{"id":50,"date":"2015-03-26T21:25:34","date_gmt":"2015-03-26T12:25:34","guid":{"rendered":"https:\/\/www.arc.hokudai.ac.jp\/?page_id=50"},"modified":"2025-07-09T13:25:28","modified_gmt":"2025-07-09T04:25:28","slug":"publication","status":"publish","type":"page","link":"https:\/\/www.arc.hokudai.ac.jp\/en\/publication","title":{"rendered":"Research results"},"content":{"rendered":"<p>[tabs]<br \/>\n[tab title=&#8221;\u5927\u6c17\u30fb\u6c34\u570f&#8221;]<\/p>\n<ul>\n<li><span style=\"color: #3366ff;\">Yang Liu<\/span>, <span style=\"color: #3366ff;\">Sei-Ichi Saitoh<\/span>, Yu Ihara, Satoshi Nakada, Makoto Kanamori, <span style=\"color: #3366ff;\">Xun Zhang<\/span>, Katsuhisa Baba, Yoichi Ishikawa and <span style=\"color: #3366ff;\">Toru Hirawake<\/span> (2015). Development of a three-dimensional growth prediction model for the Japanese scallop in Funka Bay, Japan, using OGCM and MODIS. <em>ICES J. Mar. Sci.<\/em>, <a href=\"https:\/\/academic.oup.com\/icesjms\/article\/72\/9\/2684\/2458766\/Development-of-a-three-dimensional-growth\" target=\"_blank\" rel=\"noopener noreferrer\">doi: 10.1093\/icesjms\/fsv153<\/a><\/li>\n<li>Mahoney, A. R., H. Eicken, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, D. Simizu, C. Kambhamettu, R. MV, S. Hendricks, and J. Jones (2015). Taking a look at both sides of the ice: comparison of ice thickness and drift speed as observed from moored, airborne and shore-based instruments near Barrow, Alaska, Annals of Glaciology, 56(69), 363-372.<\/li>\n<li>Ito, M., <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, K. I. D. Simizu, K. Iwamoto, Y. Matsumura, A. R. Mahoney, and H. Eicken (2015). Observations of supercooled water and frazil ice formation in an Arctic coastal polynya form moorings and satellite imagery, Annals of Glaciology, 56(69), 307-314.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, S. Nishino, J. Inoue and T. Kikuchi (2015). Short-term changes in the mesozooplankton community and copepod gut pigment in the Chukchi Sea in autumn: reflections of a strongwind event. Biogeosciences 12: 4005\u20134015.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, <span style=\"color: #3366ff;\">T. Hirawake<\/span>, S. Nishino, J. Inoue and T. Kikuchi (2015). Reproductive success of Pacific copepods in the Arctic Ocean and the possibility of changes in the Arctic ecosystem. Polar Biology 38: 1075-1079.<\/li>\n<li>Itoh, M., R. S. Pickart, T. Kikuchi, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, D. Simizu, K. R. Arrigo, S. Vagle, J. Heg, C. Ashjian, J. T. Mathis, S. Nishino, and C. Nobre (2015). Water properties, heat and volume fluxes of Pacific water in Barrow Canyon during summer 2010, Deep-Sea Research I, 102, 43-54.<\/li>\n<li>Tsuda, A., H Saito, H Kasai, <span style=\"color: #3366ff;\">J Nishioka<\/span>, T Nakatsuka (2015). Vertical segregation and population structure of ontogenetically migrating copepods Neocalanus cristatus, N. flemingeri, N. plumchrus, and Eucalanus bungii during the ice-free season in the Sea of Okhotsk, J. Oceanogr., 71, 271-285.<\/li>\n<li>Nishino, S., Y. Kawaguchi, J. Inoue, <span style=\"color: #3366ff;\">T. Hirawake<\/span>, A. Fujiwara, R. Futsuki, J. Onodera, M. Aoyama (2015). Nutrient supply and biological response to wind-induced mixing, inertial motion, and currents in the northern Chukchi Sea. Journal of Geophysical Research: Oceans, 120, 1975-1992, doi:10.1002\/2014JC010407.<\/li>\n<li>Yoon, S., E. Watanabe, <span style=\"color: #3366ff;\">H. Ueno<\/span> and M. J. Kishi (2015). Potential habitat for chum salmon (Oncorhynchus keta) in the Western\u00a0Arctic based on a bioenergetics model coupled with a three-dimensional lower trophic ecosystem model, Prog. Oceanogr., 131,\u00a0146-158, doi:10.1016\/j.pocean.2014.12.009.<\/li>\n<li>Tanaka T., I. Yasuda, H. Onishi, <span style=\"color: #3366ff;\">H. Ueno<\/span>, and M. Masujima (2015). Observations of current and mixing around the shelf break in\u00a0Pribilof Canyon in the Bering Sea, J. Oceanogra., 71, 1-17, doi:10.1007\/s10872-014-0256-2.<\/li>\n<li>Miller, L. A., F. Fripiat, B. GT. Else, J. S. Bowman, K. A. Brown, R E. Collins, M. Ewert, A. Fransson, M. Gosselin, D. Lannuzel, K. M. Meiners, C. Michel, <span style=\"color: #3366ff;\">J. Nishioka<\/span>, <span style=\"color: #3366ff;\">D. Nomura<\/span>, S. Papadimitriou, L. M Russell, L. L. S\u00f8rensen, D. N. Thomas, J.-L. Tison, M. A. van Leeuwe, M. Vancoppenolle, E. W. Wolff, J. Zhou (2015). Methods for biogeochemical studies of sea ice: The state of the art, caveats, and recommendations, Elementa: Science of the Anthropocene, 1-53, DOI 10.12952\/journal.elementa.000038.<\/li>\n<li>Sato, K., K. Matsuno, D. Arima, Y. Abe and <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> (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.<\/li>\n<li><span style=\"color: #3366ff;\">Yamaguchi, A<\/span>., K. Matsuno and T. Homma (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.<\/li>\n<li>Sugimoto, S., <span style=\"color: #3366ff;\">T. Sato<\/span>, and T. Sasaki (2015). Impact of land-use change on winter precipitation in Hokkaido, Japan SOLA, 11, 95-99, doi:10.2151\/sola.2015-023.<\/li>\n<li>Sugimoto, S., <span style=\"color: #3366ff;\">T. Sato<\/span>, and T. Sasaki (2015). Seasonal and diurnal variability in historical warming due to the urbanization of Hokkaido, Japan. J. Geophys. Res.: Atmos., 120, doi:10.1002\/2014JD022759.<\/li>\n<li>Matsumura, S., K. Yamazaki, and <span style=\"color: #3366ff;\">T. Sato<\/span> (2015). Role of Siberian Land-Atmosphere Coupling in the Development of the August Okhotsk High in 2008 J. Meteor. Soc. Japan, 93, 229-244.<\/li>\n<li><span style=\"color: #3366ff;\">Yamaguchi, A<\/span>., K. Matsuno, Y. Abe, D. Arima and K. Ohgi (2014). Seasonal changes in zooplankton abundance, biomass, size structure and dominant copepods in the Oyashio region analysed by an optical plankton counter. Deep-Sea Research I 91: 115-124.<\/li>\n<li>Saito, R., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, I. Yasuda, <span style=\"color: #3366ff;\">H. Ueno<\/span>, H. Ishiyama, H. Onishi and I. Imai (2014). Influences of mesoscale anticyclonic eddies on the zooplankton community south of the western Aleutian Islands during the summer of 2010. Journal of Plankton Research 36: 117-128.<\/li>\n<li>Matsuno, K., M. Ichinomiya, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, I. Imai and T. Kikuchi (2014). Horizontal distribution of microprotist community structure in the western Arctic Ocean during late summer and early fall of 2010. Polar Biology 37: 1185-1195.<\/li>\n<li>Simizu, D., <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, J. Ono, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, and G. Mizuta (2014). What drives the southward drift of sea ice in the Sea of Okhotsk?, Progress in Oceanography, 126, 33-43.<\/li>\n<li>Itoh, S., I. Yasuda, <span style=\"color: #3366ff;\">H. Ueno<\/span>, T. Suga and S. Kakehi (2014). Regeneration of a warm anticyclonic ring by cold water masses within\u00a0the western subarctic gyre of the North Pacific, J. Oceanogra., 70, 211-223, doi:10.1007\/s10872-014-0225-9.<\/li>\n<li>Watanabe, E., J. Onodera, N. Harada, M.C. Honda, K. Kimoto, T. Kikuchi, S. Nishino, K. Matsuno, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, A. Ishida and M.J. Kishi (2014). Enhanced role of eddies in the Arctic marine biological pump. Nature Communications 5: 3950. doi:10.1038\/ncomms4950.<\/li>\n<li>Arima, D., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, Y. Abe, K. Matsuno, R. Saito, H. Asami, H. Shimada and I. Imai (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: 364-375.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, A. Fujiwara, J. Onodera, E. Watanabe, I. Imai, S. Chiba, N. Harada and T. Kikuchi (2014). Seasonal changes in mesozooplankton swimmers collected by sediment trap moored at a single station on the Northwind Abyssal Plain in the western Arctic Ocean. Journal of Plankton Research 36: 490-502.<\/li>\n<li>Fujiwara, A., <span style=\"color: #3366ff;\">T. Hirawake<\/span>, K. Suzuki, I. Imai, <span style=\"color: #3366ff;\">S-I. Saitoh<\/span> (2014). Timing of sea ice retreat can alter phytoplankton community structure in the western Arctic Ocean. Biogeosciences, 11, 1705-1716.<\/li>\n<li>\u98ef\u5cf6\u6148\u88d5, <span style=\"color: #3366ff;\">\u4f50\u85e4\u53cb\u5fb3<\/span>\u3000\u7de8 (2014). \u300c\u5317\u534a\u7403\u5bd2\u51b7\u570f\u9678\u57df\u306e\u6c17\u5019\u30fb\u74b0\u5883\u5909\u52d5\u300d\u3000\u6c17\u8c61\u7814\u7a76\u30ce\u30fc\u30c8\u7b2c230\u53f7, 219pp, \u65e5\u672c\u6c17\u8c61\u5b66\u4f1a.<\/li>\n<li>Mori, K., and <span style=\"color: #3366ff;\">T. Sato<\/span> (2014). Spatio-temporal variation of high-temperature events in Hokkaido, North Japan. J. Meteor. Soc. Japan, 92, 327-346, DOI:10.2151\/jmsj.2014-404.<\/li>\n<li>Tanaka, A.,<span style=\"color: #3366ff;\"> T. Sato<\/span>, M. Nemoto, Y. Yamanaka (2014). Sensitivity of cool summer-induced sterility of rice to increased growing-season temperatures: A case study in Hokkaido, Japan J. Agr. Meteorol., 70, 25-40.<\/li>\n<li>Abe, Y., M. Natsuike, K. Matsuno, T. Terui, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and I. Imai (2013). Variation in assimilation efficiencies of dominant Neocalanus and Eucalanus copepods in the subarctic Pacific: Consequences for population structure models. Journal of Experimental Marine Biology and Ecology 449: 321-329.<\/li>\n<li>Ohashi, R., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, K. Matsuno, R. Saito, N. Yamada, A. Iijima, N. Shiga and I. Imai (2013). Interannual changes in the zooplankton community structure on the southeastern Bering Sea shelf during summers of 1994\u20132009. Deep-Sea Research II 94: 44-56.<\/li>\n<li>Tsukazaki, C., K.-I. Ishii, R. Saito, K. Matsuno, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and I. Imai (2013). Distribution of viable diatom resting stage cells in bottom sediments of the eastern Bering Sea shelf. Deep-Sea Research II 94: 22-30.<\/li>\n<li><span style=\"color: #3366ff;\">Yamaguchi, A<\/span>., T. Homma, R. Saito, K. Matsuno, <span style=\"color: #3366ff;\">H. Ueno<\/span>, <span style=\"color: #3366ff;\">T. Hirawake<\/span> and I. Imai (2013). East-west differences in population structure and vertical distribution of copepods along 47\u00b0N in the subarctic Pacific in June 2009. Plankton and Benthos Research 8: 116-123.<\/li>\n<li>Natsuike M., S. Nagai, K. Matsuno, R. Saito, C. Tsukazaki, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and I. Imai (2013). Abundance and distribution of toxic Alexandrium tamarense resting cysts in the sediments of the Chukchi Sea and the eastern Bering Sea. Harmful Algae 27: 52\u201359.<\/li>\n<li>Chikugo, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, K. Matsuno, R. Saito and I. Imai (2013). Life history and production of pelagic mysids and decapods in the Oyashio region, Japan. Crustaceana 86: 449-474.<\/li>\n<li><span style=\"color: #3366ff;\">Ueno, H<\/span>. (2013). Decadal variation of temperature inversions along Line P, J. Oceanogra., 69, 277-283, doi:10.1007\/s10872-013-0172-x.<\/li>\n<li>Uchida, R., K. Kuma, A. Omata, S. Ishikawa, N. Hioki, <span style=\"color: #3366ff;\">H. Ueno<\/span>, Y. Isoda, K. Sakaoka, Y. Kamei, and S. Takagi (2013). Water\u00a0Column Iron Dynamics in the Subarctic North Pacific Ocean and the Bering Sea, J. Geophys. Res. Oceans, 118,\u00a0doi:10.1002\/jgrc.20097.<\/li>\n<li><span style=\"color: #3366ff;\">Sato, T<\/span>., and S. Sugimoto (2013). A numerical experiment on the influence of the interannual variation of sea surface temperature on terrestrial precipitation in northern Japan during the cold season. Water Resour. Res., 49, 7763-7777, doi:10.1002\/2012WR013206.<\/li>\n<li>\u4e2d\u6751\u4e00\u6a39, <span style=\"color: #3366ff;\">\u4f50\u85e4\u53cb\u5fb3<\/span> (2013). \u30b9\u30ad\u30fc\u5834\u3067\u751f\u3058\u305f\u7b39\u306e\u5012\u4f0f\u306b\u3088\u308b\u30af\u30e9\u30c3\u30af\u53ca\u3073\u5168\u5c64\u96ea\u5d29. -\u7b39\u306e\u5012\u4f0f\u3092\u3082\u305f\u3089\u3059\u7a4d\u96ea\u521d\u671f\u306e\u6c17\u8c61\u6761\u4ef6-. \u5bd2\u5730\u6280\u8853\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0\u8ad6\u6587\u96c6, 29, 10-15.<\/li>\n<li>Terui, T., M. J. Kishi, and <span style=\"color: #3366ff;\">H. Ueno<\/span> (2012). Lagrangian ensemble model of Copepoda (Neocalanus cristatus) in the northwestern\u00a0subarctic Pacific, J. Oceanogra., 68, 727-741.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and I. Imai (2012). Biomass size spectra of mesozooplankton in the Chukchi Sea during the summers of 1991\/1992 and 2007\/2008: an analysis using optical plankton counter data. ICES Journal of Marine Science 69: 1205-1217.<\/li>\n<li><span style=\"color: #3366ff;\">Hirawake, T<\/span>., K. Shinmyo, A. Fujiwara, <span style=\"color: #3366ff;\">S. Saitoh<\/span> (2012). Satellite remote sensing of primary productivity in the Bering and Chukchi Seas using an absorption-based approach. ICES Journal of Marine Science, 69, 1194-1204.<\/li>\n<li><span style=\"color: #3366ff;\">Ueno, H<\/span>., I. Yasuda, S. Itoh, H. Onishi, Y. Hiroe, T. Suga, and E. Oka (2012). Modification of a Kenai Eddy along the Alaskan\u00a0Stream, J. Geophys. Res., 117, C08032, doi:10.1029\/2011JC007506.<\/li>\n<li>Abe, Y., K.-i. Ishii, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and I. Imai (2012). Short-term changes in population structure and vertical distribution of mesopelagic copepods during the spring phytoplankton bloom in the Oyashio region. Deep-Sea Research I 65: 100-112.<\/li>\n<li>Shimada, H., M. Sawada, I. Tanaka, H. Asami, and <span style=\"color: #3366ff;\">Y. Fukamachi<\/span> (2012). A method for predicting the occurrence of paralytic shellfish poisoning along the coast of Hokkaido in the Okhotsk Sea in summer, Fisheries Science, 78, 865-877.<\/li>\n<li>Stabeno, P. J., N. B. Kachel, S. E. Moore, J. M. Napp, M. Sigler, <span style=\"color: #3366ff;\">A. Yamaguchi<\/span> and A. N. Zerbini (2012). Comparison of warm and cold years on the southeastern Bering Sea shelf and some implications for the ecosystem. Deep-Sea Research II 65-70: 31-45.<\/li>\n<li>Lepparanta, M., A. Oikkonen, K. Shirasawa, and <span style=\"color: #3366ff;\">Y. Fukamachi<\/span> (2012). A treatise on frequency spectrum of drift ice velocity, Cold Regions Science and Technology, 76-77, 83-91.<\/li>\n<li>Fukuda, J., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, K. Matsuno and I. Imai (2012). Interannual and latitudinal changes in zooplankton abundance, biomass and size composition along a central North Pacific transect during summer: analyses with an Optical Plankton Counter. Plankton and Benthos Research 7: 64-74.<\/li>\n<li>Ikenoue, T., <span style=\"color: #3366ff;\">H. Ueno<\/span>, and K. Takahashi (2012). Rhizoplegma boreale (Radiolaria): A tracer for mesoscale eddies from coastal\u00a0areas, J. Geophys. Res., 117, C04001, doi:10.1029\/2011JC007728.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, K. Shimada and I Imai (2012). Horizontal distribution of calanoid copepods in the western Arctic Ocean during the summer of 2008. Polar Science 6: 105-119.<\/li>\n<li>Petrich, C., H. Eicken, J. Zhang, J. Krieger, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, and <span style=\"color: #3366ff;\">K. I. Ohshima<\/span> (2012). Coastal landfast sea ice and break-up in northern Alaska: Key processes and seasonal prediction, Journal of Geophysical Research, 117, C02003, doi:10.1029\/2011JC007339.<\/li>\n<li>Nakayama, Y., <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, and <span style=\"color: #3366ff;\">Y. Fukamachi<\/span> (2012). Enhancement of sea-ice drift due to the dynamical interaction between sea ice and a coastal ocean, Journal of Physical Oceanography, 42, 179-192.<\/li>\n<li>Saito, R., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, <span style=\"color: #3366ff;\">S.-i. Saitoh<\/span>, K. Kuma and I. Imai (2012). Abundance, biomass and body size of the hydromedusa Aglantha digitale in the western and eastern subarctic Pacific during the summers of 2003-2006. Plankton and Benthos Research 7: 96-99.<\/li>\n<li>Matsuno, K., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, <span style=\"color: #3366ff;\">T. Hirawake<\/span> and I. Imai (2011). Year-to-year changes of the mesozooplankton community in the Chukchi Sea during summers of 1991, 1992 and 2007, 2008. Polar Biology 34: 1349-1360.<\/li>\n<li>\u5927\u6a4b\u7406\u6075\u30fb\u77f3\u4e95\u5065\u4e00\u90ce\u30fb\u85e4\u6728\u5fb9\u4e00\u30fb\u559c\u591a\u6751\u7a14\u30fb\u677e\u672c\u548c\u5f66\u30fb\u672c\u591a\u7267\u751f\u30fb<span style=\"color: #3366ff;\">\u5c71\u53e3\u3000\u7be4<\/span> (2011). \u30bb\u30b8\u30e1\u30f3\u30c8\u30c8\u30e9\u30c3\u30d7\u306b\u3088\u308a\u63a1\u96c6\u3055\u308c\u305f\u521d\u590f\u306e\u897f\u90e8\u5317\u592a\u5e73\u6d0b\u4e9c\u5bd2\u5e2f\u57df\u306b\u304a\u3051\u308b\u30d7\u30e9\u30f3\u30af\u30c8\u30f3\u7fa4\u96c6\u306e\u77ed\u671f\u6642\u7cfb\u5217\u5909\u52d5. \u65e5\u672c\u30d7\u30e9\u30f3\u30af\u30c8\u30f3\u5b66\u4f1a\u5831 58: 123-135.<\/li>\n<li>Sato, K.-i., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, <span style=\"color: #3366ff;\">H. Ueno<\/span> and T. Ikeda (2011). Vertical segregation within four grazing copepods in the Oyashio region during early spring. Journal of Plankton Research 33: 1230-1238.<\/li>\n<li>Nishino, S., T. Kikuchi, M. Yamamoto-Kawai, Y. Kawaguchi, <span style=\"color: #3366ff;\">T. Hirawake<\/span>, M. Itoh (2011). Enhancement\/reduction of biological pump depends on ocean circulation in the sea-ice reduction regions of the Arctic Ocean. Journal of Oceanography, 67, 305-314.<\/li>\n<li>Nihashi, S., N. Ebuchi, <span style=\"color: #3366ff;\">Y. Fukamachi<\/span>, and S. Takahashi (2011). Characteristics of sea ice in the Okhotsk coastal polynyas revealed from satellites, ice-profiling sonar, and digital camera observations, Annals of Glaciology, 52(57), 133-139.<\/li>\n<li><span style=\"color: #3366ff;\">Fukamachi, Y<\/span>., <span style=\"color: #3366ff;\">K. I. Ohshima<\/span>, Y. Mukai, G. Mizuta, and M. Wakatsuchi (2011). Sea-ice drift characteristics revealed by measurement of acoustic Doppler current profiler and ice-profiling sonar off Hokkaido in the Sea of Okhotsk, Annals of Glaciology, 52(57), 1-8.<\/li>\n<li>Fujiwara, A., <span style=\"color: #3366ff;\">T. Hirawake<\/span>, K. Suzuki, <span style=\"color: #3366ff;\">S-I. Saitoh<\/span> (2011). Remote sensing of size structure of phytoplankton communities using optical properties of the Chukchi and Bering Sea shelf region. Biogeosciences, 8, 3567-3580.<\/li>\n<li>Saito, R., <span style=\"color: #3366ff;\">A. Yamaguchi<\/span>, <span style=\"color: #3366ff;\">S.-I. Saitoh<\/span>, K. Kuma and I. Imai (2011). East-west comparison of the zooplankton community in the subarctic Pacific during summers of 2003-2006. Journal of Plankton Research 33: 145-160.<\/li>\n<li>Matsumura, S., and <span style=\"color: #3366ff;\">T. Sato<\/span> (2011). Snow\/Ice and Cloud Responses to Future Climate Change around Hokkaido. SOLA, 7, 205-208.<\/li>\n<li>\u4e2d\u6751\u4e00\u6a39, <span style=\"color: #3366ff;\">\u4f50\u85e4\u53cb\u5fb3<\/span>, \u5c71\u4e2d\u5eb7\u88d5, \u897f\u6751\u6d69\u4e00 (2011). \u6c17\u5019\u5909\u52d5\u306b\u4f34\u3046\u5317\u6d77\u9053\u306e\u96ea\u8cea\u5909\u5316\u63a8\u5b9a\u624b\u6cd5\u306e\u958b\u767a (Development of method for estimation of changes in snow structure with climate change in Hokkaido). \u5bd2\u5730\u6280\u8853\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0\u8ad6\u6587\u96c6, 27, 80-85.<\/li>\n<li>Batbold, A.,<span style=\"color: #3366ff;\"> T. Sato<\/span>, M. Ishikawa, and J. Tsogt (2011). Performance of dynamic downscaling for extreme weather event in eastern Mongolia: Case study of severe windstorm in 26 May 2008, SOLA, 7, 117-120, doi:10.2151\/sola.2011-030.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u9678\u570f&#8221;]<\/p>\n<ul>\n<li>Kushida, K., Hobara, S., <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Kim, Y., Watanabe, M., Setiawan, Y., Harada, K., Shaver, G.R. &amp; Fukuda, M (2015). Spectral indices for remote sensing of phytomass, deciduous shrubs, and productivity in Alaskan arctic tundra. International Journal of Remote Sensing 36: 4344-4362.<\/li>\n<li>Egawa, C. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2015). Occurrence patterns of facilitation by shade along a water gradient are mediated by species traits. Acta Oecologica 62: 45-52.<\/li>\n<li>Hoyo, Y. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2015). Sexual and vegetative reproduction of the sympatric congeners Drosera anglica and D. rotundifolia. Flora 210: 60-65<\/li>\n<li>Narita, K., Harada, K., Saito K., Sawada, Y., Fukuda, M. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2015). Vegetation and permafrost thaw depth 10 years after a tundra fire in 2002, Seward Peninsula, Alaska. Arctic, Antarctic, and Alpine Research 47: 547-559.<\/li>\n<li>Nishimura, A. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2015). Plant responses to nitrogen fertilization differ between post-mined and original peatlands. Folia Geobotanica 50: 107-121.<\/li>\n<li>Nomura, N. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2015). Hares promote seed dispersal and seedling establishment after volcanic eruptions. Acta Oecologica 63: 22-27.<\/li>\n<li>Hoyo, Y. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2014). Habitat differentiation between Drosera anglica and D. rotundifolia in a post-mined peatland, northern Japan. Wetlands 34: 943-953.<\/li>\n<li>Nishimura, A. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2014). Effects of water level via controlling water chemistry on revegetation patterns after peat mining. Wetlands 34: 117-127.<\/li>\n<li><span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Narita, K., Sawada, Y. &amp; Kushida, K (2014). The establishment patterns of tree seedlings are determined immediately after wildfire in a black spruce (Picea mariana) forest. Plant Ecology 215: 327-337.<\/li>\n<li>Egawa, C. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2013). The effects of litter accumulation through succession on seed bank formation for small-and large-seeded species. Journal of Vegetation Science 24: 1062-1073.<\/li>\n<li>Hoyo, Y. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2013). Characteristics of leaf shapes among two parental Drosera species and a hybrid examined by canonical discriminant analysis and a hierarchical Bayesian model. American Journal of Botany 100: 817-823.<\/li>\n<li>Koyama, A. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2013). Facilitation by tussock-forming species on seedling establishment collapses in an extreme drought year in a post-mined Sphagnum peatland. Journal of Vegetation Science 24: 478-483.<\/li>\n<li><span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Narita, K., Sawada, Y. &amp; Harada, K (2013). Recovery of forest-floor vegetation after a wildfire in a Picea mariana forest. Ecological Research 28: 1061-1068<\/li>\n<li>Appiah, C., <span style=\"color: #3366ff;\">Tsuyuzaki, S.<\/span> &amp; Djietror, J.C (2012). Post fire restoration study of ash and moisture variation effects on seed germination of Citrullus colocynthis and Vigna unguiculata. Research Journal of Seed Science 5: 126-135.<\/li>\n<li>Koyama, A. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2012). Mechanism of facilitation by sedge and cotton-grass tussocks on seedling establishment in a post-mined peatland. Plant Ecology 213: 1729-1737.<\/li>\n<li><span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Matsuda, Miyuki &amp; Akasaka, M (2012). Effect of a deciduous shrub on microclimate along an elevation gradient, Mount Koma, north Japan. Climate Research 51: 1-10.<\/li>\n<li>Djietror, J.C., Ohara, M., <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>. &amp; Appiah, C (2011). On the path of invasion: disturbance promotes the growth vigor among siam weeds in a mine land ecosystem. Research Journal of Forestry 5: 144-153.<\/li>\n<li>Egawa, C. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2011). Seedling establishment of late colonizer is facilitated by seedling and overstory of early colonizer in a post-mined peatland. Plant Ecology 212: 369-381.<\/li>\n<li>Irie, K. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2011). Dispersal timing, palatability and caching of acorns of Aesculus turbinata Bl. Plant Biosystems 145: 798-801.<\/li>\n<li>Iwata, H., Ueyama, M., Harazono, Y., <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Kondo, M. &amp; Uchida, M (2011). Quick recovery of carbon dioxide exchanges in a burned black spruce forest in interior Alaska. SOLA 7: 105-108.<\/li>\n<li>Kimura, H. &amp; <span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span> (2011). Fire severity affects vegetation and seed bank in a wetland. Applied Vegetation Science 14: 350-357.<\/li>\n<li><span style=\"color: #3366ff;\">Tsuyuzaki, S<\/span>., Nakajima, H., Hirata, A.K.B. &amp; Koyama, A (2011). Distribution pattern of exotic plants in the metropolitan area of Sapporo (Japan) in relation to life form and immigration date. Feddes Repertorium 122: 275-286.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u96ea\u6c37\u570f&#8221;]<\/p>\n<ul>\n<li>Tsutaki, S., <span style=\"color: #3366ff;\">S. Sugiyama<\/span>, <span style=\"color: #3366ff;\">D. Sakakibara<\/span> and T. Sawagaki (2016). Surface elevation changes during 2007-2013 on Bowdoin and Tugto Glaciers, northwestern Greenland. Journal of Glaciology, 62(236), 1083-1092.<\/li>\n<li><span style=\"color: #3366ff;\">Kanna, N.<\/span>, and <span style=\"color: #3366ff;\">J. Nishioka <\/span>(2016). Bio-availability of iron derived from subarctic first-year sea ice, Marine Chemistry, Volume: 186, 189-197.<\/li>\n<li>Ohashi, Y., T. Iida, <span style=\"color: #3366ff;\">S. Sugiyama<\/span> and S. Aoki (2016). Spatial and temporal variations in high turbidity surface water off the Thule region, northwestern Greenland. Polar Science, 10(3), 270-277.<\/li>\n<li>Saito, J., <span style=\"color: #3366ff;\">S. Sugiyama<\/span>, S. Tsutaki and T. Sawagaki (2016). Surface elevation change on ice caps in the Qaanaaq region, northwestern Greenland. Polar Science, 10(3), 239-248.<\/li>\n<li>Machguth, H. and 31 others, including <span style=\"color: #3366ff;\">S. Sugiyama<\/span> (2016). Greenland surface mass-balance observations from the ice-sheet ablation area and local glaciers. Journal of Glaciology, 62(235), 861-887.<\/li>\n<li><span style=\"color: #3366ff;\">Greve, R.<\/span> and H. Blatter (2016). Comparison of thermodynamics solvers in the polythermal ice sheet model SICOPOLIS. Polar Science, 10(1), 11-23.<\/li>\n<li>Yokokawa, M., N. Izumi, K. Naito, G. Parker, T. Yamada and <span style=\"color: #3366ff;\">R. Greve<\/span> (2016). Cyclic steps on ice. Journal of Geophysical Research: Earth Surface, 121(5), 1023-1048.<\/li>\n<li><span style=\"color: #3366ff;\">Iizuka, Y.<\/span>, <span style=\"color: #3366ff;\">S. Matoba<\/span>, T. Yamasaki, I. Oyabu, M. Kadota and T. Aoki (2016). Glaciological and meteorological observations at the SE-Dome site, southeastern Greenland Ice Sheet. Bulletin of Glaciological Research, 34, 1-10.<\/li>\n<li>Oyabu, I.,<span style=\"color: #3366ff;\"> S. Matoba<\/span>, T. Yamasaki, M. Kadota and <span style=\"color: #3366ff;\">Y. Iizuka<\/span> (2016). Seasonal variations in the major chemical species of snow at the South East Dome in Greenland. Polar Science, 10(1), 36-42.<\/li>\n<li><span style=\"color: #3366ff;\">Podolskiy E. A.<\/span>, and F. Walter (2016). Cryo-seismology, Reviews of Geophysics, <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/2016RG000526\/abstract\" target=\"_blank\" rel=\"noopener noreferrer\">2016RG000526<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">E. Podolskiy, S. Sugiyama<\/span>, M. Funk, F. Walter, R. Genco, S. Tsutaki, M. Minowa, M. Ripepe (2016). Tide-modulated ice flow variations drive seismicity near the calving front of Bowdoin Glacier, Greenland. Geophysical Research Letters, 43, <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/2016GL067743\/full\" target=\"_blank\" rel=\"noopener noreferrer\">doi: 10.1002\/2016GL067743<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">Matoba, S.<\/span>, H. Motoyama, K. Fujita, T. Yamasaki, M. Minowa, Y. Onuma, Y. Komuro, T. Aoki, S. Yamaguchi, <span style=\"color: #3366ff;\">S. Sugiyama<\/span> and H. Enomoto (2015). Glaciological and meteorological observations at the SIGMA-D site, northwestern Greenland Ice Sheet. Bulletin of Glaciological Research, 33, 7-14.<\/li>\n<li>Oyabu, I., <span style=\"color: #3366ff;\">Y. Iizuka<\/span>, H. Fischer, S. Sch\u00fcpbach, G. Gfeller, A. Svensson, M. Fukui, J. P. Steffensen and M. Hansson (2015). Chemical compositions of solid particles present in the Greenland NEEM ice core over the last 110,000 years. Journal of Geophysical Research: Atmospheres, 120(18), 9789-9813.<\/li>\n<li>Blatter, H. and <span style=\"color: #3366ff;\">R. Greve<\/span> (2015). Comparison and verification of enthalpy schemes for polythermal glaciers and ice sheets with a one-dimensional model. Polar Science, 9(2), 196-207.<\/li>\n<li>Goelles, T., C. E. B\u00f8ggild and <span style=\"color: #3366ff;\">R. Greve<\/span> (2015). Ice sheet mass loss caused by dust and black carbon accumulation. The Cryosphere, 9(5), 1845-1856.<\/li>\n<li>Vizca\u00edno, M., U. Mikolajewicz, F. Ziemen, C. B. Rodehacke, <span style=\"color: #3366ff;\">R. Greve<\/span> and M. R. van den Broeke (2015). Coupled simulations of Greenland Ice Sheet and climate change up to A.D. 2300. Geophysical Research Letters, 42(10), 3927-3935.<\/li>\n<li><span style=\"color: #3366ff;\">Sugiyama, S<\/span>., <span style=\"color: #3366ff;\">D. Sakakibara<\/span>, S. Tsutaki, M. Maruyama and T. Sawagaki (2015). Glacier dynamics near the calving front of Bowdoin Glacier, northwestern Greenland. Journal of Glaciology, 61(226), 223-232.<\/li>\n<li>\u698e\u672c\u6d69\u4e4b, \u91d1\u5c3e\u653f\u7d00, <span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span>, \u9f4b\u85e4\u51ac\u6a39, \u576a\u4e95\u8aa0\u53f8, \u6c38\u585a\u5c1a\u5b50 (2015). \u6e29\u6696\u5316\u3068\u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u6c37\u5e8a\u30fb\u5468\u7e01\u6c37\u6cb3. \u300e\u6708\u520a\u5730\u7403\u300f, 37(2), 3-8.<\/li>\n<li><span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span>, \u6d25\u6edd\u4fca, <span style=\"color: #3366ff;\">\u698a\u539f\u5927\u8cb4<\/span>, \u6589\u85e4\u6f64, \u4e38\u5c71\u672a\u5983\u5442, \u6fa4\u67ff\u6559\u4f38 (2015). \u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u5317\u897f\u90e8\u306b\u304a\u3051\u308b\u6c37\u5e3d\u304a\u3088\u3073\u30ab\u30fc\u30d3\u30f3\u30b0\u6c37\u6cb3\u306e\u5909\u52d5, \u300e\u6708\u520a\u5730\u7403\u300f, 37(2), 9-18.<\/li>\n<li><span style=\"color: #3366ff;\">Greve, R.<\/span>, T. Zwinger and Y. Gong (2014). On the pressure dependence of the rate factor in Glen&#8217;s flow law. Journal of Glaciology, 60(220), 397-398.<\/li>\n<li><span style=\"color: #3366ff;\">Sugiyama, S<\/span>., <span style=\"color: #3366ff;\">D. Sakakibara<\/span>, S. Matsuno, S. Yamaguchi, <span style=\"color: #3366ff;\">S. Matoba<\/span> and T. Aoki (2014). Initial field observations on Qaanaaq Ice Cap in northwestern Greenland. Annals of Glaciology, 55(66), 25-33.<\/li>\n<li>\u5927\u6a4b\u826f\u5f66, \u98ef\u7530\u9ad8\u5927, <span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span> (2014). \u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u6c37\u5e8a\u6cbf\u5cb8\u306e\u6d77\u6d0b\u74b0\u5883\u5909\u52d5. \u300e\u5317\u6d77\u9053\u306e\u96ea\u6c37\u300f, 33, 85-88. \u2461<\/li>\n<li><span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span>, \u6fa4\u67ff\u6559\u4f38, \u6d25\u6edd\u4fca, <span style=\"color: #3366ff;\">\u698a\u539f\u5927\u8cb4<\/span>, \u4e38\u5c71\u672a\u5983\u5442 (2014). \u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u5317\u897f\u90e8\u306b\u304a\u3051\u308b\u6c37\u5e8a\u30fb\u6c37\u5e3d\u30fb\u30ab\u30fc\u30d3\u30f3\u30b0\u6c37\u6cb3\u306e\u5909\u52d5. \u300e\u5317\u6d77\u9053\u306e\u96ea\u6c37\u300f, 33, 73-76.<\/li>\n<li>\u6589\u85e4\u6f64, \u6d25\u6edd\u4fca, \u6fa4\u67ff\u6559\u4f38, <span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span> (2014). \u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u5317\u897f\u90e8\u306b\u304a\u3051\u308b\u6c37\u5e3d\u306e\u8868\u9762\u9ad8\u5ea6\u5909\u5316. \u300e\u5317\u6d77\u9053\u306e\u96ea\u6c37\u300f, 33, 77-80.<\/li>\n<li>\u4e38\u5c71\u672a\u5983\u5442, \u6d25\u6edd\u4fca, <span style=\"color: #3366ff;\">\u698a\u539f\u5927\u8cb4<\/span>, \u6fa4\u67ff\u6559\u4f38, <span style=\"color: #3366ff;\">\u6749\u5c71\u614e<\/span> (2014). \u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u5317\u897f\u90e8\u30ab\u30ca\u30c3\u30af\u6c37\u5e3d\u306b\u304a\u3051\u308b\u8cea\u91cf\u53ce\u652f\u30fb\u6d41\u52d5\u901f\u5ea6\u30fb\u8868\u9762\u9ad8\u5ea6\u5909\u5316\u306e\u89b3\u6e2c. \u300e\u5317\u6d77\u9053\u306e\u96ea\u6c37\u300f, 33, 81-84.<\/li>\n<li>Bindschadler, R. A., and 26 others including <span style=\"color: #3366ff;\">R. Greve<\/span> (2013). Ice-sheet model sensitivities to environmental forcing and their use in projecting future sea level (the SeaRISE project). Journal of Glaciology, 59(214), 195-224.<\/li>\n<li>Gagliardini, O., and 14 others including <span style=\"color: #3366ff;\">R. Greve<\/span> (2013). Capabilities and performance of Elmer\/Ice, a new-generation ice sheet model. Geoscientific Model Development, 6(4), 1299-1318.<\/li>\n<li><span style=\"color: #3366ff;\">Greve, R.<\/span> and U. C. Herzfeld (2013). Resolution of ice streams and outlet glaciers in large-scale simulations of the Greenland ice sheet. Annals of Glaciology, 54(63), 209-220.<\/li>\n<li>Nowicki, S., and 30 others including <span style=\"color: #3366ff;\">R. Greve<\/span> (2013). Insights into spatial sensitivities of ice mass response to environmental change from the SeaRISE ice sheet modeling project II: Greenland. Journal of Geophysical Research: Earth Surface, 118(2), 1025-1044.<\/li>\n<li>Applegate, P. J., N. Kirchner, E. J. Stone, K. Keller and <span style=\"color: #3366ff;\">R. Greve<\/span> (2012). An assessment of key model parametric uncertainties in projections of Greenland Ice Sheet behavior. The Cryosphere, 6(3), 589-606.<\/li>\n<li>Gillet-Chaulet, F., O. Gagliardini, H. Seddik, M. Nodet, G. Durand, C. Ritz, T. Zwinger, <span style=\"color: #3366ff;\">R. Greve<\/span> and D. G. Vaughan (2012). Greenland ice sheet contribution to sea-level rise from a new-generation ice-sheet model. The Cryosphere, 6(6), 1561-1576.<\/li>\n<li>Herzfeld, U. C., J. L. Fastook, <span style=\"color: #3366ff;\">R. Greve<\/span>, B. McDonald, B. F. Wallin and P. A. Chen (2012). On the influence of Greenland outlet glacier bed topography on results from dynamic ice-sheet models. Annals of Glaciology, 53(60), 281-293.<\/li>\n<li>Rogozhina, I., J. M. Hagedoorn, Z. Martinec, K. Fleming, O. Soucek, <span style=\"color: #3366ff;\">R. Greve<\/span> and M. Thomas (2012). Effects of uncertainties in the geothermal heat flux distribution on the Greenland Ice Sheet: An assessment of existing heat flow models. Journal of Geophysical Research, 117(F2), F02025.<\/li>\n<li>Seddik, H., <span style=\"color: #3366ff;\">R. Greve<\/span>, T. Zwinger, F. Gillet-Chaulet and O. Gagliardini (2012). Simulations of the Greenland ice sheet 100 years into the future with the full Stokes model Elmer\/Ice. Journal of Glaciology, 58(209), 427-440.<\/li>\n<li><span style=\"color: #3366ff;\">Greve, R.<\/span>, F. Saito and A. Abe-Ouchi (2011). Initial results of the SeaRISE numerical experiments with the models SICOPOLIS and IcIES for the Greenland Ice Sheet. Annals of Glaciology, 52(58), 23-30.<\/li>\n<li>Dunse, T., <span style=\"color: #3366ff;\">R. Greve<\/span>, T. V. Schuler and J. O. Hagen (2011). Permanent fast flow versus cyclic surge behaviour: numerical simulations of the Austfonna ice cap, Svalbard. Journal of Glaciology, 57(202), 247-259.<\/li>\n<li>Blatter, H., <span style=\"color: #3366ff;\">R. Greve<\/span> and A. Abe-Ouchi (2011). Present state and prospects of ice sheet and glacier modelling. Surveys in Geophysics, 32(4-5), 555-583.<\/li>\n<li><span style=\"color: #3366ff;\">Matoba, S.<\/span>, T. Shiraiwa, A. Tsushima, H. Sasaki and Y.D. Muravyev (2011). Records of sea-ice extent and air temperature at the Sea of Okhotsk from an ice core of Mount Ichinsky, Kamchatka. Annals of Glaciology, 52(58), 44-50.<\/li>\n<li>Fukuda, T., <span style=\"color: #3366ff;\">S. Sugiyama<\/span>, S., <span style=\"color: #3366ff;\">S. Matoba<\/span> and <span style=\"color: #3366ff;\">T. Shiraiwa<\/span> (2011). Glacier flow measurement and radio-echo sounding at Aurora Peak, Alaska in 2008. Annals of Glaciology, 52(58), 138-142.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u74b0\u5883\u5de5\u5b66&#8221;]<\/p>\n<ul>\u53d7\u8cde<\/p>\n<li><span style=\"color: #3366ff;\">\u702c\u6238\u53e3\u525b<\/span>\u30002015\u5e7404\u6708\u3000\u6587\u90e8\u79d1\u5b66\u7701\u3000\u6587\u90e8\u79d1\u5b66\u5927\u81e3\u8868\u5f70\u79d1\u5b66\u6280\u8853\u8cde\u3000\u300c\u98a8\u96ea\u306e\u5f71\u97ff\u3092\u4f4e\u6e1b\u3059\u308b\u90fd\u5e02\u8a2d\u8a08\u30b7\u30df\u30e5\u30ec\u30fc\u30b7\u30e7\u30f3\u624b\u6cd5\u306e\u7814\u7a76\u300d<\/li>\n<li><span style=\"color: #3366ff;\">\u702c\u6238\u53e3\u525b<\/span>\u30002014\u5e7405\u6708\u3000\u65e5\u672c\u5efa\u7bc9\u5b66\u4f1a\u3000\u65e5\u672c\u5efa\u7bc9\u5b66\u4f1a\u8cde\u3000\u300c\u7a4d\u96ea\u5bd2\u90fd\u5e02\u306b\u304a\u3044\u3066\u98a8\u96ea\u306e\u5f71\u97ff\u3092\u4f4e\u6e1b\u3059\u308b\u90fd\u5e02\u30c7\u30b6\u30a4\u30f3\u30b7\u30df\u30e5\u30ec\u30fc\u30b7\u30e7\u30f3\u624b\u6cd5\u306e\u7814\u7a76\u300d<\/li>\n<li><span style=\"color: #3366ff;\">\u702c\u6238\u53e3\u525b<\/span>\u30002014\u5e7405\u6708\u3000\u65e5\u672c\u90fd\u5e02\u8a08\u753b\u5b66\u4f1a\u3000\u65e5\u672c\u90fd\u5e02\u8a08\u753b\u5b66\u4f1a\u8a08\u753b\u8a2d\u8a08\u8cde\u3000\u300c\u7a1a\u5185\u99c5\u524d\u5730\u533a\u518d\u958b\u767a\u4e8b\u696d\u300e\u30ad\u30bf\u30ab\u30e9\u300f\uff0d\u5317\u56fd\u306e\u90fd\u5e02\u30c7\u30b6\u30a4\u30f3\uff0d\u300d<\/li>\n<\/ul>\n<ul>\u8ad6\u6587<\/p>\n<li>Zhubin Li, <span style=\"color: #3366ff;\">Tsuyoshi SETOGUCHI<\/span> (2014). Residents\u2019 Satisfaction with the Public Housing Unit Features and Its Implications in China. Journal of Civil Engineering and Architecture\u30008\u5dfb(2\u53f7).<\/li>\n<li><span style=\"color: #3366ff;\">\u702c\u6238\u53e3\u525b<\/span>\u3001\u9577\u5c3e\u7f8e\u5e78\u3001\u5ca1\u90e8\u512a\u5e0c\u3001\u751f\u6cbc\u8cb4\u53f2\u3001\u677e\u6751\u535a\u6587 (2014). \u96c6\u7d04\u578b\u90fd\u5e02\u3078\u5411\u3051\u305f\u5e02\u6c11\u610f\u5411\u306b\u57fa\u3065\u304f\u5c06\u6765\u90fd\u5e02\u50cf\u306e\u985e\u578b\u5316\u3000\u2212\u5915\u5f35\u5e02\u90fd\u5e02\u30de\u30b9\u30bf\u30fc\u30d7\u30e9\u30f3\u7b56\u5b9a\u306b\u304a\u3051\u308b\u5e02\u8857\u5730\u96c6\u7d04\u578b\u30d7\u30e9\u30f3\u30cb\u30f3\u30b0\u2212. \u65e5\u672c\u5efa\u7bc9\u5b66\u4f1a\u8a08\u753b\u7cfb\u8ad6\u6587\u96c6\u3000\u7b2c79\u5dfb(\u7b2c698\u53f7) 949-958.<\/li>\n<li>Zhubin Li, <span style=\"color: #3366ff;\">Tsuyoshi SETOGUCHI<\/span> (2013). A Study of Low-rent Housing Room Usage and Its Inspiration. Architectural Journal, Academic Issue 09 180-185.<\/li>\n<li>Zhubin Li, <span style=\"color: #3366ff;\">Tsuyoshi SETOGUCHI<\/span> (2013). Assessment for Accessibility and Usability of Chinese Public Housing Interiors. International Journal of Architecture and Design\u3000Vol.24(No.2) 1103-1109.<\/li>\n<li>\u677e\u6751 \u535a\u6587\u3001<span style=\"color: #3366ff;\">\u702c\u6238\u53e3 \u525b<\/span> (2013). \u9023\u62c5\u578b\u53ca\u3073\u5b64\u7acb\u578b\u30cb\u30e5\u30fc\u30bf\u30a6\u30f3\u306e\u5c45\u4f4f\u8005\u610f\u8b58\u304b\u3089\u898b\u305f\u8ab2\u984c\u7279\u6027. \u5730\u65b9\u90fd\u5e02\u306b\u304a\u3051\u308b\u30cb\u30e5\u30fc\u30bf\u30a6\u30f3\u306e\u518d\u751f\u7814\u7a76. \u65e5\u672c\u5efa\u7bc9\u5b66\u4f1a\u8a08\u753b\u7cfb\u8ad6\u6587\u96c6\u3000684\u5dfb 393-402.<\/li>\n<li>Zhubin Li, <span style=\"color: #3366ff;\">Tsuyoshi SETOGUCHI<\/span>\u3000(2012). The Reconsideration on Living-room Design in Chinese Public Housing. The International Symposium on Architectural Interchanges in Asia (ISAIA), Seoul, Korea\u3000\u96fb\u5b50\u30b8\u30e3\u30fc\u30ca\u30eb\u63b2\u8f09.<\/li>\n<li><span style=\"color: #3366ff;\">\u702c\u6238\u53e3\u525b<\/span>\u3001\u4f50\u85e4\u516c\u54c9\u3001\u6e21\u90e8\u5178\u5927\u3001\u5824\u62d3\u54c9 (2012). \u7a4d\u96ea\u5bd2\u51b7\u90fd\u5e02\u306b\u304a\u3051\u308b\u98a8\u96ea\u30b7\u30df\u30e5\u30ec\u30fc\u30b7\u30e7\u30f3\u306b\u3088\u308b\u8857\u533a\u7a7a\u9593\u5f62\u614b\u3068\u9664\u96ea\u30a8\u30cd\u30eb\u30ae\u30fc\u306e\u8a55\u4fa1\u3001\u65e5\u672c\u5efa\u7bc9\u5b66\u4f1a\u8a08\u753b\u7cfb\u8ad6\u6587\u96c6\u3000682\u5dfb 2789-2798.<\/li>\n<li><span style=\"color: #3366ff;\">Tsuyoshi Setoguchi<\/span> (2011). Public Square Design with Snow and Wind Simulations Using Wind Tunnel, INTEC (No.22).<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u4eba\u6587\u793e\u4f1a&#8221;]<\/p>\n<ul>\n<li><span style=\"color: #3366ff;\">TAKAHASHI, Minori<\/span> (2016). Greenland, the Island of Military Bases: Negotiations for Turning the Island into a Missile Defense Stronghold. The Journal of Island Studies, 17(1), pp.47-65.<\/li>\n<li><span style=\"color: #3366ff;\">TAKAHASHI, Minori<\/span> (2016). The Politics of the Right to Self-Determination: Reframing the Debate on Greenland&#8217;s Autonomy. Eurasia Border Review, 6(1), pp.25-43.<\/li>\n<li>\u5c0f\u6fa4\u5b9f, \u4e2d\u4e38\u798e\u5b50, <span style=\"color: #3366ff;\">\u9ad8\u6a4b\u7f8e\u91ce\u68a8 <\/span>(\u7de8\u8457) (2016). \u30a2\u30a4\u30b9\u30e9\u30f3\u30c9\u30fb\u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u30fb\u5317\u6975\u3092\u77e5\u308b\u305f\u3081\u306e65\u7ae0. \u660e\u77f3\u66f8\u5e97, \u6771\u4eac, \u5168456\u9801.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2015).\u300c\u30aa\u30db\u30fc\u30c4\u30af\u6d77\u5317\u5cb8\u30fb\u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u534a\u5cf6\u304b\u3089\u307f\u305f\u300c\u30b5\u30cf\u30ea\u30f3\u30fb\u5343\u5cf6\u30eb\u30fc\u30c8\u300d\u300d\u9ad8\u702c\u514b\u7bc4\u7de8\u300e\u300c\u30b5\u30cf\u30ea\u30f3\u30fb\u5343\u5cf6\u30eb\u30fc\u30c8\u300d\u518d\u8003\u300f\uff0cpp.61-94\uff0c \u5317\u6d77\u9053\u8003\u53e4\u5b66\u4f1a.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2015).\u300c\u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u534a\u5cf6\u5357\u90e8\u51fa\u571f\u5185\u8033\u571f\u5668\u3068\u305d\u306e\u5343\u5cf6\u30a2\u30a4\u30cc\u53f2\u4e0a\u306e\u610f\u7fa9\u300d\u300e\u8ad6\u96c6\u5fcd\u8def\u5b50\u300fIV\uff0cpp.17-45.<\/li>\n<li>\u5c0f\u6749\u3000\u5eb7\u30fb<span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span>\u30fb\u6e21\u908a\u3064\u3065\u308a\u30fb\u795e\u7530\u3044\u305a\u307f (2015).\u300c\u5317\u6d77\u9053\u867b\u7530\u90e1\u8c4a\u6d66\u753a\u793c\u6587\u83ef\u907a\u8de1\u306e\u7b2c3\u6b21\u8abf\u67fb\u7b2c1\u301c3\u30b7\u30fc\u30ba\u30f3\u6982\u8981\u5831\u544a\u300d\u300e\u5317\u6d77\u9053\u8003\u53e4\u5b66\u300f51\uff0cpp.85-94.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2015).\u300cA\u30fbV\u30fb\u30d7\u30bf\u30b7\u30f3\u30b9\u30ad\u30fc\u4e8c\u3007\u4e00\u4e09\u300c\u4e2d\u5c71\u82f1\u53f8\u2014\u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u53e4\u4ee3\u53f2\u306e\u7814\u7a76\u8005\u2014\u300d \u300e\u7b2c\u4e09\u3007\u56de\u30af\u30e9\u30b7\u30a7\u30cb\u30f3\u30cb\u30b3\u30d5\u30fb\u30ea\u30fc\u30c7\u30a3\u30f3\u30b0\u30b9\u300f\uff0cpp.236-237\uff0c \u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u90f7\u571f\u5b66\u8853\u56f3\u66f8\u9928\u3002\u300d\u300e\u5317\u65b9\u535a\u7269\u9928\u4ea4\u6d41\u300f27\uff0cp.23.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2015).\u300c\u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u6700\u5927\u306e\u8003\u53e4\u30b3\u30ec\u30af\u30b7\u30e7\u30f3\u3092\u8a2a\u306d\u3066\u300d\u300e\u5317\u65b9\u535a\u7269\u9928\u4ea4\u6d41\u300f27\uff0cpp.17-23.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2015).\u300cK39\u907a\u8de1\u5927\u5b66\u75c5\u9662\u30bc\u30df\u30ca\u30fc\u30eb\u68df\u5730\u70b9\u51fa\u571f\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u300e\u5317\u5927\u69cb\u5185\u306e\u907a\u8de1XXI\u300f, pp.144-147\uff0c \u5317\u6d77\u9053\u5927\u5b66.<\/li>\n<li><span style=\"color: #3366ff;\">Takase, K<\/span> (2015). Use-wear analysis of stone tools from the coast of Karaga Bay, Northeastern Kamchatka, Russia, Journal of the Graduate School of Letters, 10, pp.13-25, Graduate School of Letters, Hokkaido University.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u5317\u5ddd\u6d41\u57df\u306b\u304a\u3051\u308b\u7d9a\u7e04\u6587\u7cfb\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u6771\u5317\u30fb\u95a2\u6771\u524d\u65b9\u5f8c\u5186\u58b3\u7814\u7a76\u4f1a\u7de8\u300e\u53e4\u58b3\u3068\u7d9a\u7e04\u6587\u6587\u5316\u300f\uff0cpp.195-210\uff0c \u9ad8\u5fd7\u66f8\u9662.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u7d9a\u7e04\u6587\u6587\u5316\u306e\u751f\u696d\u300d\u300e\u9031\u520a \u65b0\u767a\u898b\uff01\u65e5\u672c\u306e\u6b74\u53f2\u300f\uff0cp.15\uff0c \u671d\u65e5\u65b0\u805e\u51fa\u7248.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u30ed\u30b7\u30a2\u5e73\u539f\u306b\u304a\u3051\u308b\u4e2d\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u300e\u77f3\u5668\u4f7f\u7528\u75d5\u7814\u7a76\u4f1a\u4f1a\u5831\u300f13\uff0cpp.8-9.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014)\u300c\u672d\u5e4c\u5e02K39\u907a\u8de1\u51fa\u571f\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u300e\u77f3\u5668\u4f7f\u7528\u75d5\u7814\u7a76\u4f1a\u4f1a\u5831\u300f13\uff0cp.5.<\/li>\n<li>\u81fc\u6775\u3000\u52f2\u30fbYu\uff0eNikitin\u30fb <span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u30ed\u30b7\u30a2\u6cbf\u6d77\u5730\u65b9\u5317\u90e8\u306e\u9752\u9285\u5668\u6587\u5316\u300d\u300e\u7b2c15\u56de\u5317\u30a2\u30b8\u30a2\u8abf\u67fb\u7814\u7a76\u5831\u544a\u4f1a\u300f\uff0cpp.77-82.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u30ab\u30e0\u30c1\u30e3\u30c3\u30ab\u534a\u5cf6\u6771\u5317\u90e8\u30ab\u30e9\u30ac\u6e7e\u6cbf\u5cb8\u51fa\u571f\u571f\u5668\u306e\u5e74\u4ee3\u300d\u300e\u7b2c15\u56de \u5317\u30a2\u30b8\u30a2\u8abf\u67fb\u7814\u7a76\u5831\u544a\u4f1a\u300f\uff0cpp.1-4.<\/li>\n<li><span style=\"color: #3366ff;\">Takase, K<\/span>. (2014). Radiocarbon Dating of Pottery from Karaga Bay Coast, Northern Kamchatka, Russia, Journal of the Graduate School of Letters, 9, pp.1-27, Graduate School of Letters, Hokkaido University.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u7d9a\u7e04\u6587\u6587\u5316\u306e\u8cc7\u6e90\u5229\u7528\u2014\u96a3\u63a5\u8af8\u6587\u5316\u3068\u306e\u6bd4\u8f03\u306b\u3082\u3068\u3065\u304f\u5c55\u671b\u2014\u300d\u300e\u56fd\u7acb\u6b74\u53f2\u6c11\u4fd7\u535a\u7269\u9928\u7814\u7a76\u5831\u544a\u300f185\uff0cpp.15-61.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u5931\u308f\u308c\u305f\u5343\u5cf6\u30a2\u30a4\u30cc\u306e\u6765\u6b74\u3068\u751f\u6d3b\u8a8c\u3092\u5fa9\u5143\u3059\u308b\u300d\u300e\u77e5\u306e\u30d5\u30ed\u30f3\u30c6\u30a3\u30a2\u2014\u5317\u5927\u306e\u7814\u7a76\u8005\u306f\uff0c\u3044\u307e\u2014\u300f3\uff0cpp.6-7\uff0c\u5317\u6d77\u9053\u5927\u5b66\u30a2\u30c9\u30df\u30c3\u30b7\u30e7\u30f3\u30bb\u30f3\u30bf\u30fc.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2014).\u300c\u7e04\u6587\u6587\u5316\u306e\u571f\u5730\u30fb\u8cc7\u6e90\u5229\u7528\u306e\u76f8\u5bfe\u5316\u300d\u300e\u4e2d\u592e\u5927\u5b66\u5b66\u8853\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0\u8003\u53e4\u5b66\u306e\u5730\u5e73\u3092\u306e\u305e\u3080\u3000\u7e04\u6587\u6642\u4ee3\u306e\u98df\u3068\u5c45\u4f4f\u301c\u8003\u53e4\u5b66\u3068\u95a2\u9023\u79d1\u5b66\u306e\u7814\u7a76\u6210\u679c\u304b\u3089\u301c\u300f\uff0cpp.40-53\uff0c \u4e2d\u592e\u5927\u5b66\u6587\u5b66\u90e8.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u6a4b\u7f8e\u91ce\u68a8<\/span> (2013). \u81ea\u5df1\u6c7a\u5b9a\u6a29\u3092\u3081\u3050\u308b\u653f\u6cbb\u5b66\uff1a\u30c7\u30f3\u30de\u30fc\u30af\u9818\u30b0\u30ea\u30fc\u30f3\u30e9\u30f3\u30c9\u306b\u304a\u3051\u308b\u300c\u5bfe\u5916\u7684\u81ea\u6cbb\u300d. \u660e\u77f3\u66f8\u5e97, \u6771\u4eac, \u5168392\u9801.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2013).\u300c\u6cb3\u91ce\u30b3\u30ec\u30af\u30b7\u30e7\u30f3\uff08\u65ed\u5ddd\u5e02\u535a\u7269\u9928\u53ce\u8535\uff09\u306e\u5185\u8033\u571f\u5668\u300d\u300e\u5317\u5927\u53f2\u5b66\u300f53\uff0cpp.1-16, p.21.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span>\u30fb\u9234\u6728\u5efa\u6cbb (2013).\u300c\u99ac\u5834\u30b3\u30ec\u30af\u30b7\u30e7\u30f3\u306e\u518d\u691c\u8a0e\u2014\u5317\u5343\u5cf6\u306e\u7aea\u7a74\u4f4f\u5c45\u30fb\u571f\u5668\u30fb\u77f3\u5668\u306e\u57fa\u790e\u7684\u7814\u7a76\u2014\u300d \u300e\u5317\u6d77\u9053\u5927\u5b66\u6587\u5b66\u7814\u7a76\u79d1\u7d00\u8981\u300f140\uff0cpp.1-56.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2013).\u300c\u30ab\u30e0\u30c1\u30e3\u30c4\u30ab\u534a\u5cf6\u6771\u5317\u90e8\u30ab\u30e9\u30ac\u6e7e\u5468\u8fba\u306e\u907a\u8de1\u3092\u8a2a\u306d\u3066\u300d\u300e\u5317\u65b9\u535a\u7269\u9928\u4ea4\u6d41\u300f25\uff0cpp.4-9.<\/li>\n<li><span style=\"color: #3366ff;\">Takase, K<\/span> (2013). Chronology and Age Determination of Pottery from the Southern Kamchatka and Northern Kuril Islands, Russia, Journal of the Graduate School of Letters, 8, pp.35-61, Graduate School of Letters, Hokkaido University.<\/li>\n<li><span style=\"color: #3366ff;\">Takase, K<\/span> (2012). Endscrapers of the Old Koryak Culture: A Case Study in the Kamchatka and Taigonos Peninsulas, Journal of the Graduate School of Letters, 7, pp.31-53, Graduate School of Letters, Hokkaido University.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2012).\u300c\u6a19\u6d25\u5ddd\u6cb3\u53e3\u5de6\u5cb82\u907a\u8de1\u51fa\u571f\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u6919\u7530\u5149\u660e\u7de8\u300e\u6a19\u6d25\u5ddd\u6cb3\u53e3\u5de6\u5cb82\u907a\u8de1\u300f\uff0cpp.104-110\uff0c \u6a19\u6d25\u753a\u6559\u80b2\u59d4\u54e1\u4f1a.<\/li>\n<li>\u5ca9\u702c\u3000\u5f6c\u30fb<span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2012).\u300c\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u300e\u9ed2\u66dc\u77f3\u306e\u6d41\u901a\u3068\u6d88\u8cbb\u304b\u3089\u307f\u305f\u74b0\u65e5\u672c\u6d77\u5317\u90e8\u5730\u57df\u306b\u304a\u3051\u308b\u66f4\u65b0\u4e16\u4eba\u985e\u793e\u4f1a\u306e\u5f62\u6210\u3068\u5909\u5bb9( I )\u300f\uff0cpp.152-158\uff0c\u6771\u4eac\u5927\u5b66\u5927\u5b66\u9662\u4eba\u6587\u793e\u4f1a\u7cfb\u7814\u7a76\u79d1\u9644\u5c5e\u5317\u6d77\u6587\u5316\u7814\u7a76\u5e38\u5442\u5b9f\u7fd2\u65bd\u8a2d.<\/li>\n<li><span style=\"color: #3366ff;\">\u0422\u0430\u043a\u0430\u0441\u044d, \u041a<\/span>., \u041b\u0435\u0431\u0435\u0434\u0438\u0446\u0435\u0432, \u0410. \u0418., \u041f\u0442\u0430\u0448\u0438\u043d\u0441\u043a\u0438\u0439, \u0410. \u0412 (2012). \u041d\u043e\u0432\u044b\u0435 \u0440\u0430\u0434\u0438\u043e\u0443\u0433\u043b\u0435\u0440\u043e\u0434\u043d\u044b\u0435 \u0434\u0430\u0442\u044b \u0434\u043b\u044f \u0441\u0435\u0432\u0435\u0440\u043d\u043e\u0433\u043e \u043f\u0440\u0438\u043e\u0445\u043e\u0442\u044c\u044f \u0438 \u0441\u0435\u0432\u0435\u0440\u043e-\u0432\u043e\u0441\u0442\u043e\u0447\u043d\u043e\u0433\u043e \u043f\u043e\u0431\u0435\u0440\u0435\u0436\u044c\u044f \u041a\u0430\u043c\u0447\u0430\u0442\u043a\u0438, VII \u0414\u0438\u043a\u043e\u0432\u0441\u043a\u0438\u0435 \u0427\u0438\u0442\u0435\u043d\u0438\u044f: \u041c\u0430\u0442\u0435\u0440\u0438\u0430\u043b\u044b \u041d\u0430\u0443\u0447\u043d\u043e-\u041f\u0440\u0430\u043a\u0442\u0438\u0447\u0435\u0441\u043a\u043e\u0439 \u041a\u043e\u043d\u0444\u0435\u0440\u0435\u043d\u0446\u0438\u0438, \u0441.139-143, \u0421\u0412\u041a\u041d\u0418\u0418 \u0414\u0412\u041e \u0420\u0410\u041d.<\/li>\n<li><span style=\"color: #3366ff;\">Shinichiro Tabata<\/span> and Xu Liu (2012). &#8220;Russia&#8217;s Energy Policy in the Far East and East Siberia,&#8221; in Pami Aalto, ed., Russia&#8217;s Energy Policy: National, Interregional and Global Dimensions. Cheltenham, UK: Edward Elgar, pp. 156-181.<\/li>\n<li><span style=\"color: #3366ff;\">\u7530\u7551\u4f38\u4e00\u90ce<\/span>\u30fb\u6c5f\u6df5\u76f4\u4eba\u7de8\u8457 (2012).\u300e\u74b0\u30aa\u30db\u30fc\u30c4\u30af\u6d77\u5730\u57df\u306e\u74b0\u5883\u3068\u7d4c\u6e08\u300f\u5317\u6d77\u9053\u5927\u5b66\u51fa\u7248\u4f1a\uff0c\u5168280\u9801.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2011). \u300cK39\u907a\u8de1\u5317\u6d77\u9053\u5927\u5b66\u5de5\u5b66\u90e8\u5171\u7528\u5b9f\u9a13\u7814\u7a76\u68df\u5730\u70b9\u51fa\u571f\u9ed2\u66dc\u77f3\u88fd\u77f3\u5668\u306e\u4f7f\u7528\u75d5\u5206\u6790\u300d\u300eK39\u907a\u8de1\u5317\u6d77\u9053\u5927\u5b66\u5de5\u5b66\u90e8\u5171\u7528\u5b9f\u9a13\u7814\u7a76\u68df\u5730\u70b9\u767a\u6398\u8abf\u67fb\u5831\u544a\u66f8\u300f\uff0cpp.299-311\u5317\u6d77\u9053\u5927\u5b66.<\/li>\n<li><span style=\"color: #3366ff;\">\u0422\u0430\u043a\u0430\u0441\u044d, \u041a<\/span> (2011). \u0421\u043a\u0440\u0435\u0431\u043a\u0438 \u0434\u0440\u0435\u0432\u043d\u0438\u0435\u043a\u043e\u0440\u044f\u043a\u0441\u043a\u043e\u0439 \u043a\u0443\u043b\u044c\u0442\u0443\u0440\u044b: \u0418\u0441\u0441\u043b\u0435\u0434\u0432\u0430\u043d\u0438\u0435 \u043f\u0440\u043e\u0431\u043b\u0435\u043c\u044b \u043d\u0430 \u043f\u0440\u0438\u043c\u0435\u0440\u0435 \u043f\u043e\u043b\u043e\u0441\u0442\u0440\u043e\u0432\u043e\u0432 \u043a\u0430\u043c\u0447\u0430\u0442\u043a\u0430 \u0438 \u0442\u0430\u0439\u0433\u043e\u043d\u043e\u0441, \u0412\u0415\u0421\u0422\u041d\u0418\u041a \u041a\u0420\u0410\u0423\u041d\u0426, 2011 \u21161, \u0441.13-34.<\/li>\n<li><span style=\"color: #3366ff;\">\u0422\u0430\u043a\u0430\u0441\u044d, \u041a<\/span> (2011). \u0420\u0430\u0434\u0438\u043e\u0443\u0433\u043b\u0435\u0440\u043e\u0434\u043d\u043e\u0435 \u0434\u0430\u0442\u0438\u0440\u043e\u0432\u0430\u043d\u0438\u0435 \u043e\u0431\u0443\u0433\u043b\u0435\u043d\u043d\u043e\u0433\u043e \u043c\u0430\u0442\u0435\u0440\u0438\u0430\u043b\u0430 \u0438\u0437 \u0433\u043b\u0438\u043d\u044b \u043a\u0435\u0440\u0430\u043c\u0438\u0447\u0435\u0441\u043a\u043e\u0439 \u043f\u043e\u0441\u0443\u0434\u044b: \u0418\u0441\u0441\u043b\u0435\u0434\u0432\u0430\u043d\u0438\u044f \u043d\u0430 \u041a\u0430\u043c\u0447\u0430\u0442\u043a\u0435 \u0438 \u043f-\u043e\u0432\u0435 \u0422\u0430\u0439\u0433\u043e\u043d\u043e\u0441, VI \u0414\u0438\u043a\u043e\u0432\u0441\u043a\u0438\u0435 \u0427\u0438\u0442\u0435\u043d\u0438\u044f: \u041c\u0430\u0442\u0435\u0440\u0438\u0430\u043b\u044b \u041d\u0430\u0443\u0447\u043d\u043e- \u041f\u0440\u0430\u043a\u0442\u0438\u0447\u0435\u0441\u043a\u043e\u0439 \u041a\u043e\u043d\u0444\u0435\u0440\u0435\u043d\u0446\u0438\u0438, \u0441.141-144, \u0421\u0412\u041a\u041d\u0418\u0418 \u0414\u0412\u041e \u0420\u0410\u041d.<\/li>\n<li><span style=\"color: #3366ff;\">\u9ad8\u702c\u514b\u7bc4<\/span> (2011).\u300c\u30ec\u30d7\u30ea\u30ab\u6cd5\u306b\u3088\u308b\u7e04\u6587\u6669\u671f\u304b\u3089\u5f25\u751f\u30fb\u7d9a\u7e04\u6587\u671f \u306e\u571f\u5668\u5727\u75d5\u306e\u691c\u8a0e\u2015\u5317\u6d77\u9053\u30fb\u5bae\u57ce\u770c\u57df\u306b\u304a\u3051\u308b\u4e8b\u4f8b\u7814\u7a76\u2015\u300d\u300e\u5317\u6d77\u9053\u8003\u53e4\u5b66\u300f47\uff0cpp.33-50.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u885b\u661f\u30fb\u30e2\u30c7\u30ea\u30f3\u30b0&#8221;]<\/p>\n<ul>\u53d7\u8cde<\/p>\n<li><span style=\"color: #3366ff;\">\u5409\u68ee\u6b63\u548c<\/span>\u30002016\u5e7403\u6708\u3000GRENE\u5317\u6975\u6c17\u5019\u5909\u52d5\u7814\u7a76\u4e8b\u696d \u512a\u79c0\u8cde<\/li>\n<\/ul>\n<ul>\u8ad6\u6587<\/ul>\n<ul>\n<li><span style=\"color: #3366ff;\">Yoshimori, M<\/span>., A. Abe-Ouchi, and A. La\u00een\u00e9 (2017). The role of atmospheric heat transport and regional feedbacks in the Arctic warming at equilibrium. Clim. Dyn., <a href=\"https:\/\/link.springer.com\/article\/10.1007\/s00382-017-3523-2\" target=\"_blank\" rel=\"noopener noreferrer\">doi: 10.1007\/s00382-017-3523-2<\/a>.<\/li>\n<li>Dome Fuji Ice Core Project members [Kawamura, K., A. Abe-Ouchi, H. Motoyama, Y. Ageta, S. Aoki, N. Azuma, Y. Fujii, K. Fujita, S. Fujita, K. Fukui, T. Furukawa, A. Furusaki, K. Goto-Azuma, R. Greve, M. Hirabayashi, T. Hondoh, A. Hori, S. Horikawa, K. Horiuchi, M. Igarashi, Y. Iizuka, T. Kameda, H. Kanda, M. Kohno, T. Kuramoto, Y. Matsushi, M. Miyahara, T. Miyake, A. Miyamoto, Y. Nagashima, Y. Nakayama, T. Nakazawa, F. Nakazawa, F. Nishio, I. Obinata, R. Ohgaito, A. Oka, J. Okuno, J. Okuyama, I. Oyabu, F. Parrenin, F. Pattyn, F. Saito, T(akashi) Saito, T(akeshi) Saito, T. Sakurai, K. Sasa, H. Seddik, Y. Shibata, K. Shinbori, K. Suzuki, T. Suzuki, A. Takahashi, K. Takahashi, S. Takahashi, M. Takata, Y. Tanaka, R. Uemura, G. Watanabe, O. Watanabe, T. Yamasaki, K. Yokoyama, <span style=\"color: #3366ff;\">M. Yoshimori<\/span>, and T. Yoshimoto] (2016). State dependence of climatic instability over the past 720,000 years from Antarctic ice cores and climate modelling. Science Advances, <a href=\"http:\/\/advances.sciencemag.org\/content\/3\/2\/e1600446\" target=\"_blank\" rel=\"noopener noreferrer\">doi: 10.1126\/sciadv.1600446<\/a>.<\/li>\n<li>Voigt, A., M. Biasutti, J. Scheff, J. Bader, S. Bordoni, F. Codron, R. D. Dixon, J. Jonas, S. Kang, N. P. Klingaman, R. Leung, J. Lu, B. Mapes, E. A. Maroon, S. McDermid, J. Park, R. Roehrig, B. E. J. Rose, G. L. Russell, J. Seo, T. Toniazzo, H.-H. Wei, <span style=\"color: #3366ff;\">M. Yoshimori<\/span>, and L. R. V. Zeppetello (2016). The Tropical Rain belts with an Annual cycle and a Continent Model Intercomparison Project: TRACMIP. Journal of Advances in Modeling Earth Systems, 8(4): 1868\u20131891, <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/2016MS000748\/abstract\" target=\"_blank\" rel=\"noopener noreferrer\">doi:10.1002\/2016MS000748<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I.D.<\/span>, Dehara, M., <span style=\"color: #3366ff;\">Saitoh, S.-I.<\/span>, and <span style=\"color: #3366ff;\">Hirawake, T.<\/span> (2016). Seasonal Habitat Patterns of Japanese Common Squid (Todarodes Pacificus) Inferred from Satellite-Based Species Distribution Models. Remote Sensing, 8: 921. <a href=\"http:\/\/www.mdpi.com\/2072-4292\/8\/11\/921\" target=\"_blank\" rel=\"noopener noreferrer\">doi:10.3390\/rs8110921<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">Yoshimori, M.<\/span>, M. Watanabe, H. Shiogama, A. Oka, A. Abe-Ouchi, R. Ohgaito, and Y. Kamae (2016). A review of progress towards understanding the transient global mean surface temperature response to radiative perturbation. Progress in Earth and Planetary Science, 3:21, <a href=\"https:\/\/progearthplanetsci.springeropen.com\/articles\/10.1186\/s40645-016-0096-3\" target=\"_blank\" rel=\"noopener noreferrer\">DOI 10.1186\/s40645-016-0096-3<\/a>.<\/li>\n<li>Syah, A. F., <span style=\"color: #3366ff;\">S.-I. Saitoh, I<\/span>. <span style=\"color: #3366ff;\">D. Alabia<\/span> &amp;<span style=\"color: #3366ff;\"> T. Hirawake<\/span> (2016). Predicting potential fishing zones for Pacific saury (Cololabis saira) with maximum entropy models and remotely sensed data. Fishery Bulletin <a href=\"http:\/\/fishbull.noaa.gov\/1143\/syah.pdf\" target=\"_blank\" rel=\"noopener noreferrer\">doi:10.7755\/FB.114.3.6<\/a>.<\/li>\n<li>Xu, J., H. Zhang, Y. Cai, <span style=\"color: #3366ff;\">J. Garcia Molinos<\/span>, M. Zhang (2016). Optimal response to habitat linkage of local fish diversity and mean trophic level. Limnology and Oceanography, <a href=\"http:\/\/onlinelibrary.wiley.com\/doi\/10.1002\/lno.10313\/full\" target=\"_blank\" rel=\"noopener noreferrer\">DOI: 10.1002\/lno.10313<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I. D<\/span>., <span style=\"color: #3366ff;\">S.-I. Saitoh<\/span>, H. Igarashi, Y. Ishikawa, N. Usui, M. Kamachi, T. Awaji &amp; M. Seito (2016). Ensemble squid habitat model using three-dimensional ocean data. ICES Journal of Marine Science: Journal du Conseil <a href=\"http:\/\/icesjms.oxfordjournals.org\/content\/early\/2016\/05\/05\/icesjms.fsw075.abstract\" target=\"_blank\" rel=\"noopener noreferrer\">doi:10.1093\/icesjms\/fsw075<\/a>.<\/li>\n<li>E.S. Poloczanska, M.T. Burrows, C.J. Brown, <span style=\"color: #3366ff;\">J. Garcia Molinos<\/span>, B.S. Halpern, O. Hoegh-Guldberg, C.V. Kappel, P.J. Moore, A.J. Richardson, D.S. Schoeman, and W.J. Sydeman (2016). Responses of marine organisms to climate change across oceans. Frontiers in Marine Science, <a href=\"http:\/\/journal.frontiersin.org\/article\/10.3389\/fmars.2016.00062\/abstract\" target=\"_blank\" rel=\"noopener noreferrer\">doi: 10.3389\/fmars.2016.00062<\/a>.<\/li>\n<li>Laine, A., <span style=\"color: #3366ff;\">M. Yoshimori<\/span>, and A. Abe-Ouchi (2016). Surface Arctic amplification factors in CMIP5 models: land and oceanic surfaces, seasonality. J. Climate, 29(9), 3297-3316 , <a href=\"http:\/\/journals.ametsoc.org\/doi\/abs\/10.1175\/JCLI-D-15-0497.1\" target=\"_blank\" rel=\"noopener noreferrer\">doi:10.1175\/JCLI-D-15-0497.1<\/a>.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I. D<\/span>., <span style=\"color: #3366ff;\">S.-I. Saitoh<\/span>, <span style=\"color: #3366ff;\">T. Hirawake<\/span>, H. Igarashi, Y. Ishikawa, N. Usui, M. Kamachi, T. Awaji &amp; M. Seito (2016). Elucidating the potential squid habitat responses in the central North Pacific to the recent ENSO flavors. Hydrobiologia:1-13 doi:10.1007\/s10750-016-2662-5.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I. D<\/span>., <span style=\"color: #3366ff;\">S.-I. Saitoh<\/span>, R. Mugo, H. Igarashi, Y. Ishikawa, N. Usui, M. Kamachi, T. Awaji &amp; M. Seito (2015). Seasonal potential fishing ground prediction of neon flying squid (Ommastrephes bartramii) in the western and central North Pacific. Fisheries Oceanography 24(2):190-203 doi:10.1111\/fog.12102.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I. D<\/span>.,<span style=\"color: #3366ff;\"> S.-I. Saitoh<\/span>, H. Igarashi, Y. Ishikawa, N. Usui, M. Kamachi, T. Awaji &amp; M. Seito (2015). Future projected impacts of ocean warming to potential squid habitat in western and central North Pacific. ICES Journal of Marine Science doi:10.1093\/icesjms\/fsv203.<\/li>\n<li><span style=\"color: #3366ff;\">Alabia, I. D<\/span>., <span style=\"color: #3366ff;\">S.-I. Saitoh<\/span>, R. Mugo, H. Igarashi, Y. Ishikawa, N. Usui, M. Kamachi, T. Awaji &amp; M. Seito (2015). Identifying Pelagic Habitat Hotspots of Neon Flying Squid in the Temperate Waters of the Central North Pacific. PLoS ONE 10(11):e0142885 doi:10.1371\/journal.pone.0142885.<\/li>\n<li><span style=\"color: #3366ff;\">Yoshimori, M<\/span>., A. Abe-Ouchi, M. Watanabe, A. Oka, and T. Ogura (2014). Robust seasonality of Arctic warming processes in two different versions of MIROC GCM. J. Climate, 27(16), 6358-6375.<\/li>\n<li><span style=\"color: #3366ff;\">Yoshimori, M<\/span>., M. Watanabe, A. Abe-Ouchi, H. Shiogama, and T. Ogura (2014). Relative contribution of feedback processes to Arctic amplification of temperature change in MIROC GCM. Clim. Dyn., 42(5-6), 1613-1630.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[tab title=&#8221;\u56fd\u969b\u9023\u643a\u90e8&#8221;]<\/p>\n<ul>\n<li>Ochiai S, Nagao S, Kashiwaya K, <span style=\"color: #3366ff;\">Kaeriyama M<\/span>, Qin Y, et al (2015). Recent eutrophication and environmental changes in the catchment inferred from geochemical properties of Lake Onuma sedements in Japan. In: Earth surface processes and environmental changes in East Asia (edits: Kashiwaya K, Shen J, and Kim JY) pp. 69-79, Springer.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span>\u30fb\u79e6\u7389\u96ea (2015). \u4e09\u9678\u6cbf\u5cb8\u306e\u30b7\u30ed\u30b6\u30b1\u500b\u4f53\u7fa4\u306e\u56de\u5fa9\u306b\u5411\u3051\u3066. \u4e09\u9678\u306e\u30b5\u30b1\uff08\u4e0a\u7530\u5b8f\u7de8\uff09. pp. 85-99. \u5317\u6d77\u9053\u5927\u5b66\u51fa\u7248\u4f1a, \u672d\u5e4c.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2014). \u6c17\u5019\u5909\u52d5\u3068\u30b7\u30ed\u30b6\u30b1\u500b\u4f53\u7fa4\u52d5\u614b\uff0d\u751f\u614b\u7cfb\u3092\u30d9\u30fc\u30b9\u3068\u3057\u305f\u6301\u7d9a\u53ef\u80fd\u306a\u8cc7\u6e90\u7ba1\u7406\u306b\u5411\u3051\u3066. \u6c34\u7523\u632f\u8208, 563: 1-51.<\/li>\n<li>McKinell S, Curchitser E, Groot K, <span style=\"color: #3366ff;\">Kaeriyama M<\/span>, and Trudel M (2014). Oceanic and atmospheric extremes motivate a new hypothesis fro variable marine survival of Fraser River sockeye salmon. Fisheries Oceanography 23(4): 322-341.<\/li>\n<li><span style=\"color: #3366ff;\">Kaeriyama M<\/span>, Seo H, and Qin Y (2014). Effect of global warming on the life history and population dynamics of Japanese chum salmon. Fisheries Science 80: 251-260.<\/li>\n<li><span style=\"color: #3366ff;\">Kaeriyama M<\/span> and Qin Y (2014). Biological interactions between wild and hatchery-produced Pacific salmon. In: Salmon (edits: Woo PTK and Noakes DJ) pp. 223-238. Nova Science Publishers, Inc.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span>\u30fb\u79e6\u7389\u96ea (2014). \u6c17\u5019\u5909\u52d5\u3068\u30b5\u30b1\u8cc7\u6e90. \u5317\u65e5\u672c\u6f01\u696d, 42: 1-11.<\/li>\n<li>\u5e30\u5c71\u96c5\u79c0\u30fb\u79e6\u7389\u96ea (2014). \u30b5\u30b1\u3068\u6e29\u6696\u5316\uff1a\u30b5\u30b1\u306b\u3088\u308b\u751f\u614b\u7cfb\u30b5\u30fc\u30d3\u30b9\u3068\u305d\u306e\u6301\u7d9a\u7684\u5229\u7528. SEEDer 10: 33-40.<\/li>\n<li>Miyakoshi Y, Nagata M, Kitada S, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2013). Historical and current hatchery programs and management of chum salmon in Hokkaido, Northern Japan. Reviews in Fisheries Science, 21 (3-4): 469-479.<\/li>\n<li>Yatsu A, Chiba S, Yamanaka Y, Ito S, Shimizu Y, <span style=\"color: #3366ff;\">Kaeriyama M<\/span>, and Watanabe Y (2013). Climate forcing and the Kuroshio\/Oyashio ecosystem. ICES Journal of Marine Science, doi:10.1093\/icesjms\/fst084.<\/li>\n<li>Koshino Y, Kudo H, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2013). Stable isotope evidence indicates the incorporation of marine-derived nutrients transported by spawning Pacific salmon to Japanese catchments. Freshwater Biology, 58: 1864-1877.<\/li>\n<li>\u96bc\u91ce\u5bec\u53f2\u30fb\u5bae\u8170\u9756\u4e4b\u30fb\u771f\u91ce\u4fee\u4e00\u30fb\u7530\u6751\u4eae\u4e00\u30fb\u5de5\u85e4\u79c0\u660e\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2013). \u7db2\u8d70\u6e56\u7523\u30b7\u30e9\u30a6\u30aa\u306e\u6f01\u7372\u91cf\u304a\u3088\u3073\u8cc7\u6e90\u91cf\u5909\u52d5\u6a5f\u69cb. \u65e5\u672c\u6c34\u7523\u5b66\u4f1a\u8a8c, 79(3): 372-382.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span>\u30fb\u6c38\u7530\u5149\u535a\u30fb\u4e2d\u5ddd\u5927\u4ecb\uff08\u7de8\u8457\uff09(2013). \u30b5\u30b1\u5b66\u5927\u5168. Xii+297. \u5317\u6d77\u9053\u5927\u5b66\u51fa\u7248\u4f1a, \u672d\u5e4c.<\/li>\n<li>\u96bc\u91ce\u5bec\u53f2\u30fb\u7530\u6751\u4eae\u4e00\u30fb\u5c0f\u51fa\u5c55\u4e45\u30fb\u6210\u57fa\u767e\u30fb\u5de5\u85e4\u79c0\u660e\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2013). \u7db2\u8d70\u6e56\u306b\u304a\u3051\u308b\u30b7\u30e9\u30a6\u30aa\u5375\u306e\u5206\u5e03\u7279\u6027. \u65e5\u672c\u6c34\u7523\u5b66\u4f1a\u8a8c, 79(2): 166-174.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2013). \u65e5\u672c\u7cfb\u30b7\u30ed\u30b6\u30b1\u306e\u751f\u547d\u7dda\u30aa\u30db\u30fc\u30c4\u30af\u6d77\uff0d\u65e5\u672c\u3068\u30ed\u30b7\u30a2\u306e\u67b6\u3051\u6a4b. \u30aa\u30db\u30fc\u30c4\u30af\u306e\u751f\u614b\u7cfb\u3068\u305d\u306e\u4fdd\u5168\uff08\u685c\u4e95\u6cf0\u61b2\u30fb\u677e\u7530\u88d5\u4e4b\u30fb\u7de8\uff09. 109-116. \u5317\u6d77\u9053\u5927\u5b66\u51fa\u7248\u4f1a.<\/li>\n<li>\u79e6\u7389\u96ea\u30fb\u6c38\u4e95\u611b\u68a8\u30fb\u5de5\u85e4\u79c0\u660e\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2013). \u904a\u697d\u90e8\u5ddd\u306e\u30b5\u30b1Oncorhynchus keta\u306b\u304a\u3051\u308b\u91ce\u751f\u9b5a\u3068\u5b75\u5316\u5834\u9b5a\u306e\u5b89\u5b9a\u540c\u4f4d\u4f53\u6bd4\u306b\u3064\u3044\u3066. \u65e5\u672c\u6c34\u7523\u5b66\u4f1a\u8a8c\uff0c79(5): 872-874.<\/li>\n<li>\u6c38\u4e95\u611b\u68a8\u30fb\u5c71\u7530\u7dbe\u30fb\u79e6\u7389\u96ea\u30fbEdpalina RR\u30fb\u5de5\u85e4\u79c0\u660e\u30fb\u963f\u90e8\u5468\u4e00\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u30df\u30c8\u30b3\u30f3\u30c9\u30ea\u30a2DNA\u5206\u6790\u306b\u57fa\u3065\u304f\u672c\u5dde\u65e5\u672c\u6d77\u30b7\u30ed\u30b6\u30b1Oncorhynchus keta\u96c6\u56e3\u306b\u53ca\u307c\u3059\u79fb\u690d\u653e\u6d41\u306e\u907a\u4f1d\u7684\u5f71\u97ff. \u6c34\u7523\u80b2\u7a2e, 42: 33-40.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u74b0\u5883\u7834\u58ca\u304b\u3089\u74b0\u5883\u5fa9\u5143\u306e\u6642\u4ee3\u3078. \u3082\u3046\u3072\u3068\u3064\u306e\u5317\u6d77\u9053\u74b0\u5883\u767d\u66f82012. \u74b0\u5883\u4e2d\u9593\u652f\u63f4\u4f1a\u8b70\u30fb\u5317\u6d77\u9053\u7de8. pp. 44-53. \u5bcc\u58eb\u30b3\u30f3\u30c6\u30e0.<\/li>\n<li>\u5c71\u7530\u7dbe\u30fb\u8d8a\u91ce\u967d\u4ecb\u30fb\u5de5\u85e4\u79c0\u660e\u30fb\u963f\u90e8\u5468\u4e00\u30fb\u8352\u4e95\u514b\u4fca\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u30df\u30c8\u30b3\u30f3\u30c9\u30ea\u30a2DNA\u5206\u6790\u306b\u3088\u308b\u30ab\u30e9\u30d5\u30c8\u30de\u30b9Oncorhynchus gorbuscha\u96c6\u56e3\u69cb\u9020\u306e\u5e74\u7d1a\u7fa4\u9593\u6bd4\u8f03. Nippon Suisan Gakkaishi, 78(5): 973-975.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u30b5\u30b1\u5c5e\u9b5a\u985e\u306b\u3088\u308b\u9678\u57df\u751f\u614b\u7cfb\u3078\u306e\u7269\u8cea\u8f38\u9001. \u6d77\u6d0b\u4fdd\u5168\u751f\u614b\u5b66\uff08\u767d\u5c71\u7fa9\u4e45\u30fb\u685c\u4e95\u6cf0\u61b2\u30fb\u53e4\u8c37\u7814\u30fb\u4e2d\u539f\u88d5\u5e78\u30fb\u677e\u7530\u88d5\u4e4b\u30fb\u52a0\u3005\u7f8e\u5eb7\u5f66\u7de8\uff09. pp. 26-28. \u8b1b\u8ac7\u793e.<\/li>\n<li>Rand PS, Berejikian BA, Bidlack A, Bottom D, Gardner J, <span style=\"color: #3366ff;\">Kaeriyama M<\/span>, Lincoln R, Nagata M, Pearsons TN, Schmidt M, Smoker WW, Weitkamp LA, and Zhivotovsky LA (2012). Ecological interactions between wild and hatchery salmonids and key recommendations for research and management actions in selected regions of the North Pacific. Environ Biol Fish, DOI 10.1007\/s10641-012-9988-2.<\/li>\n<li>Kudo H, Koshino Y, Eto A, Ichimura M, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2012). Cost-effective accurate estimates of adult chum salmon, Oncorhynchus keta, abundance in a Japanese river using a radio-controlled helicopter. Fisheries Research 119-120 (2012) 94-98.<\/li>\n<li><span style=\"color: #3366ff;\">Kaeriyama, M<\/span>., Seo, H., Kudo, H., and Nagata, M (2012). Perspectives on wild and hatchery salmon interactions at sea, potential climate effects on Japanese chum salmon, and the need for sustainable salmon fishery management reform in Japan. Environ. Biol. Fish. 94: 165-177.<\/li>\n<li>Nagata M, Miyakoshi Y, Urabe H, Fujiwara M, Sasaki Y, Kasugai K, Torao M, Ando D, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2012). An overview of salmon enhancement and the need to manage and monitor natural spawning in Hokkaido, Japan. Environ Biol Fish DOI 10.1007\/s10641-011-9882-3.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u30b5\u30b1\u30fb\u30de\u30b9\u985e. \u6700\u65b0\u6c34\u7523\u30cf\u30f3\u30c9\u30d6\u30c3\u30af\uff08\u6728\u6751\u4f38\u543e\u30fb\u685c\u672c\u548c\u7f8e\u307b\u304b\u7de8\uff09, pp. 177-179. \u8b1b\u8ac7\u793e.<\/li>\n<li>Qin Y and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2012). Recent production of chum salmon Oncorhynchus keta under conditions of warming climate. NPAFC Tech. Rep. 8: 113-116.<\/li>\n<li>Koshino Y, Kudo H, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2012). Transfer of marine-derived nutrients by pink salmon (Oncorhynchus gorbuscha) to terrestrial ecosystems in the Shiretoko World Natural Heritage area , Japan. NPAFC Tech Rep 8: 147-149.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u6d77\u9b5a\uff5e\u30b5\u30b1\u306a\u3069\u3078\u306e\u5f71\u97ff. \u30e2\u30fc\u30ea\u30fc2012\u5e7412\u6708\u53f7.p. 18-21. \u5317\u6d77\u9053\u65b0\u805e\u793e.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2012). \u7b2c3\u56de\u65e5\u7c73\u6c34\u7523\u5b66\u4f1a\u5408\u540c\u30b7\u30f3\u30dd\u30b8\u30a6\u30e0\u300c\u6c17\u5019\u5909\u52d5\u3068\u592a\u5e73\u6d0b\u30b5\u30b1\u79d1\u9b5a\u985e\u300d. \u65e5\u672c\u6c34\u7523\u5b66\u4f1a\u8a8c, 78(1): 125-129.<\/li>\n<li>Seo H, Kang S., Matsuda K, and <span style=\"color: #3366ff;\">Kaeriyama M<\/span> (2011). Long-term variation in relative abundance and body size of Pacific salmon Oncorhynchus species. Kor J Fish Aquat Sci 44(6): 717-731.<\/li>\n<li>Kogura, Y., Seeb, J. E., Azuma, N., Kudo, H., Abe, S., <span style=\"color: #3366ff;\">Kaeriyama, M<\/span> (2011). The genetic population structure of lacustrine sockeye salmon, Oncorhynchus nerka, in Japan as the endangered species. Enivron. Biol. Fish. 92: 539-550.<\/li>\n<li>\u5e02\u6751\u653f\u6a39\u30fb\u67f3\u672c\u5353\u30fb\u5c0f\u6797\u656c\u5178\u30fb\u6b63\u5ca1\u54f2\u6cbb\u30fb<span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2011). \u5317\u6d77\u9053\u6771\u90e8\u6839\u5ba4\u6d77\u5ce1\u5468\u8fba\u3067\u63a1\u96c6\u3055\u308c\u305f\u300c\u30b5\u30b1\u30de\u30b9\u300d\u306eDNA\u5206\u6790\u306b\u3088\u308b\u4ea4\u96d1\u5224\u5225. \u65e5\u672c\u6c34\u7523\u5b66\u4f1a\u8a8c 77(5): 834-844.<\/li>\n<li>Seo, H., Kudo, H., <span style=\"color: #3366ff;\">Kaeriyama, M<\/span> (2011). Long-term climate-related changes in somatic growth and population dynamics of Hokkaido chum salmon. Environmental Biology of Fishes, 90: 131-142.<\/li>\n<li>Fukushima, M., Shimazaki, H., Rand, P. S., <span style=\"color: #3366ff;\">Kaeriyama, M<\/span> (2011). Reconstructing Sakhalin taimen Prahucho perryi historical distribution and identifying causes for local extinctions. Trans. Amer. Fish. Soc., 140: 1-13.<\/li>\n<li><span style=\"color: #3366ff;\">Kaeriyama, M<\/span>., Kishi, M.J., <span style=\"color: #3366ff;\">Saitoh, S<\/span>., and Sakurai, Y (2011). Ocean ecosystem conservation and seafood security. In Designing our future: local perspectives on bioproductivity, ecosystems and humanity (eds. M. Osaki, A. K. Braimoh, and K. Nakagami), pp. 130-146. United Nations University Press, Tokyo.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2011). \u30b5\u30b1\uff1d\u751f\u614b\u7cfb\u30b5\u30fc\u30d3\u30b9. \u3069\u3046\u3076\u3064\u306e\u304f\u306b, 25: 8.<\/li>\n<li><span style=\"color: #3366ff;\">\u5e30\u5c71\u96c5\u79c0<\/span> (2011). \u6c17\u5019\u5909\u52d5\u3068\u30b5\u30b1\u8cc7\u6e90\u306b\u3064\u3044\u3066. \u5317\u6d77\u9053\u6c17\u5019\u5909\u52d5\u89b3\u6e2c\u30cd\u30c3\u30c8\u30ef\u30fc\u30af\u8a2d\u7acb\u8a18\u5ff5\u30d5\u30a9\u30fc\u30e9\u30e0\u5831\u544a\u66f8. p. 21-27.<\/li>\n<\/ul>\n<p>[\/tab]<br \/>\n[\/tabs]<\/p>","protected":false},"excerpt":{"rendered":"[tabs] [tab title=&#8221;\u5927\u6c17\u30fb\u6c34\u570f&#8221;] Yang Liu, Sei-Ichi Saitoh, Yu Ihara, Satoshi Nakada, Makoto Kanamori, X [&hellip;]","protected":false},"author":3,"featured_media":0,"parent":0,"menu_order":30,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-50","page","type-page","status-publish","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/pages\/50","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/users\/3"}],"replies":[{"embeddable":true,"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/comments?post=50"}],"version-history":[{"count":1,"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/pages\/50\/revisions"}],"predecessor-version":[{"id":8983,"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/pages\/50\/revisions\/8983"}],"wp:attachment":[{"href":"https:\/\/www.arc.hokudai.ac.jp\/en\/wp-json\/wp\/v2\/media?parent=50"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}