研究論文・著書

査読あり論文

1. 佐藤暢・谷口英嗣・高橋直樹・Mia Mohammad Mohiuddin・平野直人・小川勇二郎,1999,嶺岡オフィオライトの起源.地学雑誌(東京地学協会),108巻3号,203-215頁.

2. SATO, H. and OGAWA, Y., 2000, Sulfide minerals as an indicator for petrogenesis and serpentinization pf peridotites: An example from the Hayama-Mineoka Belt, central Japan. In Dilek, Y., Moores, E., Elton, D. and Nicolas, A. (eds) Ophiolites and oceanic crust: New insights from field studies and ocean drilling program, Geological Society of America, Special Paper, 349, 427-437.

3. 石井輝秋・佐藤暢・町田嗣樹・原口悟・臼井朗・石塚治・谷口英嗣・八木和徳,2000,紀南海山列と伊豆−小笠原背弧雁行海山列の地質学的・岩石学的研究.地質調査所月報,51巻12号,615-630頁.

4. 石井輝秋・佐藤暢・原口悟・Patricia FRYER・藤岡換太郎・Sherman BLOOMER,2000,伊豆−小笠原−マリアナ前弧域の蛇紋岩海山産カンラン岩の岩石学的研究.地学雑誌(東京地学協会),109巻4号,517-530頁.

5. SATO, H., MACHIDA, S., KANAYAMA, S., TANIGUCHI, H., and ISHII, T., 2002, Geochemical and isotopic characteristics of the Kinan Seamount Chain. Geochemical Journal, 36, 519-526.

6. HIRANO, N., OGAWA, Y., SAITO, K., YOSHIDA, T., __SATO, H.__, and TANIGUCHI, H., 2003, Multi-stage evolution of the Tertiary Mineoka ophiolite, Japan: new geochemical and age constraints. In Dilek, Y. and Robinson, P.T. (eds) Ophiolites in Earth History, The Geological Society of London, Special Pubs., 218, 279-298.

7. 木戸ゆかり・藤岡換太郎・町田嗣樹・佐藤暢・黒木崇文・渋谷秀敏・坂口真澄・殿谷梓・石塚英男,2003,四国蛇紋岩体調査.JAMSTEC深海研究,第22号,

8. ARAI, T., SATO, H., ISHII, T., and TSUKAMOTO, K., 2003, Alkaline earth metal and Mn distribution in otoliths of Anguilla spp. glass eels and elvers. Fisheries Science, 69, 412-423.

9. SATO, H., 2004, Mineral compositions of MORB from the Australia-Antarctic Discordance (AAD): Implications for mantle source characteristics. In Christie, D.M., Pedersen, R.B., Miller, D.J., et al., Proc. ODP, Scientific Results, 187, College Station TX (Ocean Drilling Program), 1-26 [Online]. Available from World Wide Web: http://www-odp.tamu.edu/publications/187_SR/VOLUME/CHAPTERS/202.PDF

10. INGLE, S., MAHONEY, J. J., SATO, H., COFFIN, M. F., KIMURA, J.-I., HIRANO, N. and NAKANISHI, M., 2007, Depleted mantle wedge and sediment fingerprint in unusual basalts from the Manihiki Plateau, Central Pacific Ocean. Geology, 35, 7, 595-598.

11. 佐藤暢・熊谷英憲・根尾夏紀・中村謙太郎,2008,中央海嶺玄武岩の化学組成の多様性とその成因.地学雑誌,117, 1, 124-145.

12. INGLE, S., MAHONEY, J. J., SATO, H., COFFIN, M. F., KIMURA, J.-I., HIRANO, N. and NAKANISHI, M., 2007, Depleted mantle wedge and sediment fingerprint in unusual basalts from the Manihiki Plateau, Central Pacific Ocean: Reply. Geology, online forum, doi: 10.1130/G24882Y.1.

13. SATO, H. and ISHII, T., 2011, Petrology and mineralogy of mantle peridotites from the southern Marianas. In Ogawa, Y. et al. (eds.) Accretionary Prisms and Convergent Margin Tectonics in the Northwest Pacific Basin, Modern Approaches in Solid Earth Sciences 8, doi:10.1007/978-90-481-8885-7_6 (Springer Science+Business Media).[http://www.springerlink.com/content/p4w266m7380q3264/]

14. 名内理恵・森下知晃・田村明弘・荒井章司・佐藤暢・市山祐司, 2011, 海洋底から採取された火山ガラスの主要・微量元素組成:深海底岩石試料データベース(GANSEKI)の利用. 地質学雑誌、117, 10, 591-596.

15. Miyoshi, Y., Ishibashi, J.-I., Faure, K., Maeto, K., Matsukura, S., Omura, A., Shimada, K., Sato, H., Sakamoto, T., Uehara, S., Chiba, H., Yamanaka, T., 2013, Mg-rich clay mineral formation associated with marine shallow-water hydrothermal activity in an arc volcanic caldera setting.Chemical Geology, 355 (26 September 2013), 28–44. [http://www.sciencedirect.com/science/article/pii/S0009254113002507]

16. Sato, T., Okino, K., Sato, H., Mizuno, M., Hanyu, T., Seama, N., 2013, Magmatic activities on the Southwest Indian Ridge between 35°E and 40°E, the closest segment to the Marion hotspot. Geochemistry, Geophysics, Geosystems, 14, DOI: 10.1002/2013GC004814

17. Sato, H., Nakamura, K., Kumagai, H., Senda, R., Morishita, T., Tamura, A., Arai, S., 2015, Petrology and geochemistry of mid-ocean ridge basalts from the southern Central Indian Ridge. in Ishibashi, J., Okino, K., Sunamura, M. (Eds.), Subseafloor Biosphere Linked to Global Hydrothermal Systems; TAIGA Concept. Springer Japan, Tokyo. [http://link.springer.com/chapter/10.1007/978-4-431-54865-2_13]

18. Okino, K., Nakamura, K., Sato, H., 2015, Tectonic background of four hydrothermal fields along the Central Indian Ridge. in Ishibashi, J., Okino, K., Sunamura, M. (Eds.), Subseafloor Biosphere Linked to Global Hydrothermal Systems; TAIGA Concept. Springer Japan, Tokyo. [http://link.springer.com/chapter/10.1007/978-4-431-54865-2_11]

19. Nakamura, K, Sato, H., Fryer, P., Urabe, T., TAIGA10M Shipboard Scientific Party, 2015, Petrography and geochemistry of basement rocks drilled from Snail, Yamanaka, Archean, and Pika hydrothermal vent sites at the Southern Mariana Trough by Benthic Multi-coring System (BMS). in Ishibashi, J., Okino, K., Sunamura, M. (Eds.), Subseafloor Biosphere Linked to Global Hydrothermal Systems; TAIGA Concept. Springer Japan, Tokyo. [http://link.springer.com/chapter/10.1007/978-4-431-54865-2_41]

20. Seama, N., Sato, H., Nogi, Y., Okino, K., 2015, Mantle to hydrothermal vent sites of the Southern Mariana Trough back-arc Basin. in Ishibashi, J., Okino, K., Sunamura, M. (Eds.), Subseafloor Biosphere Linked to Global Hydrothermal Systems; TAIGA Concept. Springer Japan, Tokyo. [http://link.springer.com/chapter/10.1007/978-4-431-54865-2_17]

21. Morishita, T., Nakamura, K., Shibuya, T., Kumagai, H., Sato, T., Okino, K., Sato, H., Nauchi, R., Hara, K., Takamaru, R., 2015, Petrology of peridotites and related gabbroic rocks around the Kairei-hydrothermal field in the Central Indian Ridge. in Ishibashi, J., Okino, K., Sunamura, M. (Eds.), Subseafloor Biosphere Linked to Global Hydrothermal Systems; TAIGA Concept. Springer Japan, Tokyo. [http://link.springer.com/chapter/10.1007/978-4-431-54865-2_14]

22. Fujii, M., Okino, K., Sato, T., Sato, H., Nakamura, K., 2016, Origin of magnetic highs at ultramafic hosted hydrothermal systems: Insights from the Yokoniwa site of Central Indian Ridge. Earth and Planetary Science Letters, 441, 26-37. [http://www.sciencedirect.com/science/article/pii/S0012821X16300292]

23. Fujii, M., Okino, K., Sato, H., Nakamura, K., Sato, T., Yamazaki, T., 2016, Variation in magnetic properties of serpentinized peridotites exposed on the Yokoniwa Rise, Central Indian Ridge: Insights into the role of magnetite in serpentinization. Geochemistry, Geophysics, Geosystems, DOI: 10.1002/2016GC006511. [http://onlinelibrary.wiley.com/doi/10.1002/2016GC006511/abstract]

24. Miyoshi, Y., Shimada, K., Sato, H., Uehara, S., Ishibashi, J., 2017, Convenient analysis of chemical composition of clay fraction of sediment by electron probe microanalyzer. Geochemical Journal, 51, 6, 583-588. [https://doi.org/10.2343/geochemj.2.0479]

25. Fujii, M., Sato, H., Togawa, E., Shimada, K. and Ishibashi, J., 2018, Seafloor hydrothermal alteration affecting magnetic properties of abyssal basaltic rocks: insights from back-arc lavas of the Okinawa Trough. Earth, Planets and Space 70,196. [https://doi.org/10.1186/s40623-018-0958-6]

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査読なし論文

1. SATO, H. and TAKIZAWA, S., 1995, Deformational texture of spinel lherzolite with plagioclase lherzolite seams in the Horoman ultramafic body, Hokkaido, Japan. Ann. Rep., Inst. Geosci., Univ. Tsukuba, 21,41-45

2. FUJIOKA, K., YAMANAKA, T., GAMO, T., INAGAKI, F., MIWA, T., and SATO, H., 2001, An introductioin to the serpentinite biosphere in the Mariana forearc -Capsule of the deep subsurface biosphere from the Chamorro Seamount-. Bull. Earthq. Res. Inst. Univ. Tokyo, 76, 417-424.

3. FUJIOKA, K., YAMANAKA, T., GAMO, T., INAGAKI, F., MIWA, T., SATO., H., OKAMOTO, T., and ODA, H., 2002, Serpentines as a capsule of the deep subsurface biosphere: Evidence from the Chamorro Seamount, Mariana forearc. JAMSTEC Deep Sea Res.,20, 9-16.

4. 佐藤暢,2003,Australian-Antarctic Discordance におけるマントル同位体岩石区境界の変遷.月刊地球,号外40,「深海掘削と新しい地球生命科学」,96-102頁.

5. 佐藤暢,2003,地球科学における深海掘削の重要性.専修大学自然科学研究所所報,第78巻,

6. 佐藤暢・町田嗣樹・石井輝秋,2003,四国海盆末期の火成作用.月刊地球,号外43,「背弧海盆・島弧・海溝系の発達過程−フィリピン海を中心に−」,8−14頁.

7. 町田嗣樹・佐藤暢・石井輝秋,2005,伊豆・小笠原弧-四国海盆系の化成活動変遷から読み解く背弧海盆拡大後のマントルダイナミクス.月刊地球,号外52,「東北日本と伊豆小笠原弧の地殻・マントル構造とマグマ」,193-201頁

8. 佐藤暢・斎藤実篤・岩井雅夫・栗田裕司・鈴木紀毅・眞砂英樹・村山達矢,2007,掘削科学における泥水検層の有効利用.月刊地球,29,147-150頁.

9. SATO, H., 2007, Petrographic, petrological, and mineralogical characteristics of basalts from the Manihiki plateau, South Pacific Ocean. Bull. Inst. Natural Sci., Senshu Univ., 38, 29-37.

10. 佐藤暢,2010, 蛍光X線分析装置による岩石試料中の主成分元素の定量分析.専修自然科学紀要,41号,15-23.

11. 佐藤暢・水上和則,2010,蛍光X線分析装置によるセラミクス試料中の主成分元素の定量分析.専修自然科学紀要,41号,25-30.

12. 佐藤暢・朝日博史,2013, 南西インド洋海嶺Prince Edward断裂帯沿いのかんらん岩礫岩に含まれていた有孔虫.専修自然科学紀要,44号,

13. 佐藤暢・秋田亮一朗,2018,熊本県御所浦島御所浦層群の堆積岩中のフランボイダルパイライト.専修自然科学紀要,49号,

14. 佐藤暢・野木義史・藤井昌和・佐藤太一,2018,南大洋の形成.低温科学(北海道大学低温研究所),第76号.243-253.

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著書

佐藤暢,2013, 地球の科学 変動する地球とその環境.142p., 北樹出版(東京)ISBN: 9784779303944

佐藤暢,2016,科学掘削における泥水検層の利用., 日本地質学会「海洋底科学の基礎」編集委員会編,海洋底科学の基礎,p. 65-66

井上幸孝・佐藤暢 編,2017,人間と自然環境の世界誌. 277p. 専修大学出版局(東京) ISBN: 9784881253090

佐藤暢,2017, 地球の科学 変動する地球とその環境(改訂版).142p., 北樹出版(東京)ISBN: 9784779305528

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