard ocean color products for oceanic to coastal waters:chlorophyll a concentration and light absorption coefficients of colored dissolved organic matter", Journal of Oceanography (2022).doi:10.1007/s10872-021-00617-2[5]
招待講演
- Matsuoka, A., "Arctic satellite remote sensing, challenges, and gaps", NASA Virtual Community Meeting on pre-Arctic-COLORS Data Synthesis, 20 October, 2021[6]
- Matsuoka, A., "MALINA and NUNATARYUK projects", NASA Virtual Community Meeting on pre-Arctic-COLORS Data Synthesis, 18 October, 2021[7]
- Matsuoka, A., "Ocean color remote sensing in polar seas", 4th International Ocean Colour Science (IOCS) meeting, 9-12 April 2019, Busan, South Korea[8]
- Matsuoka, A., "Ocean color of the Arctic Ocean", 15th International Circumpolar Remote Sensing Symposium (ICRSS), 10-15 September 2018, Potsdam, Germany[9]
- Matsuoka, A., "Roles of colored dissolved organic matter in the Arctic Ocean", International Workshop on Organic matter spectroscopy 2015, 22-25 September 2015, Sopot, Poland.
著書
- Reynolds, R., Matsuoka, A., Hirawake, T., Bélanger, S. and Mitchell, B. G. "Ocean colour algorithms and bio-optical relationships for polar seas, in Ocean Colour Remote Sensing in Polar Seas", Eds., M. Babin, K. Arrigo, S. Belanger, and M.-H. Forget, International Ocean Colour Coordinating Group (IOCCG) report Series, No. 16, International Ocean Colour Coordinating Group, Dartmouth, Canada. 2015 ISSN 1098-6030 ISBN 978-1-896246-51-2
論文
- Bertin, C., Fouest, V. Le, Carroll, D., Dutkiewicz, S., Menemenlis, D., Matsuoka, A., Manizza, M., & Miller, C. E. "Terrestrial browning from colored dissolved organic matter (CDOM) changes the phenology of the Arctic carbon cycle", Biogeosciences Discussion, 1-33. (2025)[10]
- Li, J., Matsuoka, A., Devred, E., Hooker, S. B., Pang, X., & Babin, M. "A novel GSM and fluorescence coupled full-spectral chlorophyll a algorithm for waters with high CDM content", Remote Sensing of Environment, 321, 114667. (2025)[11]
- Bertin, C., Carroll, D., Menemenlis, D., Dutkiewicz, S., Zhang, H., Schwab, M., Savelli, R., Matsuoka, A., Manizza, M., Miller, C. E., Bowring, S., Guenet, B., & Le Fouest, V. "Paving the way for improved representation of coupled physical and biogeochemical processes in Arctic River Plumes-A case study of the Mackenzie shelf", Permafrost and Periglacial Processes, 0, 1–15. (2025)[12]
- Choi, J. G., Matsuoka, A., Manizza, M., Dutkiewicz, S., & Lippmann, T. "A New Ecosystem Model for Arctic Phytoplankton Phenology From Ice ‐ Covered to Open ‐ Water Periods: Implications for Future Sea Ice Retreat Scenarios", Geophysical Research Letters, (2024)[13]
- Zhao, H., Matsuoka, A., Manizza, M., & Winter, A. "DINEOF Interpolation of Global Ocean Color Data: Error Analysis and Masking", Journal of Atmospheric and Oceanic Technology, 953-968. (2024)[14]
- Madani, N., Parazoo, N. C., Manizza, M., Chatterjee, A., Carroll, D., Menemenlis, D., Fouest, V. Le, Matsuoka, A., Luis, K. M., Pompei, C. S., & Miller, C. E. "A Machine Learning Approach to Produce a Continuous Solar ‐ Induced Chlorophyll Fluorescence Over the Arctic Ocean", JGR: Machine Learning and Computation. Journal of Geophysical Research: Machine Learning and Computation, 1, e2024JH000215. (2024)[15]
- Li, J., Matsuoka, A., Pang, X., Massicotte, P., & Babin, M. "Performance of Algorithms for Retrieving Chlorophyll Concentrations in the Arctic Ocean: Impact on Primary Production Estimates", Remote Sens. 16, 892. (2024)[16]
- Li, J., Matsuoka, A., Hooker, S. B., Maritorena, S., Pang, X., & Babin, M. "A tuned ocean color algorithm for the Arctic Ocean: a solution for waters with high CDM content", Optics Express, 31(23), 38494-38512. (2023)[17]
- Bertin, C., Carroll, D., Menemenlis, D., Dutkiewicz, S., Zhang, H., Matsuoka, A., Tank, S., Manizza, M., Miller, C. E., Babin, M., Mangin, A., & Le Fouest, V. "Biogeochemical River Runoff Drives Intense Coastal Arctic Ocean CO 2 Outgassing", Geophysical Research Letters, 50(8), 1-11. (2023)[18]
- Matsuoka, A., Babin, M., & Vonk, J. E. "Decadal trends in the release of terrigenous organic carbon to the Mackenzie Delta (Canadian Arctic) using satellite ocean color data (1998-2019)", Remote Sensing of Environment, 283(September), 113322. (2022)[19]
- Asim, M., Matsuoka, A., Ellingsen, P. G., Brekke, C., Eltoft, T., & Blix, K. "A new spectral harmonization algorithm for Landsat-8 and Sentinel-2 remote sensing reflectance products using machine learning: a case study for the Barents Sea (European Arctic)", IEEE Transactions on Geoscience and Remote Sensing, 1-20. (2022)[20]
- Zhao, H., Matsuoka, A., Manizza, M., & Winter, A. "Recent Changes of Phytoplankton Bloom Phenology in the Northern High-Latitude Oceans (2003-2020)", Journal of Geophysical Research: Oceans. 1-18. (2022)[21]
- Juhls, B., Matsuoka, A., Lizotte, M., Bécu, G., Overduin, P. P., El Kassar, J., Devred, E., Doxaran, D., Ferland, J., Forget, M. H., Hilborn, A., Hieronymi, M., Leymarie, E., Maury, J., Oziel, L., Tisserand, L., Anikina, D. O. J., Dillon, M., & Babin, M. "Seasonal dynamics of dissolved organic matter in the Mackenzie Delta, Canadian Arctic waters: Implications for ocean colour remote sensing", Remote Sensing of Environment, 283(April). (2022)[22]
- Bertin, C., Matsuoka, A., Mangin, A. Babin, A., and Le Fouest V. "Merging satellite and in situ data to assess the flux of terrestrial dissolved organic carbon from the Mackenzie River to the coastal Beaufort Sea", Frontiers in Earth Science. (2022)[23]
- Matsuoka, A., Campbell, J. W., Hooker, S. B., Steinmetz, F., Ogata, K., Hirata, T., Higa, H., Kuwahara, V. S., Isada, T., Suzuki, K., Hirawake, T., Ishizaka, J., and Murakami, H. "Performance of JAXA's SGLI standard ocean color products for oceanic to coastal waters: chlorophyll a concentration and light absorption coefficients of colored dissolved organic matter", Journal of Oceanography. (2021)[24]
- Bruhn, A. D., Stedmon, C. A., Comte, J., Matsuoka, A., Speetjens, N. J., Tanski, G., Vonk, J. E., & Sjöstedt, J. "Terrestrial Dissolved Organic Matter Mobilized From Eroding Permafrost Controls Microbial Community Composition and Growth in Arctic Coastal Zones", Frontiers in Earth Science, 9(March), 1-20. (2021)[25]
- Hooker, S. B., Matsuoka, A., Kudela, R. M., Yamashita, Y., Suzuki, K., & Houskeeper, H. F. "A global end-member approach to derive aCDOM(440) from near-surface optical measurements", Biogeosciences, 17(2), 475-497. (2020)[26]
- Blix, K., Li, J., Massicotte, P., & Matsuoka, A. "Developing a new machine-learning algorithm for estimating Chlorophyll-a concentration in optically complex waters: A case study for high northern latitude waters by using Sentinel 3 OLCI", Remote Sensing, 11(18), 1-23. (2019)[27]
- Juhls, B., Paul Overduin, P., Hölemann, J., Hieronymi, M., Matsuoka, A., Heim, B., & Fischer, J. "Dissolved organic matter at the fluvial-marine transition in the Laptev Sea using in situ data and ocean colour remote sensing", Biogeosciences, 16(13), 2693-2713. (2019)[28]
- Le Fouest, V., Matsuoka, A., Manizza, M., Shernetsky, M., Tremblay, B., & Babin, M. "Towards an assessment of riverine dissolved organic carbon in surface waters of the western Arctic Ocean based on remote sensing and biogeochemical modeling", Biogeosciences, 15(5), 1335-1346. (2018)[29]
- Matsuoka, A., Boss, E., Babin, M., Karp-Boss, L., Hafez, M., Chekalyuk, A., Proctor, C. W., Werdell, P. J., & Bricaud, A. "Pan-Arctic optical characteristics of colored dissolved organic matter: Tracing dissolved organic carbon in changing Arctic waters using satellite ocean color data", Remote Sensing of Environment, 200(July), 89-101. (2017)[30]
- Matsuoka, A., Babin, M., & Devred, E. C. "A new algorithm for discriminating water sources from space: A case study for the southern Beaufort Sea using MODIS ocean color and SMOS salinity data", Remote Sensing of Environment, 184, 124-138. (2016)[31]
- Arrigo, K. R., Perovich, D. K., Pickart, R. S., Brown, Z. W., Van Dijken, G. L., Lowry, K. E., Mills, M. M., Palmer, M. A., Balch, W. M., Bahr, F., Bates, N. R., Benitez-Nelson, C., Bowler, B., Brownlee, E., Ehn, J. K., Frey, K. E., Garley, R., Laney, S. R., Lubelczyk, L., Mathis, J., Matsuoka, A., Mitchell, B. G., Moore, G. W. K., Ortega-Retuerta, E., Pal, S., Polashenski, C. M., Reynolds, R. A., Schieber, B., Sosik, H. M., Stephens, M., and Swift, J. H. "Massive phytoplankton blooms under arctic sea ice", Science, 336(6087), 1408. (2012)[32]
出典
- 1 2 https://www.kcg.edu/faculty/professor/a-matsuoka
- ↑ https://cir.nii.ac.jp/crid/1920865335035937280
- ↑ https://www.rssj.or.jp/act/conference/%E7%AC%AC73%E5%9B%9E%EF%BC%88%E4%BB%A4%E5%92%8C4%E5%B9%B4%E5%BA%A6%E7%A7%8B%E5%AD%A3%EF%BC%89%E5%AD%A6%E8%A1%93%E8%AC%9B%E6%BC%94%E4%BC%9A/
- ↑ https://www.jamstec.go.jp/iace/j/seminar/2017.html
- ↑ 論文表彰 JOMOCA - 日本海洋学会
- ↑ https://www.us-ocb.org/pre-arctic-colors-data-synthesis-virtual-community-meeting/
- ↑ https://www.us-ocb.org/pre-arctic-colors-data-synthesis-virtual-community-meeting/
- ↑ https://iocs.ioccg.org/wp-content/uploads/2019-conference-materials/thu-1445-matsuoka-keynote6-web.pdf.
- ↑ https://epic.awi.de/id/eprint/50800/1/ICRSS_2018_Proceedings.pdf
- ↑ https://doi.org/10.5194/egusphere-2025-973.
- ↑ https://doi.org/10.1016/j.rse.2025.114667.
- ↑ https://doi.org/10.1002/ppp.2271.
- ↑ https://doi.org/10.1029/2024GL110155.
- ↑ https://doi.org/10.1175/jtech-d-23-0105.1.
- ↑ https://doi.org/10.1029/2024JH000215.
- ↑ https://doi.org/10.3390/rs16050892.
- ↑ https://doi.org/10.1364/OE.500340.
- ↑ https://doi.org/10.1029/2022GL102377.
- ↑ https://doi.org/10.1016/j.rse.2022.113322.
- ↑ https://doi.org/10.1109/TGRS.2022.3228393.
- ↑ https://doi.org/10.1029/2021JC018346.
- ↑ https://doi.org/10.1016/j.rse.2022.113327.
- ↑ https://doi.org/10.3389/feart.2022.694062.
- ↑ https://doi.org/10.1007/s10872-021-00617-2.
- ↑ https://doi.org/10.3389/feart.2021.640580.
- ↑ https://doi.org/10.5194/bg-17-475-2020.
- ↑ https://doi.org/10.3390/rs11182076.
- ↑ https://doi.org/10.5194/bg-16-2693-2019.
- ↑ https://doi.org/10.5194/bg-15-1335-2018.
- ↑ https://doi.org/10.1016/j.rse.2017.08.009.
- ↑ https://doi.org/10.1016/j.rse.2016.05.006.
- ↑ https://doi.org/10.1126/science.1215065.
外部リンク
この項目は、学者に関連した書きかけの項目です。この項目を加筆・訂正などしてくださる協力者を求めています(PJ:人物伝/P:教育)。 |