災害の軽減に貢献するための地震火山観測研究計画(第2次)
令和3年度(2021年度)成果論文等一覧
成果報告システムでご報告いただいた成果論文等をリストにしています。
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1 Aiken, C. and K. Obara, 2021, Data-driven clustering reveals more than 900 small magnitude slow earthquakes and their characteristics, Geophys. Res. Lett., 48 doi:10.1029/2020GL091764
2 Aizawa K., S. Takakura, H. Asaue, K. Koike, R. Yoshimura, K. Yamazaki, S. Komatsu, M. Utsugi, H. Inoue, K. Tsukamoto, M. Uyeshima, T. Koyama, W. Kanda, T. Yoshinaga, N. Matsushima, K. Uchida, Y. Tsukashima, T. Matsushima, H. Ichihara, D. Muramatsu, Y. Teguri, A. Shito, S. Matsumoto, and H. Shimizu, 2021, Electrical conductive fluid-rich zones and their influence on the earthquake initiation, growth, and arrest processes: observations from the 2016 Kumamoto earthquake sequence, Kyushu Island, Japan, Earth Planets Space, 73:12 doi:10.1186/s40623-020-01340-w
3 Aizawa, K., M. Ustugi, K. Kitamura, T. Koyama, M. Uyeshima, N. Matsuhima, S. Takakura, H. Inagaki,  H. Saito, Y. Fujimitsu, 2022, Magmatic fluid pathways in the upper crust: Insights from dense magnetotelluric observations around the Kuju Volcanoes, Japan, Geophysical Journal International, 228, 755-772 doi:10.1093/gji/ggab368
4 Akuhara, T., K. Nakahigashi, M. Shinohara, T. Yamada, H. Shiobara, Y. Yamashita, K. Mochizuki, and K. Uehira, 2021, Lithosphere–asthenosphere boundary beneath the Sea of Japan from transdimensional inversion of S-receiver functions, Earth Planets Space, 73(1), 171 doi: 10.1186/s40623-021-01501-5
5 Amezawa, Y., T. Maeda, and M. Kosuga, 2021, Migration diffusivity as a controlling factor in the duration of earthquake swarms, Earth, Planets and Space, 73, 148 doi:10.1186/s40623-021-01480-7
6 Arai, R., 2021, Characteristics of seismicity in the southern Okinawa Trough and their relation to back-arc rifting processes, Earth Planets and Space, 73, 160 doi:10.1186/s40623-021-01491-4
7 Ariyoshi, K., T. Kimura, Y. Miyazawa, S. Varlamov, T. Iinuma, A. Nagano, J. Gomberg, E. Araki, T. Miyama, K. Sueki, S. Yada, T. Hori, N. Takahashi, S. Kodaira, 2021, Precise Monitoring of Pore Pressure at Boreholes Around Nankai Trough Toward Early Detecting Crustal Deformation, Frontier Earth Science, 9, 717696 doi:10.3389/feart.2021.717696
8 Asaah, A. N. E., T. Yokoyama, H. Iwamori, F. T. Aka, J. Tamen, T. Kuritani, T. Usui, T. Hasegawa, E. M. Fozing, 2022, Geochemical composition of dykes along the Cameroon Line (CL): Petrogenesis and similarities with the Central Atlantic Magmatic Province, Geochemistry, 82, 125865 doi:10.1016/j.chemer.2022.125865
9 Asaah, A.N.E., T.Yokoyama, H.Iwamori, F.T.Aka, T.Kuritani, T.Usui, J.Tamen, M.G. Dedzo, B.C.-Tchamabé, T.Hasegawa, L.A.Nche, T.Ohba, 2021, High–μ signature in lavas of Mt. Oku: Implications for lithospheric and asthenospheric contributions to the magmatism of the Cameroon Volcanic Line (West Africa), Lithos, 400-401 doi:10.1016/j.lithos.2021.106416
10 Asano, K. and T. Iwata, 2021, Revisiting the source rupture process of the mainshock of the 2016 Kumamoto earthquake and implications for the generation of near-fault ground motions and forwarddirectivity pulse, Bull. Seismol. Soc. Am., 111, 2426–2440 doi:10.1785/0120210047
11 Atoltz, M., G.Stoltz, K.Obara, T.Wang, and D.Bryant, 2021, Acceleration of hidden Markov model fitting using graphical processing units, with application to low-frequency tremor classification, Computers and Geosciences, 156 doi:10.1016/j.cageo.2021.104902
12 Baba, S., K.Obara, S.Takemura, A.Takeo, and G.A.Abers, 2021, Shallow Slow Earthquake Episodes Near the Trench Axis Off Costa Rica, Journal of Geophysical Research-Solid Earth, 126, e2021JB021706 doi:10.1029/2021JB021706
13 Bellanova, P., Frenken, M., Nishimura, Y., Schwarzbauer, J., Reicherter, K., 2021, Tracing woody-organic tsunami deposits of the 2011 Tohoku-oki event in Misawa (Japan), Scientific Report, 11, 8947 doi:10.1038/s41598-021-88199-3
14 Cahyadi, M.N., E. Y. Handoko, R.W. Rahayu, and K. Heki, 2021, Comparison of volcanic explosions in Japan using impulsive ionospheric disturbances, Earth Planets Space, 73(228) doi:10.1186/s40623-021-01539-5
15 Chang, T. and S. Ide, 2020, Hypocenter Hotspots Illuminated Using a New Cross-Correlation-Based Hypocenter and Centroid Relocation Method, Journal of Geophysical Research Solid Earth, 126, e2021JB021991 doi:10.1029/2021JB021991
16 Chen, H., M. Miao, Y. Chang, Q. Wang, XH. Shen, K. Hattori, and P. Han, 2021, Singular Spectrum Analysis of the Total Electron Content Changes Prior to M >= 6.0 Earthquakes in the Chinese Mainland During 1998-2013, Front. Earth Sci., 9, 677163 doi:10.3389/feart.2021.677163
17 Chiba, K., 2021, Stress State Inferred from b Value and Focal Mechanism Distributions in the Aftershock Area of the 2005 West Off Fukuoka Prefecture Earthquake, Pure Appl. Geophys., 178, 1165-1179 doi:10.1007/s00024-021-02691-5
18 Chiba, T., Y. Nishimura , Y. Yanagisawa, 2021, Distinguishing reworked diatoms derived from Neogene marine strata in modern coastal assemblages for understanding taphonomic processes and reconstructing Holocene paleoenvironments in the Tokachi coastal area, Hokkaido, Japan, Marine Micropaleontology, 164, 101970 doi:10.1016/j.marmicro.2021.101970
19 Chikita, K. A., A. Goto, J. Okada, T. Yamaguchi, S. Miura, and M. Yamamoto, 2022, Hydrological and Chemical Budgets of Okama Crater Lake in active Zao Volcano, Japan, Hydrology, MDPI, Switzerland, 9, 28 doi:10.3390/hydrology9020028
20 Cochran, E. S., J. K. Saunders, S. E. Minson, J. Bunn, A. Baltay, D. Kilb, C. O’Rourke, M. Hoshiba, and Y. Kodera, 2022, Alert Optimization of the PLUM Earthquake Early Warning Algorithm for the Western United States, Bull. Seism. Soc. Am. doi:10.1785/0120210259
21 Cole, R.P., J.D.L. White, T. Dürig, , R. Büttner, B. Zimanowski, M.H. Bowman, C.E. Conway, G.S. Leonard, L.R. Pure, D.B. Townsend, , 2021, Controls on andesitic glaciovolcanism at ice-capped volcanoes from field and experimental studies, Geology, 49, 1069-1073 doi:10.1130/G48735.1
22 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, 2021, Short-term interaction between silent and devastating earthquakes in Mexico, Nat. Commun., 12 doi:10.1038/s41467-021-22326-6
23 Cui, S., X. Pei, Y. Jiang, G. Wang, X. Fan, Q. Yang, R. Huang, 2021, Liquefaction within Bedding Fault: New Understanding of the Initiation and Movement of the Daguangbao Landslide Triggered by the 2008 Wenchuan Earthquake (Ms = 8.0), Engineering Geology, 295, 106455 doi:10.1016/j.enggeo.2021.106455
24 D’Araújo, J., igmundsson, T. Ferreira, J. Okada, M. Lorenzo and R. Silva, 2022, Plate Boundary Deformation and Volcano Unrest at the Azores Triple Junction Determined From Continuous GPS Measurements, 2002-2017, Journal of Geophysical Research Solid Earth, 127 doi:10.1029/2021JB023007
25 Dandar, O., A. Okamoto, M. Uno, and N. Tsuchiya, 2021, Redistribution of magnetite during multi–stage serpentinization: Evidence from the Taishir Massif, Khantaishir ophiolite, western Mongolia, J. Mineral. Petrol. Sci., 116, 176-181 doi:10.2465/jmps.201130a
26 Dhakal, Y. P., T. Kunugi, W. Suzuki, T. Kimura, N. Morikawa, and S. Aoi, 2021, Strong motions on land and ocean bottom: Comparison of horizontal PGA, PGV, and 5% damped acceleration response spectra in Northeast Japan and the Japan Trench area, Bull. Seismol. Soc. Am., 111, 3237–3260 doi:10.1785/0120200368
27 Dhar, S., J. Muto, Y. Ito, S. Miura, J. D. P. Moore, Y. Ohta, T. Iinuma, 2022, Along-Arc Heterogeneous Rheology Inferred from Postseismic deformation of the 2011 Tohoku-oki Earthquake, Geophys. J. Int., 230, 202-215 doi: 10.1093/gji/ggac063
28 Erika Tanaka,Kazutaka Yasukawa,Kentaro Nakamura,Junichiro Ohta,Takashi Miyazaki,Bogdan Stefanov Vaglarov,Shiki Machida,Koichiro Fujinaga,Hikaru Iwamori,Yasuhiro Kato, 2022, Secular Variations in Provenance of Sedimentary Components in the Western North Pacific Ocean Constrained by Sr Isotopic Features of Deep-Sea Sediments, Geochemistry, Geophysics, Geosystems, 23 doi:10.1029/2021GC009729
29 Fan, J., D. Zhao, 2021, P wave tomography and azimuthal anisotropy of the ManilaTaiwansouthern Ryukyu region, Tectonics, 40, e2020TC006262 doi:10.1029/2020TC006262
30 Fan, J., D. Zhao, 2021, Subslab heterogeneity and giant megathrust earthquakes, Nat. Geosci., 14, 349-353 doi:10.1038/s41561-021-00728-x
31 Fujiwara, T., 2021, Seafloor Geodesy From Repeated Multibeam Bathymetric Surveys: Application to Seafloor Displacement Caused by the 2011 Tohoku-Oki Earthquake, Frontiers in Earth Science, 9, 371 doi:10.3389/feart.2021.667666
32 Fukao, Y., T. Kubota, H. Sugioka, A. Ito, T. Tonegawa, H. Shiobara, M. Yamashita, and T. Saito, 2021, Detection of "rapid" aseismic slip at the Izu-Bonin Trench, J Geophys Res Solid Earth, 126, e2021JB022132 doi:10.1029/2021JB022132
33 Fukuda, J., and K. M. Johnson, 2021, Bayesian inversion for a stress-driven model of  afterslip and viscoelastic relaxation: Method and application to postseismic deformation  following the 2011 Mw 9.0 Tohoku-Oki earthquake, Journal of Geophysical Research: Solid Earth, 126, e2020JB021620 doi:10.1029/2020JB021620
34 Fukuda, K., T. Hatano,  K. Mochizuki, 2022, Model for tectonic tremors: Enduring events, moment rate spectrum, and moment-duration scaling, Physical Review E, 105, 014124 doi:10.1103/physreve.105.014124
35 Fukui, N., Y. Chida, Z. Zhang, T. Yasuda, T.-C. Ho, A. Kennedy, N. Mori, 2022, Variations in Building-Resolving Simulations of Tsunami Inundation in a Coastal Urban Area, Journal of Waterway, Port, Coastal, and Ocean Engineering, 148(1) doi:10.1061/(asce)ww.1943-5460.0000690
36 Furumura, T. and BLN Kennett, 2021, Azimuthal Variation of Lithospheric Heterogeneity in the Northwest Pacific Inferred From Po/So Propagation Characteristics and Anomalously Large Ground Motion of Deep In-Slab Earthquakes, J. Geophys. Res.: Solid Earth, 126, 5 doi:10.1029/2021JB021717
37 Furumura, T. and T. Maeda, 2021, High-resolution source imaging based on time-reversal wave propagation simulations using assimilated dense seismic records, Geophys. J. Int., 225, 1 doi:10.1093/gji/ggaa586
38 Gresse, M., M. Uyeshima, T. Koyama, H. Hase, K. Aizawa, Y. Yamaya, Y. Morita, D. Weller, T. Rung-Arunwan, T. Kaneko, Y. Sasai, J. Zlotnicki, T. Ishido, H. Ueda, and M. Hata, 2021, Hydrothermal and Magmatic System of a Volcanic Island Inferred From Magnetotellurics, Seismicity, Self-potential, and Thermal Image: An Example of Miyakejima (Japan), J. Geophys. Res.: Solid Earth, 126(6) doi:10.1029/2021JB022034
39 Guo, Y., J. Zhuang and H. Zhang, 2021, Heterogeneity of aftershock productivity along the mainshock ruptures and its advantage in improving short-term aftershock forecast, Journal of Geophysical Research: Solid Earth, 126, e202JB020494 doi:10.1029/2020JB020494
40 Hamama, I. and M.-Y. Yamamoto, 2021, Infrasonic Earthquake Detectability Investigated in Southern Part of Japan, 2019, Sensors, 21(3), 894 doi:10.3390/s21030894
41 Hayashi, Y., 2021, The Oldest Report of a 1537 Mexico Tsunami Based on Japanese Literature Is Erroneous, Seismol. Res. Lett., 92, 3452-3459 doi:10.1785/0220200453
42 Heki, K., 2021, Chapter 21: Ionospheric Disturbances Related to Earthquakes, Ionospheric Dynamics and Applications, Geophys. Monograph, 260, edited by C. Huang, G. Lu, Y. Zhang, and L. J. Paxton, Wiley/American Geophysical Union, 511-526 doi:10.1002/9781119815617.ch21
43 Heki, K., and T. Fujimoto, 2022, Atmospheric modes excited by the 2021 August eruption of the Fukutoku-Okanoba volcano, Izu-Bonin Arc, observed as harmonic TEC oscillations by QZSS, Earth Planets Space, 74, 27 doi:10.1186/s40623-022-01587-5
44 Hirauchi, K., I. Segawa, Y. Kouketsu, Y. Harigane, Y. Ohara, J. Snow, A. Sen, M. Fujii, and K. Okino , 2021, Alteration processes recorded by back-arc mantle peridotites from oceanic core complexes, Shikoku Basin, Philippine Sea, Island Arc,30, e12419 doi:10.1111/iar.12419
45 Hirauchi, K., Y. Nagata, K. Kataoka, R. Oyanagi, A. Okamoto, and K. Michibayashi, 2021, Cataclastic and crystal-plastic deformation in shallow mantle-wedge serpentinite controlled by cyclic changes in pore fluid pressures, Earth Planet. Sci. Lett., 576, 117232 doi:10.1016/j.epsl.2021.117232
46 Hirose, F., K. Maeda, and O. Kamigaichi, 2022, Efficiency of earthquake forecast models based on earth tidal correlation with background seismicity along the Tonga-Kermadec trench, Earth, Planets and Space, 74, 10 doi:10.1186/s40623-021-01564-4
47 Hirose, F., K. Tamaribuchi, and K. Maeda, 2021, Characteristics of Foreshocks Revealed by an Earthquake Forecasting Method Based on Precursory Swarm Activity, J. Geophys. Res.: Solid Earth, 126, e2021JB021673 doi:10.1029/2021JB021673
48 Ho, T.-C., K. Satake, S. Watada, M.-C. Hsieh, R.Y. Chuang, Y. Aoki, I. E. Mulia, A. R. Gusman, and C.-H. Lu, 2021, Tsunami induced by the strike-slip Fault of the 2018 Palu earthquake (Mw=7.5), Sulawesi Island, Indonesia, Earth Planets Space, 8, e2020EA001400 doi:10.1029/2020EA001400
49 Hotta, K. and M. Iguchi, 2021, Tilt and strain change during the explosion at Minami-dake, Sakurajima, on November 13, 2017, Earth Planets Space, 73, 70 doi:10.1186/s40623-021-01392-6
50 Hotta, K., S. Kusumoto, H. Takahashi, Y.S. Hayakawa, 2022, Deformation source revealed from leveling survey in Jigokudani valley, Tateyama volcano, Japan, Earth, Planets and Space, 74, 32 doi:10.1186/s40623-022-01593-7
51 Hsu Y.-J., H. Kao, R. Burgmann, Y.-T. Lee, H.-H. Huang, Y.-F. Hsu, Y.-M. Wu, and J. Zhuang, 2021, Synchronized and Asynchronous Modulation of Seismicity by Hydrological Loading: A Case Study in Taiwan, Science Adavances, 7, eabf7282 doi:10.1126/sciadv.abf7282
52 Huang, P., R. L. Sulzbach, Y. Tanaka,V. Klemann, H. Dobslaw, Z. Martinec, M. Thomas, 2021, Anelasticity and lateral heterogeneities in Earth's upper mantle: impact on surface displacement, self-attraction and loading and ocean dynamics, J. Geophys. Res.: Solid Earth, 126, e2021JB022332 doi:10.1029/2021JB022332
53 Huang, Y., H. Guo, T. Nakatani, K. Uesugi, M. Nakamura, and H. Keppler, 2021, Electrical conductivity in texturally equilibrated fluid-bearing forsterite aggregates at 800°C and 1 GPa: Implications for the high electrical conductivity anomalies in mantle wedges, J. Geophys. Res. Solid Earth, 126, e2020JB021343 doi:10.1029/2020JB021343
54 Ichiki, M., T. Kaida, T. Nakayama, S. Miura, M. Yamamoto, Y. Morita, and M. Uyeshima, 2021, Magma reservoir beneath Azumayama Volcano, NE Japan, as inferred from a three-dimensional electrical resistivity model explored by means of magnetotelluric method, Earth Planets Space, 73, 150 doi: 10.1186/s40623-021-01451-y
55 Ide, S., 2021, Empirical Low-Frequency Earthquakes Synthesized From Tectonic Tremor Records, Journal of Geophysical Research Solid Earth, 126, e2021JB022498 doi:10.1029/2021JB022498
56 Igarashi, T. and A. Kato, 2021, Evolution of aseismic slip rate along plate boundary faults before and after megathrust earthquakes, Commun. Earth Environ., 2, 1, 1-7 doi:10.1038/s43247-021-00127-5
57 Iio, Y., S. Matsumoto, Y. Yamashita, S. Sakai, K. Tomisaka, M. Sawada, T. Iidaka, T. Iwasaki, M. Kamizono, H. Katao, A. Kato, E. Kurashimo, Y. Teguri, H. Tsuda, T. Ueno, 2021, Stress relaxation arrested the mainshock rupture of the 2016 Central Tottori earthquake, Commun Earth Environ, 2, 156 doi:10.1038/s43247-021-00231-6
58 Ikegaya, T. and M. Yamamoto, 2021, Spatio-temporal characteristics and focal mechanisms of deep low-frequency earthquakes beneath the Zao volcano, northeastern Japan, J. Volcanol. Geotherm. Res., 417,  doi:10.1016/j.jvolgeores.2021.107321
59 Inoue, T., Y. Ito, L. M. Wallace, Y. Yoshikawa, D. Inazu, E. S. M. Garcia, T. Muramoto, S. C. Webb, K. Ohta, S. Suzuki, and R. Hino, 2021, Water depth dependence of longrange correlation in nontidal variations in seafloor pressure, Geophys. Res. Lett., 48(8), e2020GL092173 doi:10.1029/2020GL092173
60 Ishizu, K., Y. Ogawa, K. Nunohara, N. Tsuchiya, M. Ichiki, H. Hase, W. Kanda, S. Sakanaka, Y. Honkura, Y. Hino, K. Seki, H. T. Kuo, Y. Yamaya, T. Mogi, 2022, Estimation of spatial distribution and fluid fraction of a potential supercritical geothermal reservoir by magnetotelluric data: a case study from Yuzawa geothermal field, NE Japan, J. Geophys. Res. Solid Earth, 127, e2021JB022911 doi: 10.1029/2021JB022911
61 Ishizu, K., Y. Ogawa, T. Mogi, Y. Yamaya and T. Uchida, 2021, Ability of the magnetotelluric method to image a deep conductor: Exploration of a supercritical geothermal system, Geothermics, 96, 102205 doi:10.1016/j.geothermics.2021.102205
62 Isse, T., D. Suetsugu, A. Ishikawa, H. Shiobara, H. Sugioka, A. Ito, Y. Kawano, K. Yoshizawa, Y. Ishihara, S. Tanaka, M. Obayashi, T. Tonegawa, and J. Yoshimitsu, 2021, Seismic evidence for a thermochemical mantle plume underplating the lithosphere of the Ontong Java Plateau, Commun Earth Environ, 2, 98 doi:10.1038/s43247-021-00169-9
63 Iwamori, H, K. Ueki, T. Hoshide, H. Sakuma, M. Ichiki, T. Watanabe, M. Nakamura, H. Nakamura, T. Nishizawa, A. Nakao, Y. Ogawa, T. Kuwatani, K. Nagata, T. Okada, and E. Takahashi, 2021, Simultaneous analysis of seismic velocity and electrical conductivity in the crust and the uppermost mantle: A forward model and inversion based on grid search, J. Geophys. Res. Solid Earth, 126, e2021JB022307 doi:10.1029/2021JB022307
64 Jamali Hondori, E., C. Guo, H. Mikada, and J.-O. Park, 2021, Full-waveform inversion for imaging faulted structures: A case study from the Japan Trench forearc slope, Pure Appl. Geophys., 178, 1609-1630 doi:10.1007/s00024-021-02727-w
65 Jiang, G., G. Zhang, D. Zhao, Q. Lu, D. Shi, H. Li, and X. Li, 2021, Mantle flow and dynamics beneath central-east China: New insights from P-wave anisotropic tomography, J. Geophys. Res.: Solid Earth, 126, e2020JB020070 doi:10.1029/2020JB020070
66 Kagawa, T., 2021, Application of Modified PLUM Method to Dense Seismic Intensity Network of a Local Government in Japan - Case Study on Tottori Prefecture -, Frontiers in Earth Science, section Solid Earth Geophysics, The New Frontiers of Earthquake Early Warning Systems doi:10.3389/feart.2021.672613
67 Kameda, J., and A. Okamoto, 2021, Generation of oxidising fluids by comminution of fault rocks, Geochem. Perspect. Lett., 19, 32-35 doi:10.7185/geochemlet.2131
68 Kametani, N., Y. Ishizaki, M. Yoshimoto, F. Maeno, A. Terada, R. Furukawa, R. Honda, Y. Ishizuka, J. Komori, M. Nagai, S. Takarada, 2021, Total mass estimate of the January 23, 2018, phreatic eruption of Kusatsu-Shirane Volcano, central Japan, Earth Planets Space, 73, 141 doi:10.1186/s40623-021-01468-3
69 Kamigaichi, O., N. Matsumoto, and  F. Hirose, 2021, Green's function at depth of borehole observation required for precise estimation of the effect of ocean tidal loading near coasts, Geophysical Journal International, 227, 275-286 doi:10.1093/gji/ggab216
70 Kanamatsu, T., K. Ikehara, K.-H. Hsiung, , 2022, Stratigraphy of deep-sea marine sediment using paleomagnetic secular variation: Refined dating of turbidite relating to giant earthquake in Japan Trench, Marine Geology, 443, 106669 doi:10.1016/j.margeo.2021.106669
71 Kaneko, T., F. Maeno, M. Ichihara,  A. Yasuda, T. Ohminato,  K. Nogami, S. Nakada, Y. Honda, H. Murakami, 2022, Episode 4 (2019–2020) Nishinoshima activity: Abrupt transitions in the eruptive style observed by image datasets from multiple satellites, Earth, Planets and Space, 74, 34 doi:10.1186/s40623-022-01578-6
72 Kano, M., A. Ikeuchi, T. Nishimura, S. Miyazaki, and T. Matsushima, 2021, 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
73 Kato, A. and Y. Ben-Zion, 2021, The generation of large earthquakes, Nature Reviews Earth & Environment, 2, 26–39 doi:10.1038/s43017-020-00108-w
74 Katori, T., N. Shigematsu, J. Kameda, A. Miyakawa, R. Matsumura, 2021, 3D fault-zone architecture across the brittle–plastic transition along the Median Tectonic Line, SW Japan: Fault-rock characterization, Journal of Structural Geology, Elsevier Ltd., 153, 104446 doi:10.1016/j.jsg.2021.104446
75 Katsumata, K. and J. Zhuang, 2020, A New Method for Imaging Seismic Quiescence and Its Application to the Mw=8.3 Kurile Islands Earthquake on 15 November 2006, Pure Appl. Geophys., 177, 3619-3630 doi:10.1007/s00024-020-02498-w
76 Katsumata, K. and M. Nakatani, 2021, Testing the seismic quiescence hypothesis through retrospective trials of alarm-based earthquake prediction in the Kurile-Japan subduction zone, Earth Planets Space, 73, 100 doi:10.1186/s40623-021-01418-z
77 Kimura, M., N. Kame, S. Watada, A. Araya, T. Kunugi, and R. Wang, 2021, Determination of the source parameters of the 2011 Tohoku-Oki earthquake from three-component pre-P gravity signals recorded by dense arrays in Japan, Earth Planets Space, 73, 223 doi:10.1186/s40623-021-01553-7
78 Kobayashi, T., and T. Sato, 2021, Estimating effective normal stress during slow slip events from slip velocities and shear stress variations, Geophys. Res. Lett., 48(20), e2021GL095690 doi:10.1029/2021GL095690
79 Kodera, Y., N. Hayashimoto, K. Tamaribuchi, K. Noguchi, K. Moriwaki, R. Takahashi, M. Morimoto, K. Okamoto, and M. Hoshiba, 2021, Developments of the nationwide earthquake early warning system in Japan after the 2011 Mw9.0 Tohoku-Oki earthquake, Front. Earth Sci., 9, 726045 doi:10.3389/feart.2021.726045
80 Kortink, M., A. Yates, M. Savage, W. Wang, T. Okada, S. Matsumoto, Y. Iio, K. Jacobs, 2021, Velocity changes around the Kaikōura earthquake ruptures from ambient noise cross-correlations, Geophysical Journal International, 229, 1357-1371 doi:10.1093/gji/ggab514
81 Koyama, T., W. Kanda, M. Utsugi, T. Kaneko, T. Ohminato, A. Watanabe, H. Tsuji, T. Nishimoto, A. Kuvshinov, and Y. Honda, 2021, Aeromagnetic survey in Kusatsu-Shirane volcano, central Japan, by using an unmanned helicopter, Earth Planets Space, 73, 139 doi:10.1186/s40623-021-01466-5
82 Kubota, T., H. Kubo, K. Yoshida, N. Y. Chikasada, W. Suzuki, T. Nakamura, and H. Tsushima, 2021, Improving the constraint on the Mw 7.1 2016 off-Fukushima shallow normal-faulting earthquake with the high azimuthal coverage tsunami data from the S-net wide and dense network: Implication for the stress regime in the Tohoku overriding plate, J. Geophys. Res, 126, e2021JB022223 doi:10.1029/2021JB022223
83 Kubota, T., T. Saito, H. Tsushima, R. Hino, Y. Ohta, S. Suzuki, and D. Inazu, 2021, Extracting near-field seismograms from ocean-bottom pressure gauge inside the focal area: application to the 2011 Mw 9.1 Tohoku-Oki earthquake, Geophys. Res. Lett., 48, e2020GL091664 doi:10.1029/2020GL091664
84 Kubota, T., T. Saito, Y. Fukao, H. Sugioka, A. Ito, T. Tonegawa, H. Shiobara, and M. Yamashita, 2021, Earthquake rupture and tsunami generation of the 2015 Mw 5.9 Bonin event revealed by in situ pressure gauge array observations and integrated seismic and tsunami wave simulation, Geophys. Res. Lett., 48, e2021GL095915 doi:10.1029/2021GL095915
85 Kundu, S., A. Opris, Y. Yukutake, and T. Hatano, 2021, Extracting Correlations in Earthquake Time Series Using Visibility Graph Analysis, Front. Phys., 9, 656310 doi:10.3389/fphy.2021.656310
86 Kurashimo, E., T. Iwasaki, N. Tsumura, and T. Iidaka, 2021, The Role of Fluid-Related Heterogeneous Structures in Controlling the Fault Slip Behavior in the Slow-Earthquake Source Region Along the Nankai Subduction Zone, Southwest Japan, Geophys. Res. Lett., 48(4), e2020GL089882 doi:10.1029/2020GL089882
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267 亀谷伸子・石崎泰男・勝岡菜々子・吉本充宏・寺田暁彦, 2021, 草津白根火山,白根火砕丘群南麓の白根南火口列と弓池マールの噴火様式と活動年代, 火山, 66, 1-20 doi:10.18940/kazan.66.1_1
268 木口努・今西和俊・松本則夫, 2021, 岐阜県東部の活断層周辺における地殻活動観測結果(202011月~20214), 地震予知連絡会報, 106, 330-331 link
269 木口努・今西和俊・松本則夫, 2022, 岐阜県東部の活断層周辺における地殻活動観測結果(20215月~202110), 地震予知連絡会報, 107, 276-277 link
270 木口努・桑原保人, 2021, 産総研地下水等総合観測井における透水性評価のための孔井内測定手法の適用事例:主に測定時の制約に対応するために, 地質調査総合センター研究資料集, 726, 1-32 link
271 木口努・松本則夫・北川有一・板場智史・落唯史・佐藤努・矢部優, 2021, 東海・関東・伊豆地域における地下水等観測結果(202011月~20214)(63), 地震予知連絡会報, 106, 323-329 link
272 木口努・松本則夫・北川有一・板場智史・落唯史・佐藤努・矢部優, 2022, 東海・関東・伊豆地域における地下水等観測結果(20215月~202110)(64), 地震予知連絡会報, 107, 269-275 link
273 気象研究所, 2021, 全国GNSS観測点のプレート沈み込み方向の位置変化, 地震予知連絡会会報, 105, 37-41 link
274 気象研究所, 2021, 内陸部の地震空白域における地殻変動連続観測, 地震予知連絡会会報, 105, 378-381 link
275 気象研究所, 2021, 南海トラフ沿いの長期的スロースリップの客観検知, 地震予知連絡会会報, 105, 373-377 link
276 気象庁, , 地震・火山月報(防災編)2021年3月号~2022年2月号  
277 気象庁, , 地震月報(カタログ編)20201月~20208  
278 気象庁, , 令和3年(2021年)の火山活動(各火山)  
279 気象庁地磁気観測所,気象庁地震火山部,東京大学地震研究所, 2021, 伊豆大島における地磁気全磁力変化, 148回火山噴火予知連絡会資料  
280 気象庁地磁気観測所・気象庁地震火山部・東京大学地震研究所, 2021, 伊豆大島における地磁気全磁力変化, 火山噴火予知連絡会資料, 148  
281 北川有一・板場智史・松本則夫・落唯史・木口努, 2021, 紀伊半島~四国の歪・傾斜・地下水観測結果(202011月~20214月), 地震予知連絡会報, 106, 440-450 link
282 北川有一・板場智史・松本則夫・落唯史・木口努, 2022, 紀伊半島~四国の歪・傾斜・地下水観測結果(20215月~202110月), 地震予知連絡会報, 107, 402-412 link
283 北川有一・松本則夫・佐藤努・板場智史・落唯史・木口努・矢部優, 2021, 近畿地域の地下水位・歪観測結果(202011月~20214月), 地震予知連絡会報, 106, 451-454 link
284 北川有一・松本則夫・佐藤努・板場智史・落唯史・木口努・矢部優, 2022, 近畿地域の地下水位・歪観測結果(20215月~202110), 地震予知連絡会報, 107, 413-416 link
285 木村武志, 2021, 西南日本における短期的スロースリップイベント(202011月~20214), 地震予知連絡会会報, 106, 484-487 link
286 木村武志, 2022, 西南日本における短期的スロースリップイベント (20215月~202110), 地震予知連絡会会報, 107, 441-446 link
287 京都文化博物館(編), 2021, 『伝える災害の記憶あいおいニッセイ同和損保所蔵災害資料』, NHKサービスセンター, 183p  
288 草野有紀・及川輝樹・石塚吉浩, 2021, 日光白根火山1649年噴火の復元, 火山, 66, 327-346 doi:10.18940/kazan.66.4_327
289 楠城一嘉, 2021, b値にもとづく大地震発生予測のモデルのレビュー, 地震予知連絡会会報, 105, 489-492 link
290 久保田達矢・近貞直孝・鈴木亘・中村武史, 2022, 2021729日アラスカ沖で発生した地震による津波の観測記録, 地震予知連絡会会報, 107, 508-509 link
291 国土地理院, , 日本列島の地殻変動, https://www.gsi.go.jp/kanshi/index.html  
292 国土地理院, 2021, 伊豆地方の地殻変動, 地震予知連絡会会報, 106, 210-225 link
293 国土地理院, 2021, 中国・四国地方の地殻変動, 地震予知連絡会会報, 106, 468-483 link
294 国土地理院, 2021, 東海地方の地殻変動, 地震予知連絡会会報, 106, 226-255 link
295 牛腸 正則, 2021, Deconvolution ISTAを用いたSARのスパース再構成と高分解能化, 電子情報通信学会技術研究報告, Vol.121, No.191, p.116-121 link
296 牛腸 正則, 2021, アンテナパターンと距離減衰を考慮した合成開口レーダの波数領域, 電子情報通信学会技術研究報告, Vol.121, No.127, p.1-6 link
297 後藤秀昭, 2021, 1:25,000活断層図 小郡断層とその周辺「宇部東部」解説書, 国土地理院技術資料D1-No.1049, 15 link
298 小山崇夫・金子隆之・大湊隆雄・渡邉篤志・柳澤孝寿・本多嘉明, 2021, 自律型無人ヘリコプターを用いた火山空中磁気測量, 物理探査, 74, 115-122 doi:10.3124/segj.74.115
299 五月女和宏、中村友紀子, 2022, 建物周期分布を考慮した地震応答解析に基づくRC 造建物の被害率関数の構築, 2021 年度日本建築学会関東支部研究報告集  
300 阪本真由美・中道治久・高橋若菜・荒島千鶴・荒木田勝, 2021, 欧州の越境火山災害をめぐるガバナンスの萌芽ー2010年アイスランド火山噴火を契機としてー, 自然災害科学, 40,1, 51-66 doi:10.24762/jndsj.40.1_51
301 澤崎郁, 2021, 2021213日福島県沖の地震による高周波エネルギー輻射量, 地震予知連絡会会報, 106, 165-168 link
302 澤崎郁, 2021, 2021320日宮城県沖の地震による高周波エネルギー輻射量, 地震予知連絡会会報, 106, 174-177 link
303 澤崎郁, 2022, 2021107日千葉県北西部の地震による高周波エネルギー輻射量, 地震予知連絡会会報, 107, 173-176 link
304 塩崎大輔・橋本雄一, 2021, ニセコひらふ地区におけるリゾート開発と土砂災害リスク, 地理学論集, 96(1), 1-6 doi:10.7886/hgs.96.1
305 塩﨑大輔・橋本雄一, 2021, 観光地におけるVR疑似避難訓練システムを用いた避難行動分析, 地理情報システム学会講演論文集, 30, B31-2-3 link
306 塩原肇・太田豊宣, 2021, ─高機能海底地震計開発試験に向けた─深海用加速度データロガーの開発, 東京大学地震研究所技術研究報告, 27, 14-19 link
307 汐見勝彦, 2021, 東北地方太平洋沖における最近の地震活動, 地震予知連絡会会報, 106, 543-547 link
308 篠原雅尚・山田知朗・悪原岳・望月公廣・酒井慎一, 2021, 分散型音響センシング計測と三陸沖海底光ケーブル観測システムによる地震観測, 月刊地球, 44, 37-43  
309 杉下七海、常松佳恵、伴雅雄、佐々木寿, 2022, 蔵王火山1895 年噴火における投出岩塊の噴出条件の推定, 火山, 67(1), 77-89 doi:10.18940/kazan.67.1_77
310 杉戸信彦, 2021, 1:25,000活断層図 頓宮断層とその周辺「平松」解説書, 国土地理院技術資料D1-No.1045, 12 link
311 鈴木琳大郎, 2023, Snetと深層学習を用いた東北日本太平洋沖の微小地震の検出, 東北大学修士論文  
312 関口渉次, 2021, 南海トラフ周辺における最近の傾斜変動(202011月~20214), 地震予知連絡会会報, 106, 411-427 link
313 関口渉次, 2022, 南海トラフ周辺における最近の傾斜変動(20215月〜202110月), 地震予知連絡会会報, 107, 372-388 link
314 関晋, 丹原裕, 山村卓也, 佐々木康気, 松浦茂郎, 越谷英樹, 近江克也, 近澤心, 若生勝, 岡田純, 碓井勇二, 2021, 2018年から2019年にかけての吾妻山の火山活動, 験震時報(論文), 85, 1-35 link
315 関谷直也, 2021, 『災害情報――東日本大震災から次の大規模災害への教訓』, 東京大学出版会  
316 副島庸平・廣瀬仁, 2021, 紀伊半島北部における短期的スロースリップイベントのすべり領域の傾斜データによる制約 -すべり領域と微動発生領域の空間的比較-, 神戸大学都市安全研究センター研究報告, 25, 9-21 link
317 大邑潤三, 2021, GISのジオリファレンス機能を用いた近世村絵図の分析富士山宝永噴火からの復興を事例として―, 西洋史学, 271, 73-76  
318 大邑潤三, 2021, 同和火災コレクション成立の背景とその来歴, 京都文化博物館()「伝える災害の記憶あいおいニッセイ同和損保所蔵災害資料」,NHK サービスセンター, 132-141  
319 高橋誠, 2021, 災害の地理学に求められること, 地理, 669, 54-60  
320 高橋誠, 2021, 東海地方の都市と農村をめぐる地域的人口分布とその変動(試論), 砺波散村地域研究書研究紀要, 37, 1-10  
321 宝田晋治・J. Bandibas, 2021, 東・東南アジアの地質情報総合データベースの構築 -CCOP地質情報総合共有プロジェクト, 号外地球, 70, 108-113  
322 宝田晋治・西原 歩・星住英夫・山崎 雅・金田泰明・下司信夫, 2022, 姶良カルデラ入戸火砕流堆積物分布図, 大規模火砕流分布図, 産総研地質調査総合センター, 1, 1-32 link
323 田中重好, 2021, コロナ禍への社会学からの問い, 東北社会学会『社会学研究』, 106, 57-80  
324 丹原裕, 若生勝, 堀内慎太郎, 関晋, 大石雅之, 宮川祐司, 近澤心, 岡田純, 碓井勇二, 2022, 気象庁観測データによる吾妻山の火山活動のレビュー(1965 年~2019 年), 験震時報(論文), 85, 1-18 link
325 堤 浩之, 2021, 1:25,000活断層図 木津川断層帯とその周辺「上野」解説書, 国土地理院技術資料D1-No.1046, 8 link
326 東京工業大学, 2021, 草津白根山(湖水 Cl 濃度の時間変動予測モデル), 148回火山噴火予知連絡会資料(20216月), その1の1, 21-22  
327 東京工業大学, 2021, 草津白根山(湖水 Cl 濃度の時系列解析), 149回火山噴火予知連絡会資料(202112月), その3の3の1, 40  
328 東京工業大学, 2021, 草津白根山(草津白根火山・湯釜火口湖の水温変動), 149回火山噴火予知連絡会資料(202112月), その3の3の1, 39  
329 東京工業大学, 2021, 草津白根山(草津白根山周辺の地磁気変化), 148回火山噴火予知連絡会資料(20216月), その1の1, 23-24  
330 東京工業大学, 2021, 草津白根山(草津白根山周辺の地磁気変化), 149回火山噴火予知連絡会資料(202112月), その3の3の1, 41  
331 東京工業大学, 2021a, 湖水 Cl 濃度の時系列解析, 火山噴火予知連絡会資料, 149  
332 東京工業大学, 2021b, ⼋ヶ岳に対する草津周辺の地磁気変化(20115⽉202110⽉, 火山噴火予知連絡会資料, 149  
333 東京大学地震研究所, 2021, , 148回火山噴火予知連絡会資料, その3の4, 13-14  
334 東京大学地震研究所, 2021, 伊豆大島三原山の見掛け比抵抗変化, 147回火山噴火予知連絡会資料  
335 東京大学地震研究所, 2021, 伊豆大島全磁力, 147回火山噴火予知連絡会資料  
336 東京大学地震研究所, 2021a, 伊豆大島全磁力, 火山噴火予知連絡会資料, 148  
337 東京大学地震研究所, 2021b, 伊豆大島三原山の見掛け比抵抗変化, 火山噴火予知連絡会資料, 148  
338 長尾優樹・岡田里奈・梅田浩司・鎌滝孝信, 2022, 1804年象潟地震による津波堆積物の堆積構造, 東北地域災害科学研究, 58, 69-74 link
339 中島研吾・古村孝志・鶴岡弘・松葉浩也・坂口吉生・住元真司・笠井良浩・池田輝彦・八代尚・荒川隆・塙敏博, 2021, 観測データ同化による長周期地震動リアルタイム予測へ向けた試み, 情報処理学会研究報告ハイパーフォーマンスコンピューティング, 8, 1-11 link
340 中谷正生, 2021, 階層的アスぺリティを前提とした短期前兆のメカニズムについて, 地震予知連絡会会報, 105, 500-504 link
341 中野元太・矢守克也・クラウ, L., 2022, 防災ナッジの概念整理~Nudge or Judge? それが問題だ~ , 自然災害科学, 141, 41-1 link
342 中道治久, 2021, 第12章災害と住まい 火山, 日本家政学会(編)「住まいの百科事典」, 丸善出版 , 482-483  
343 中道治久, 2022, 4章 火山災害 地殻変動, 日本自然災害学会(編)「自然災害科学・防災の百科事典」,丸善出版, , 166-167  
344 中道治久, 2022, 4章 火山災害 噴火のメカニズム, 日本自然災害学会(編)「自然災害科学・防災の百科事典」,丸善出版 , 154-155  
345 西澤あずさ, 2022, 20218月茨城県沖の震源分布, 地震予知連絡会会報, 107, 171-172 link
346 西澤あずさ・植平賢司・望月将志, 2022, マルチチャネル反射法地震探査から推定されたS-net観測点下の堆積層分布及び堆積層補正を用いた震源決定例, 防災科学技術研究所研究資料, 471, 1-18 doi/10.24732/NIED.00003448
347 根本和秀・小島春奈・吉野千恵・金子柊・北出明嗣・服部克巳・茂木透・小西敏春, 2021, 地表面付近の地中ラドンフラックス変動について:強い降水の影響, Journal of Atmospheric Electricity, 40(1), 37-41 doi:10.1541/jae.40.37
348 野村俊一・田中昌之, 2021, 余震誘発効果を考慮した繰り返し地震の予測, 統計数理, 69, 2 link
349 橋本 雄一, 2021, 国土数値情報を利用したハザードマップ作成, 地理空間情報を活かす授業のためのGIS教材 改訂版 (古今書院), 89-9489-94  
350 橋本武志, 2022, 火山の活動不安定評価における熱消磁現象の活用と噴火予測の可能性, 地学雑誌, 130, 771 doi:10.5026/jgeography.130.771
351 橋本雄一, 2021, 北海道太平洋沿岸における 津波浸水想定域の空間分析, 北海道大学文学研究院紀要, 165, 129-166 doi:10.14943/bfhhs.165.l129
352 林豊, 2021, 断層モデルパラメータに対する津波高の感度測定:2016年福島県沖の地震を基準としたケーススタディ, 土木学会論文集, B2-77(2), I_187-I_192 doi:10.2208/kaigan.77.2_I_187
353 原 直史, 2021, 文政十一年災害史料の流布をめぐってシーボルト台風と三条地震を中心に―, 災害・復興と資料, 13, 8-13  
354 原 直史, 2021, 文政十一年大地震にて破損村々取調帳控, 佐渡・越後文化交流史研究, 21, 25-29  
355 原田和彦, 2021, 『大地震一件』からみた一八四七年善光寺地震の被害分布, 災害・復興と資料, 13, 14-26  
356 深田 秀実・橋本 雄一, 2021, マルチ・エージェント シミュレーションによる 津波避難ビルへの避難行動分析北海道釧路市中心市街地を事例として―, 地理学論集, 96(2), 7-18 doi:10.7886/hgs.96.7
357 福井信気, 森信人, 千田優, 安田誠宏, 2021, 都市地形を対象とした津波浸水時の陸域の流速場の比較検討, 土木学会論文集B2(海岸工学), 77(2), I_211-I_216 doi:10.2208/kaigan.77.2_I_211
358 福澤暁人, 池田芳樹, 倉田真宏, 2021, 建物の基部と上部および周辺地表の地震記録から同定した振動モード特性に基づく地盤と鉄筋コンクリート造建物の動的相互作用の評価, 構造工学論文集, 67B, 483-494 link
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360 藤原寛・山﨑誠子・永塚弘樹, 2021, SPTを用いた重液分離の一例:K-Ar年代測定のための火山岩石基試料の分離, 地質学雑誌, 127, 727-732 doi:10.5575/geosoc.2021.0032
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362 北海道大学, 2021, 十勝岳(地磁気全磁力), 148回火山噴火予知連絡会資料(20216月), その2の8, 8  
363 北海道大学, 2021, 十勝岳(地磁気全磁力), 149回火山噴火予知連絡会資料(202112月), その3の1, 35  
364 北海道大学, 2021, 十勝岳(二酸化硫黄放出率), 148回火山噴火予知連絡会資料(20216月), その2の8, 7  
365 堀 健彦, 2021, 「津波之由来」所載絵図にみる1854年南海地震津波被害の空間的表現, 災害・復興と資料, 13, 30-40  
366 松澤孝紀, 2022, 南海トラフ周辺におけるスロースリップイベントと地震発生準備過程の数値モデリング:近年の観測研究を踏まえて, 地震予知連絡会会報, 107, 522-524 link
367 松澤孝紀・田中佐千子・小原一成, 2021, 西南日本における深部低周波微動活動(202011月~20214), 地震予知連絡会会報, 106, 463-467 link
368 松澤孝紀・田中佐千子・小原一成, 2022, 西南日本における深部低周波微動活動 (20215月~202110), 地震予知連絡会会報, 107, 417-722 link
369 松澤暢・吉田圭祐・内田直希, 2021, 20213月(M6.9)と5月(M6.8)の宮城県沖の地震について, 地震予知連絡会会報, 106, 181-182 link
370 松多信尚, 2021, 1:25,000活断層図 糸魚川ー静岡構造線断層帯及び境峠・神谷断層帯とその周辺「諏訪 改訂版」解説書, 国土地理院技術資料D1-No.1050, , 22 link
371 松野有希・小菅正裕・前田拓人, 2021, 北海道雌阿寒岳における深部・浅部低周波地震活動, 東北地域災害科学研究, 57, 109-114 link
372 松原誠, 2021, 海域観測網を含めた三次元地震波速度構造により再決定した2021213日福島県沖の地震の震源分布, 地震予知連絡会会報, 106, 171-173 link
373 水野嶺, 2021, 年代記にみる中世南九州の災害-災害研究における年代記試論-, 國學院雑誌, 122  
374 南裕介, 中川光弘, 佐藤鋭一, 和田恵治, 石塚吉浩, 2021, 雌阿寒岳火山ポンマチネシリにおける過去1000年間の火山活動史, 火山, 66, 211-227 doi:10.18940/kazan.66.3_211
375 宮縁育夫・飯塚義之・遠入楓大・大倉敬宏, 2021, 阿蘇火山中岳第1火口における20192020年マグマ噴火の先駆活動-201953日~5日噴火を含む火山活動の特徴-, 火山, 66-3, 157-169 doi:10.18940/kazan.66.3_157
376 宮下卓也, 倉田一輝, 安田誠宏, 森信人, 志村智也, 2021, 確率津波モデルを用いた南海トラフ巨大地震による津波高の不確実性評価, 土木学会論文集B2(海岸工学), 77(2), I_181-I_186 doi:10.2208/kaigan.77.2_I_181
377 村田泰輔, 2021, 災害痕跡データベースの構築・公開に向けて~考古学の新たな挑戦, 地域防災, 36, 4-9 link
378 村田泰輔, 2021, 藤原宮下層運河SD1901Aの層序, 奈文研論叢, 2, 151-159  
379 村田泰輔, 2021, 歴史災害痕跡データベースの構築とその有効性, 考古学研究, 68-3, 16-19  
380 村松弘規・太田雄策, 2021, リアルタイム GNSS 解析による地震像の即時把握, 地震予知連絡会会報, 106, 580-582 link
381 村松弘規・髙松直史・阿部聡・古屋智秋・加藤知瑛・大野圭太郎・畑中雄樹・撹上泰亮・大橋和幸, 2021, 新しいGEONET解析ストラテジによる電子基準点日々の座標値(F5解・R5解)の公開, 国土地理院時報, 134 link
382 室井研二, 2022, 地域と事業所の防災協力はいかに可能か, NETT・ほくとう総研, 115, 22-25  
383 文部科学省研究開発局・国立研究開発法人産業技術総合研究所, 2020, 主要活断層帯から生じる連動型地震の発生予測に向けた活断層調査研究, 平成29〜令和元年度成果報告書,333  
384 文部科学省研究開発局・国立研究開発法人産業技術総合研究所, 2021, 連動型地震の発生予測のための活断層調査研究, 令和2年度成果報告書, 91  
385 安江健一, 2021, 1:25,000活断層図 大原湖断層及び地福断層とその周辺「長門峡」解説書, 国土地理院技術資料D1-No.1047, 12 link
386 安本真也・河井大介・齋藤さやか・関谷直也, 2022, 首都直下地震に関する映像による認知の変化 -パネル調査を用いたドラマ「パラレル東京」の効果分析-, 災害情報, 20(1) link
387 安本真也・関谷直也, 2022, 火山噴火に対する意識:「登山者」と首都圏住民へのアンケート調査をもとに, 東京大学大学院情報学環紀要 情報学研究・調査研究編, 38 link
388 柳田浩嗣・仲谷幸浩・八木原寛・平野舟一郎・小林励司・山下裕亮・松島健・清水洋・内田和也・馬越孝道・八木光晴・森井康宏・中東和夫・篠原雅尚,, 2022, 201511月に沖縄トラフ北部で発生した地震(M7.1)の余震活動と背弧リフティング, 地震2, 75, 29-41 doi:10.4294/zisin.2021-12
389 矢部優・落唯史・板場智史・松本則夫・北川有一・木口努・木村尚紀・木村武志・松澤孝紀・汐見勝彦, 2021, 東海・紀伊半島・四国における短期的スロースリップイベント(202011月~20214月), 地震予知連絡会報, 106, 271-322 link
390 矢部優・落唯史・板場智史・松本則夫・北川有一・木口努・木村尚紀・木村武志・松澤孝紀・汐見勝彦, 2022, 東海・紀伊半島・四国における短期的スロースリップイベント(20215月~202110月), 地震予知連絡会報, 107, 240-268 link
391 山中浩明・津野靖士・地元孝輔, 2021, 熊本地震の強震動のブラインド予測, 日本地震工学会誌, 43  
392 山名祐輝, 2021, 本震直前の地震活動, 東京大学大学院理学系研究科地球惑星科学専攻・修士論文  
393 山本有人・相澤広記・村松弾・安仁屋智・田辺暖柊・若林翌馬・藤田詩織・志藤あずさ・小山崇夫, 2021, 別府地熱地帯の比抵抗構造から推定する流体の移動経路, Conductivity Anomaly 研究会論文集, 36-37 link
394 矢守克也・飯尾能久・城下英行 , 2021, 地震学のオープンサイエンス-地震観測所のサイエンスミュージアム・プロジェクトをめぐって- , 実験社会心理学研究, 69, 82-89 doi:10.2130/jjesp.2009
395 行竹洋平・萬年一剛, 2021, 水蒸気噴火の発生場と噴火過程の観測最近の進展と今後の展望―, 地学雑誌, 130, 731-753 doi:10.5026/jgeography.130.731
396 横尾亮彦・石井杏佳, 2021, 熱赤外線カメラで撮影された JPEG ファイルの解析方法, 火山, 66-3, 229-240 doi:10.18940/kazan.66.3_229
397 横谷直人, 2021, 二次モーメントによる小中規模地震の震源過程の推定, 東京大学大学院理学系研究科地球惑星科学専攻・修士論文  
398 横田裕輔, 2021, GNSS-A海底地殻変動観測による南海トラフ海底下のプレート間固着の検出およびその高感度化に基づく浅部スロースリップイベントの発見, 測地学会誌, 67, 1-17 doi:10.11366/sokuchi.67.1
399 吉田圭佑, 2021, 地殻深部から上昇する流体が地震の発生に及ぼす影響の研究 —2011年東北地方太平洋沖地震に誘発された地震活動による拘束—, 地震2, 74, 95-116 doi:10.4294/zisin.2020-20
400 吉村俊平, 2021, 火山ガラス中のH2OCO2の赤外分光分析, 火山, 66, 375-384 doi:10.18940/kazan.66.4_375
401 吉本充宏, 2021, 富士山の噴火への課題将来の噴火に備えてー, 建設工業調査会ベース設計資料, 189, 2125 link
402 若林環・風間卓仁, 2021, 京都大学~比叡山頂間の高頻度キャンペーン重力データから推定された可搬型相対重力計の相対スケールファクター, 北海道大学地球物理学研究報告, 84, 11-20 doi:10.14943/gbhu.84.11
403 渡邉俊一, 2021, 海洋情報部における2011年から2020年にかけてのGNSS-A海底地殻変動観測の発展と成果, 海洋情報部研究報告, 59, 95-114 link