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論文及び総論(査読あり.2012年以後) Peer-reviewed original and review papers (published only form 2012 to the present)
全ての論文を表示する場合はこちら.Click here for the full list.

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  • 西村卓也, 測地観測データに基づく東北日本の最近120年間の地殻変動, 地質学雑誌, 118, 278-293, doi:10.5575/geosoc.2012.0027, 2012. [Link]
  • 西村卓也・水藤尚・小林知勝・飛田幹男, 新潟−神戸ひずみ集中帯を横断する測地観測による越後平野周辺の地殻変動, 地震2, 64, 211-222, 2012. [Link]
  • Ozawa, S., T. Nishimura, H. Munekane, H. Suito, T. Kobayashi, M. Tobita, and T. Imakiire, Preceding, coseismic, and postseismic slips of the 2011 Tohoku earthquake, Japan, J. Geophys. Res., 117, B07404, doi:10.1029/2011JB009120, 2012. [Link]
  • Nishimura, T., T. Matsuzawa, and K. Obara, Detection of short-term slow slip events along the Nankai Trough, southwest Japan using GNSS data, J. Geophys. Res. Solid Earth, 118, 3112-3125, doi:10.1002/jgrb.50222, 2013. [Link]
  • Nishimura, T., Pre-, co-, and post-seismic deformation of the 2011 Tohoku-oki earthquake and its implication to a paradox in short-term and long-term deformation, J. Disaster Res., 9, 294-302, doi:10.20965/jdr.2014.p0294, 2014. [Link] [Link to KURENAI]
  • Nishimura, T., M. Sato, and T. Sagiya, Global Positioning System (GPS) and GPS-Acoustic observations: Insight into slip along the subduction zones around Japan, Annu. Rev. Earth Planet. Sci., 42, 653-674, doi:10.1146/annurev-earth-06313-054614, 2014. [Link] [Link to e-reprint]
  • Nishimura, T., Short-term slow slip events along the Ryukyu trench, southwestern Japan, observed by continuous GNSS, Progress in Earth and Planetary Science, 1:22, doi:10.1186/s40645-014-0022-5, 2014, [Link]
  • 川崎一朗・石井紘・浅井康広・西村卓也, 2011年Mw9.1東北地震に伴ったMw8.4スーパーサブイベント, 地震2, 64, 87-98, doi:10.4294/zisin.67.87, 2014.
  • Kawamoto, S., K. Miyagawa, T. Yahagi, M. Todoriki, T. Nishimura, Y. Ohta, R. Hino, and S. Miura, Development and Assessment of Real-Time Fault Model Estimation Routines in the GEONET Real-Time Processing System, in the series International Association of Geodesy Symposia, doi:10.1007/1345_2015_49, 2015.
  • Nishimura, T., H. Suito, T. Kobayashi, Q. Dong, and T. Shibayama, Excess strain in the Echigo Plain sedimentary basin, NE Japan: Evidence from coseismic deformation of the 2011 Tohoku-oki earthquake, Geophys. J. Int., 205, 1613-1617, doi:10.1093/gji/ggw102, 2016. [Link]
  • Itoh., Y., and T. Nishimura, Characteristics of postseismic deformation following the 2003 Tokachi-oki earthquake and estimation of the viscoelastic structure in Hokkaido, northern Japan, Earth Planets Space, 68:156, doi:10.1186/s40623-016-0533-y, 2016. [Link]
  • Kawamoto, S., Y. Hiyama, Y. Ohta, and T. Nishimura, First result from the GEONET real-time analysis system (REGARD): the case of the 2016 Kumamoto earthquakes, Earth Planets Space, 68:190, doi:10.1186/s40623-016-0564-4, 2016. [Link]
  • Matsumoto, S., T. Nishimura, and T. Ohkura, Inelastic strain rate in the seismogenic layer of Kyushu Island, Japan, Earth Planets Space, 68:207, doi:10.1186/s40623-016-0584-0, 2016. [Link]
  • Kawamoto, S., Y. Ohta, Y. Hiyama, M. Todoriki, T. Nishimura, T. Furuya, Y. Sato, T. Yahagi, and K. Miyagawa, REGARD: A new GNSS-based real-time finite fault modeling system for GEONET, J. Geophys. Res. Solid Earth, 122, doi:10.1002/2016JB013485, 2017. [Link]
  • Fujiwara, S., M.Murakami, T. Nishimura, M. Tobita, H. Yarai, T. Kobayashi, Volcanic deformation of Atosanupuri volcanic complex in the Kussharo caldera, Japan, from 1993 to 2016 revealed by JERS-1, ALOS, and ALOS-2 radar interferometry, Earth Planets Space, 69:78, doi:10.1186/s40623-017-0662-y, 2017. [Link]
  • Ishitsuka, K., T. Matsuoka, T. Nishimura, T. Tsuji, and T. ElGharbawi, Ground uplift related to permeability enhancement following the 2011 Tohoku earthquake in the Kanto Plain , Japan, Earth Planets Space, 69:81, doi:10.1186/s40623-017-0666-7, 2017. [Link]
  • Nishimura T., and Y. Takada, San-in shear zone in southwest Japan, revealed by GNSS observations, Earth Planets Space, 69:85, doi:10.1186/s40623-017-0673-8, 2017. [Link]
  • 西村卓也,GNSSデータから見出される日本列島のひずみ集中帯と活断層及び内陸地震, 活断層研究, 46, 33-39, doi:10.11462/afr.2017.46_33, 2017. [Link]
  • Nishimura, T., Y. Yokota, K. Tadokoro, T. Ochi, Strain partitioning and interplate coupling along the northern margin of the Philippine Sea plate, estimated from GNSS and GPS-A data, Geosphere, 14, 535-551, doi:10.1130/GES01529.1, 2018. [Link]
  • Takada, Y., T. Sagiya, and T. Nishimura, Interseismic crustal deformation in and around the Atotsugawa fault system, central Japan, detected by InSAR and GNSS, Earth Planets Space, 70:32, doi:10.1186/s40623-018-971-0, 2018. [Link]
  • Nishimura, T., A trial of application of geodetic data for assessing activities of inland faults – Coulomb stress changes estimated from GNSS surface displacements, J. Disaster Res., 113, 489-495, doi:10.20965/jdr.2018.p0489, 2018. [Link]
  • Kawamoto, S., N. Takamatsu, S. Abe, K. Miyagawa, Y. Yota, M. Todoroki, and T. Nishimura, Real-time GNSS Analysis System REGARD: An Overview and Recent Results, J. Disaster Res., 113, 440-452, doi:10.20965/jdr.2018.p0440, 2018. [Link]
  • Kano, M., N. Aso, T. Matsuzawa, S. Ide, S. Annoura, R. Arai, S. Baba, M. Bostock, K. Chao, K. Heki, S. Itaba, Y. Ito, N. Kamaya, T. Maeda, J. Maury, M. Nakamura, T. Nishimura, K. Obana, K. Ohta, N. Poiata, B. Rousset, H. Sugioka, R. Takagi, T. Takahashi, A. Takeo, Y. Tu, N. Uchida, Y. Yamashita, and K. Obara, Development of a slow earthquake database, Seimol. Res. Lett., 89, 1566-1575, doi:10.1785/0220180021, 2018. [Link]
  • Cruz-Atienza, V. M., Y. Ito, V. Kostoglodov, V. Hjörleifsdóttir, A. Iglesias, J. Tago, M. Calò, J. Real, A. Husker, S. Ide, T. Nishimura, M. Shinohara, C. Mortera-Gutierrez, S. García, and M. Kido, A Seismogeodetic amphibious network in the Guerrero seismic gap, Mexico, Seismol Res. Lett., 89, 1435-1449, doi:10.1785/0220170173, 2018. [Link]
  • Meneses-Gutierrez, A., T. Nishimura, and M. Hashimoto, Coseismic and postseismic deformation of the 2016 Central Tottori earthquake and its slip model, J. Geophys. Res. Solid Earth, 124, doi:10.1029/2018JB016105, 2019.[Link]
  • Sasajima R., B. Shibazaki, H. Iwamori, T. Nishimura, and Y. Nakai, Mechanism of subsidence of the Northeast Japan forearc during the late period of a gigantic earthquake cycle, Scientific Reports, 5726, doi:10.1038/s41598-019-42169-y, 2019.[Link]
  • Itoh Y., T. Nishimura, K. Ariyoshi, and H. Matsumoto, Interplate Slip Following the 2003 Tokachi-oki Earthquake from Ocean Bottom Pressure Gauge and Land GNSS Data, J. Geophys. Res. Solid Earth, 124, doi:10.1029/2018JB016328, 2019.[Link]
  • Xu, P., Y. Shu, J. Liu, T. Nishimura, Y, Shi, J. Freymueller, A large scale of apparent sudden movements in Japan detected by high-rate GPS after the 2011 Tohoku Mw9.0 earthquake: Physical signals or unidentified artifacts? Earth Planets Space, 71:43, doi:10.1186/s40623-019-1023-9, 2019.[Link]
  • Nishikawa, T., T. Matsuzawa, K.Ohta, N. Uchida, T. Nishimura, and S. Ide, The slow earthquake spectrum in the Japan Trench illuminated by the S-net seafloor observatories, Science, 365, 803-813, doi:10.1126/science.aax5618, 2019.[Link]
  • Fujita, M., T. Nishimura, and S. Miyazaki, Detection of small crustal deformation caused by slow slip events in southwest Japan using GNSS and tremor data, Earth Planets Space, 71:96, doi:10.1186/s40623-019-1075-x, 2019.[Link]
  • Itoh, Y., K. Wang, T. Nishimura, and J. He, Compliant volcanic arc and backarc crust in southern Kurile suggested by interseismic geodetic deformation, Geophys. Res. Lett., 46, doi:10.1029/2019GL084656, 2019. [Link]
  • Sakaue, H., T. Nishimura, J. Fukuda, and T. Kato, Spatiotemporal evolution of long- and short-term slow slip events in the Tokai region, central Japan estimated from a very dense GNSS network during 2013-2016, J. Geophys. Res. Solid Earth, 124, doi:10.1029/2019JB018650, 2019. [Link]
  • Meneses-Gutierrez, A. and T. Nishimura, Inelastic deformation zone in the lower crust for the San-in Shear Zone, Southwest Japan, as observed by a dense GNSS network, Earth Planets Space, 72:10, doi:10.1186/s40623-020-1138-z, 2020. [Link]
  • Obara, K. and T. Nishimura, Main Results from the Program Promotion Panel for Subduction-Zone Earthquakes, J. Disaster Res., 15, 87-95, doi:10.20965/jdr.2020.p0087, 2020. [Link]
  • Mitogawa, T. and T. Nishimura, Coulomb stress change on inland faults during megathrust earthquake cycle in southwest Japan, Earth Planets Space, 72:60, doi:10.1186/s40623-020-01174-6, 2020. [Link]
  • Gunawan, E., S. Widiyantoro, P. Supendi, and T. Nishimura, Identifying the most explainable fault ruptured of the 2018 Palu-Donggala earthquake in Indonesia using coulomb failure stress and geological field report, Geodesy and Geodynamics, 11, 252-257, doi:10.1016/j.geog.2020.04.004, 2020. [Link]
  • Gunawan, E., T. Nishimura, S. Susilo, S. Widiyantoro, N.T. Puspito, D.P. Sahara, N. Hanifa, S. Hidayati, A. Omang, and A. Agustan, Fault source investigation of the 6 December 2016 Mw 6.5 Pidie Jaya, Indonesia, earthquake based on GPS and its implications of the geological survey result, Journal of Applied Geodesy, 000010151520200027. doi:10.1515/jag-2020-0027, 2020. [Link]
  • 大橋聖和・大坪 誠・松本 聡・小林健太・佐藤活志・西村卓也, 九州中部の第四紀テクトニクスと2016年熊本地震 —地質–地震–測地の複眼的視点から—, 地学雑誌, 129(4), 565-589, doi:10.5026/jgeography.129.565, 2020. [Link]
  • Nishimura, T., Slow slip events in the Kanto and Tokai regions of central Japan detected using GNSS data during 1994-2020, Geochemistry Geophysics Geosystems, 22, e2020GC009329, doi:10.1029/2020GC009329, 2021. [Link]
  • Nishikawa, T., T. Nishimura, and Y. Okada, Earthquake swarm detection along the Hikurangi Trench, New Zealand: Insights into the realtionship between seismicity and slow slip events, J. Geophys. Res. Solid Earth, 126, doi:10.1029/2020JB020618, 2021. [Link]
  • Cruz-Atienza, V.M., J. Tago, C. Villafuerte, M. Wei, R. Garza-Girón, L.A. Dominguez, V. Kostoglodov, T. Nishimura, S.I. Franco, J. Real, M.A. Santoyo, Y. Ito, and E. Kazachkina, Short-term interaction between silen and devastating earthquakes in Mexico, Nat. Commun, 12, 2171, doi:10.1038/s41467-021-22326-6, 2021. [Link]
  • Tago, J., V. M. Cruz-Atienza, C. Villafuerte, T. Nishimura, V. Kostoglodov, J. Real, and Y. Ito, Adjoint slip inversion under a constrained optimization framework: revisiting the 2006 Guerrero slow slip event, Geophysical Journal International, 226(2), 1187-1205, doi:10.1093/gji/ggab165, 2021. [Link]
  • Itoh, Y., T. Nishimura,K. Wang, and J. He, New Megathrust Locking Model for the Southern Kurile Subduction Zone Incorporating Viscoelastic Relaxation and Non‐uniform Compliance of Upper Plate, Journal of Geophysical Research: Solid Earth, 126, e2020JB019981, doi:10.1029/2020JB019981, 2021. [Link]
  • Okazaki, T., Y. Fukahata, and T. Nishimura, Consistent estimation of strain-rate fields from GNSS velocity data using basis function expansion with ABIC, Earth Planets Space, 73:153, doi:10.1186/s40623-021-01474-5, 2021. [Link]
  • Kano, M., A. Ikeuchi, T. Nishimura, S. Miyazaki, and T. Matsushima, Potential of megathrust earthquakes along the southern Ryukyu Trench inferred from GNSS data, Earth Planets Space, 73:199, doi:10.1186/s40623-021-01531-z, 2021. [Link]
  • Okada, Y., T. Nishimura, T. Tabei, T. Matsushima, and H. Hirose, Development of a detection method for short-term slow slip events using GNSS data and its application to the Nankai subduction zone, Earth Planets Space, 74:18, doi:10.1186/s40623-022-01576-8, 2022. [Link]
  • Nishimura, T., Time-independent forecast model for large crustal earthquakes in southwest Japan using GNSS data, Earth Planets Space, 74:58, doi:10.1186/s40623-022-01622-5, 2022. [Link]
  • Tha Zin Htet Tin, T. Nishimura, M. Hashimoto, E.O. Lindsey, Lin Thu Aung, Saw Myat Min, Myo Thant, Present-day crustal deformation and slip rate along the southern Sagaing fault in Myanmar by GNSS observation, J. Asian Earth Sci., 228, doi:10.1016/j.jseaes.2022.105125, 2022. [Link}
  • 深畑幸俊・岡﨑智久・西村卓也, GNSSデータに基づく日本列島の歪み速度鳩と島弧間および島弧内変動 ,地学雑誌, 131, 5, 479-496, doi:10.5026:jgeography.131.479, 2022. [Link]
  • Kawasaki, I., H. Ishii, Y. Asai, and T. Nishimura, Unique characteristics of ultrabroadband seismograms for the 2011 Mw9.1 Tohoku earthquake from high-rate global navigation satellite system and continuous-stress records, J. Seismol, 27, 155-172, doi: 10.1007/s10950-022-10121-9, 2023. [Link]
  • Nishikawa, T., S. Ide, and T. Nishimura, A review on slow earthquakes in the Japan Trench, Prog. Earth Planet. Sci, 10, 1, doi:10.1186/s40645-022-00528-w, 2023. [Link]
  • Hirose, H., T. Matsushima,, T. Tabei, and T. Nishimura, Long-term slow slip events with and without tremor activation in the Bungo Channel and Hyuganada, southwest Japan, Earth Planets Space, 75:77, doi:10.1186/s40623-023-01833-4, 2023. [Link]
  • Nishikawa, T., and T. Nishimura, Development of an epidemic-type aftershock-sequence model explicitly incorporating the seismicity-triggering effects of slow slip events. J. Geophys. Res. Solid Earth, 128, e2023JB026457, doi:10.1029/2023JB026457, 2023. [Link]
  • Nishimura, T., Y. Hiramatsu, and Y. Ohta, Episodic transient deformation revealed by the analysis of multiple GNSS networks in the Noto Peninsula, central Japan, Scientific Reports, 13, 8381, doi: 10.1038/s41598-023-35459-z, 2023. [Link]
  • Okada, Y., and T. Nishimura, Systematic detection of short-term slow slip events in southcentral Alaska, Geophys. Res. Lett., 50, e2023GL104901, doi: 10.1029/2023GL104901, 2023. [Link]
  • Tanaka, Y., M. Kano, T. Nishimura, Y.Ohta, and K. Yano, Numerical experiment toward simultaneous estimation of the spatiotemporal evolution of interseismic fault slips and block motions in southwest Japan, Earth Planets Space, 76, 69, doi: 10.1186/s40623-024-02009-4, 2024, [Link]
  • 西村卓也・田部井隆雄・松島健・廣瀬仁, 測地観測に基づく九州の地殻変動分布と活断層の関係, 60, 39-44, 2024.
  • Gunawan, E., N. R. Hanifa, D.H. Natasidjaja, T. Nishimura, et al., Early postseismic slip of the 21 November 2022 Mw5.6 Cianjur, Indonesia, earthquake based on GPS measurements, New Zealand J. Geology Geophys., 1-12, doi:10.1080/00288306, 2024. [Link]

その他の論文・報告(筆頭著者のみ, 2010年以降) Non-reviewed papers and report (listed only after 2010 as the first author)

  • 西村卓也・今給黎哲郎・飛田幹男,GPSリアルタイム1秒データを用いた震源断層即時推定手法の開発,国土地理院時報, 120, 63-73, 2010.[PDF原稿:国土地理院サイトへのリンク]
  • 西村卓也,国土地理院穂高岳測量班,北アルプス穂高連峰の隆起に関する測地学的検証〜一等三角点穂高岳でのGNSS観測〜,国土地理院時報, 124, 117-123, 2013. [PDF原稿:国土地理院サイトへのリンク]
  • 西村卓也, 東日本大震災が示す地震長期予測における地殻変動研究の重要性,会誌 ACADEMIA, 142, 21-29, 2013.
  • 西村卓也, 新潟の地震と地殻変動そして地震発生予測, 地図中心, 505, 1-3, 2014.
  • 西村卓也, 平成28年熊本地震の概要(速報),DPRI NEWSLETTER, 80, 5, 2016. [PDF原稿:防災研サイトへのリンク]
  • 西村卓也, 西南日本の地殻変動と2016年熊本地震,DPRI NEWSLETTER, 81, 2-3, 2016. [PDF原稿:防災研サイトへのリンク]
  • 西村卓也, 西日本のひずみ集中帯,なゐふる, 107, 4-5, 2016. [PDF原稿:日本地震学会サイトへのリンク]
  • 西村卓也, 南海トラフ地震震源域のひずみ蓄積状況, 地震ジャーナル, 62, 1-7, 2016. [PDF原稿:地震予知総合研究振興会へのリンク]
  • 西村卓也, 地震・火山・地殻変動研究におけるGNSSの重要性, JACIC情報, 115, 9-13, 2017. [PDF原稿:日本建設情報総合センターへのリンク]
  • 西村卓也・他11名, 2017年9月にメキシコで続発した地震(M8.2, M7.1), 京都大学防災研究所年報, 61A, 46-49, 2018. [PDF原稿:防災研サイトへのリンク]
  • 西村卓也, 随想 大地の動きの謎に迫る, 兵庫教育, 821(7), 8-11, 2019.
  • 西村卓也, 海陸地殻変動データを用いた南海トラフ沿いのプレート間カップリング分布, 季刊 水路, 192, 27-30, 2020.
  • 西村卓也・橋本学・藤原智, 2018年大阪府北部地震(M6.1)前後の地殻変動, 京都大学防災研究所年報, 63B, 61-68, 2020. [PDF原稿:防災研サイトへのリンク]
  • 西村卓也,2020年12月頃から続く能登半島の群発地震と地殻変動、地震ジャーナル, 62, 1-7, 2022. [PDF原稿]
  • 西村卓也,GNSSを用いた地殻変動の観測と海溝型大地震,消防防災の科学,153, 13-19, 2023. [PDF原稿]
  • 西村卓也,能登半島群発地震に伴う地殻変動,なゐふる, 135, 6-7, 2023. [PDF原稿]
  • 西村卓也,第237回地震予知連絡会重点検討課題「内陸地震の長期予測」の概要, 地震予知連絡会会報,109, 580-581, 2023. [PDF原稿]
  • 西村卓也,測地データを用いた内陸地震の長期予測, 地震予知連絡会会報,109, 587-590, 2023. [PDF原稿]
  • 西村卓也, 測地観測による1923年関東地震とその後の地殻変動 -地震時すべり,プレート間固着及びスロースリップ-, 地震予知連絡会会報,111, 514-519, 2024. [PDF原稿]
  • 西村卓也,能登半島地震に伴う地殻変動とメカニズム,日本地球惑星科学連合ニュースレター誌, 20(2), 21-22, 2024. [PDF原稿]

著書 Books

  • 日本地震学会地震予知検討委員会編,地震予知の科学,218pp.東京大学出版会,2007. (共同執筆者の一人)
  • 京都大学防災研究所,巨大地震 なぜ起こる?そのときどうする?,63pp. PHP出版, 2014. (共同執筆者の一人)
  • 鳥海光弘[編集代表]、図説 地球科学の事典, 236pp., 朝倉書店, 2018. (共同執筆者の一人)
  • 日本自然災害学会編,自然災害科学・防災の百科事典, 806pp., 丸善出版, 2022. (共同執筆者の一人)
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