PUBLICATIONS

Google Scholar Citations [Link]

ResearchGate [Link]

Researchmap [Link]

[Under Review]

  1. Heidarzadeh, M. T. Ishibe, A. R. Gusman, H. Miyazaki, Field surveys of tsunami runup and damage following the January 2024 Mw 7.5 Noto (Japan Sea) tsunamigenic earthquake, Ocean Engineering.
  2. Thystere Matondo Bantidi, Bogdan Enescu, Georges Mavonga Tuluka, Takeo Ishibe, Estimating spatio-temporal variable parameters of Epidemic Type Aftershock Sequence model in a region with limited seismic network coverage: a case study of the East African Rift System, Geophys. J. Int.
  3. Chiba, T., T. Ishibe, K. Satake, K. Shimazaki, T. Sugai, T. Harada, K. Imai, Y. Namegaya, and T. Ueno, Late Holocene coastal environment changes and tsunami deposits associated with Kanto earthquakes at Ena Bay, Miura Peninsula, Japan, The Holocene.

[Peer-reviewed Research Papers]

  1. Ishibe, T., T. Terakawa, A. Hashima, M. Mochizuki, R.S. Matsu'ura, 2024, Can the Regional 3D Stress Field according to the Wallace-Bott Hypothesis predict fault slip directions of future large earthquakes? Earth Planets and Space, 76:26, https://doi.org/10.1186/s40623-023-01955-9. [Article Link]
  2. Harada, T, A. Nishiyama, and T. Ishibe, 2024, The November 4th, 1856 Kanto, Japan, Earthquake did not Occur in the Tachikawa Fault Zone −No Sever Damage in Tokorozawa, Higashi-murayama, and Tachikawa is Recorded in Contemporaneous Historical Documents in Tama/Iruma Area−, Zisin 2nd ser., 76, 251-285. [Article Link]
  3. Ishibe, T, T. (Goto) Ishibe, A. Katagiri, T. Harada, R. Nakamura, S. Murotani, and K. Satake, 2024, The 1092 high wave disaster was probably meteorological origin, Zisin 2nd ser., 76, 233-250. [Article Link]
  4. Ishibe, T., R.S. Matsu’ura, and K. Satake, 2023, Completeness of Felt Reports in Historical Documents Inferred from Randomness of Occurrence Times, Historical Earthquakes, 38.
  5. Heidarzadeh, M., H. Miyazaki, T. Ishibe, H. Takagi, R. Sabeti, 2022, Field surveys of September 2018 landslide-generated waves in the Apporo dam reservoir, Japan: combined hazard from the concurrent occurrences of a typhoon and an earthquake, Landslides, https://doi.org/10.1007/s10346-022-01959-8. [Article Link]
  6. Heidarzadeh, M., A.R. Gusman, T. Ishibe, R. Sabeti, J. Sepic, 2022, Estimating the eruption-induced water displacement source of the 15 January 2022 Tonga volcanic tsunami from tsunami spectra and numerical modelling, Ocean Engineering, 261, 112165. [Article Link]
  7. Goto, T., Y. Niwa, T. Ishibe, and K. Satake, 2022, Production of Teaching Materials Specialized for Each Region and Disaster Education to Teaching Staff -A Practical Example at a High School in Omuta City, Fukuoka Prefecture-, Journal of the Japanese Association of Safety Education, 22(1), 15-24.
  8. Murotani, S., K. Satake, T. Ishibe, and T. Harada, 2022, Reexamination of tsunami source models for the 20th century earthquakes off-Hokkaido and Tohoku along the eastern margin of the Sea of Japan, Earth Planets Space, 74:52, doi:10.1186/s40623-022-01607-4. [Article Link]
  9. Satake, K., T. Ishibe, S. Murotani, I.E. Mulia, A.R. Gusman, 2022, Effects of uncertainty in fault parameters on deterministic tsunami hazard assessment: examples for active faults along the eastern margin of the Sea of Japan, Earth Planets Space, 74:36, doi:10.1186/s40623-022-01594-6. [Article Link]
  10. Ishibe, T., R.S. Matsu’ura, M. Furumura, M. Akatsuka, K. Iwasa, M. Tajikara, K. Satake, and M. Ebara, 2021, Toward Seismicity Analyses in Historical Period Using Felt Reports and Attenuation Relation of Seismic Intensity - Preliminary Analysis Using the Japan Meteorological Agency Seismic Intensity Database -, Historical Earthquakes, 36, 111-125. [Article Link]
  11. Heidarzadeh, M., T. Ishibe, T. Harada, D.H. Natawidjaja, I.R. Pranantyo, B.T. Widyantoro, 2021, High Potential for Splay Faulting in the Molucca Sea, Indonesia: November 2019 Mw 7.2 Earthquake and Tsunami, Seismological Research Letters, doi:10.1785/0220200442. [Article Link]
  12. Mulia, I.E., T. Ishibe, K. Satake, A.R. Gusman, and S. Murotani, 2020, Regional probabilistic tsunami hazard assessment associated with active faults along the eastern margin of the Sea of Japan, Earth Planets Space, 72:123, doi:10.1186/s40623-020-01256-5. [Article Link]
  13. Nakamura, R., K. Satake, T. Ishibe, A. Nishiyama, and J. Muragishi, 2020, Characteristics of far field seismic intensity distribution for the 1855 Ansei-Edo earthquake, Proceeding of the 17th World Conference on Earthquake Engineering (17WCEE).
  14. Satake, K., and T. Ishibe, 2020, Toward homogeneous estimate of seismicity from historical materials: number of felt earthquakes in Tokyo since 1668, Seismological Research Letters, doi:10.1785/0220200060. [Article Link]
  15. Goto, T., Y. Yazaki, and T. Ishibe, 2020, Toward an effective management of disaster manual in schools and an organizational initiative including the Board of Education - From the Questionnaire Survey on School Disaster Prevention -, Journal of Japan Society for Disaster Information Studies, 18-1, 83-93. [Article Link]
  16. Heidarzadeh, M., T. Ishibe, O. Sandanbata, A. Muhari, and A.B. Wijanarto, 2020, Numerical modeling of the subaerial landslide source of the 22 December 2018 Anak Krakatoa volcanic tsunami, Indonesia, Ocean Engineering, 195, 106733, doi:10.1016/j.oceaneng.2019.106733. [Article Link]
  17. Furumura, M., K. Iwasa, Y. Suzuki, T. Demachi, T. Ishibe, and R.S. Matsu'ura, 2020, Data Retrieval System of JMA analog seismograms in Headquarters for Earthquake Research Promotion of Japanese government,Seismological Research Letters, 91(3), 1403-1412, doi:10.1785/0220190303. [Article Link]
  18. Heidarzadeh, M., D.R. Tappin, and T. Ishibe, 2019, Modeling the large runup along a narrow segment of the Kaikoura coast, New Zealand following the November 2016 tsunami from a potential landslide, Ocean Engineering, 175, 113-121, doi:10.1016/j.oceaneng.2019.02.024. [Article Link]
  19. Goto, T., K. Satake, T. Sugai, T. Ishibe, T. Harada, and A.R. Gusman, 2019, Tsunami history over the past 2000 years on the Sanriku coast, Japan, determined using gravel deposits to estimate tsunami inundation behavior, Sedimentary Geology, 382, 85-102, doi:10.1016/j.sedgeo.2019.01.001. [Article Link]
  20. Gusman, A.R., T. Goto, K. Satake, T. Takahashi, and T. Ishibe, 2018, Sediment transport modeling of multiple grain sizes for the 2011 Tohoku tsunami on a steep coastal valley of Numanohama, northeast Japan, Marine Geology, 405, 77-91, doi:10.1016/j.margeo.2018.08.003. [Article Link]
  21. Satake, K., J. Muragishi, M. Ebara, T. Yata, T. Ishibe and A. Nishiyama, 2018, Online full-text database for historical earthquakes in Kanto area during Edo period, Historical Earthquakes, 33, 61-77. (in Japanese with English abstract) [Article Link]
  22. Heidarzadeh, M., T. Ishibe, and T. Harada, 2018, Constraining the source of the Mw 8.1 Chiapas, Mexico earthquake of 8 September 2017 using teleseismic and tsunami observations, Pure and Applied Geophysics,doi:10.1007/s00024-018-1837-6. [Article Link]
  23. Heidarzadeh, M., O. Necmioglu, T. Ishibe and A.C. Yalciner, 2017, Bodrum-Kos (Turkey-Greece) Mw 6.6 earthquake and tsunami of 20 July 2017: a test for the Mediterranean tsunami warning system, Geoscience Letters, 4:31, doi:10.1186/s40562-017-0097-0. [Article Link]
  24. Heidarzadeh, M., T. Harada, K. Satake, T. Ishibe and T. Takagawa, 2017, Tsunamis from strike-slip earthquakes in the Wharton Basin, northeast Indian Ocean: March 2016 Mw 7.8 event and its relationship with the April 2012 Mw 8.6 event, Geophys. J. Int., doi:10.1093/gji/ggx395. [Article Link]
  25. Goto, T., K. Satake, T. Sugai, T. Ishibe, T. Harada, and A.R. Gusman, 2017, Topographic factor for particle component of tsunami deposit at the Sanriku ria coast, Japan, Quaternary International, doi:10.1016/j.quaint.2017.05.014. [Article Link]
  26. Ishibe, T., Y. Ogata, H. Tsuruoka, K. Satake, 2017, Testing the Coulomb stress triggering hypothesis for three recent megathrust earthquakes, Geoscience Letters, 4:5, doi: 10.1186/s40562-017-0070-y. [Article Link]
  27. Heidarzadeh, M., T. Harada, K. Satake, T. Ishibe, A.R. Gusman, 2016, Comparative study of two tsunamigenic earthquakes in the Solomon Islands: 2015 Mw 7.0 normal-fault and 2013 Santa Cruz Mw 8.0 megathrust earthquakes, Geophys. Res. Lett., doi:10.1002/2016GL068601.[Article Link]
  28. Heidarzadeh, M., S. Murotani, K. Satake, T. Ishibe, A.R. Gusman, 2016, Source model of the 16 September 2015 Illapel, Chile Mw 8.4 earthquake based on teleseismic and tsunami data, Geophys. Res. Lett., doi: 10.1002/2015GL067297. [Article Link]
  29. Muragishi, J., K. Satake, T. Ishibe, and T. Harada, 2015, Re-examination of Tsunami Damage in Tokyo Bay from the 1703 Genroku Kanto Earthquake, Historical Earthquakes, 30, 149-157. (in Japanese with English abstract) [Article Link]
  30. Ishibe, T., K. Satake, J. Muragishi, H. Tsuruoka, S. Nakagawa, S. Sakai, and N. Hirata, 2015, Compilation of Seismometrical Data of Recent Earthquakes for the Purpose of Investigating Semi-Historical Earthquakes in the Kanto District, Japan, and Preliminary Application to the 1922 Uraga-Channel Earthquake, Historical Earthquakes, 30, 109-127. (in Japanese with English abstract) [Article Link]
  31. Goto, T., K. Satake, T. Sugai, T. Ishibe, T. Harada, and S. Murotani, 2015, Historical tsunami and storm deposits during the last five centuries on the Sanriku coast, Japan, Marine Geology, 367, 105-117, doi:10.1016/j.margeo.2015.05.009. [Article Link]
  32. Ishibe, T., K. Satake, S. Sakai, K. Shimazaki, H. Tsuruoka, Y. Yokota, S. Nakagawa, and N. Hirata, 2015, Correlation between Coulomb stress imparted by the 2011 Tohoku-Oki earthquake and seismicity rate change in Kanto, Japan, Geophys. J. Int., 201, 112-134, doi:10.1093/gji/ggv001. [Article Link]
  33. Ishibe, T., H. Tsuruoka, K. Satake, and M. Nakatani, 2014, A Focal Mechanism Solution Catalog of Earthquakes (M ≥ 2.0) in and around the Japanese Islands for 1985-1998, Bull. Seism. Soc. Am., 104, doi: 10.1785/0120130278. [Article Link]
  34. Tsuji, Y., K. Satake, T. Ishibe, T. Harada, A. Nishiyama, and S. Kusumoto, 2014, Tsunami Heights along the Pacific Coast of Northern Honshu Recorded from the 2011 Tohoku and Previous Great Earthquakes, Pure and Applied Geophysics, doi: 10.1007/s00024-014-0779-x. [Article Link]
  35. Mori, N, T. Takahashi, and the 2011 Tohoku Earthquake Tsunami Joint Survey Group, 2012, Nationwide post event survey and analysis of the 2011 Tohoku earthquake tsunami, Coastal Engineering Journal, 54(1), 1250001, doi: 10.1142/S0578563412500015.
  36. Ishibe, T. and K. Shimazaki, 2012, Characteristic Earthquake Model and Seismicity around Late Quaternary Active Faults in Japan, Bull. Seism. Soc. Am., 102, 1041-1058, doi: 10.1785/0120100250. [Article Link]
  37. The 2011 Tohoku Earthquake Tsunami Joint Survey Group, 2011, Nationwide Field Survey of the 2011 Off the Pacific Coast of Tohoku Earthquake Tsunami, Journal of Japan Society of Civil Engineers, Series B, 67(1), 63-66.
  38. Ishibe, T., K. Shimazaki, K. Satake, and H. Tsuruoka, 2011, Change in seismicity beneath the Tokyo metropolitan area due to the 2011 off the Pacific coast of Tohoku, Japan Earthquake, Earth Planets Space, 63, 731-735, doi:10.5047/eps.2011.06.001. [Article Link]
  39. Ishibe, T., K. Shimazaki, H. Tsuruoka, Y. Yamanaka, and K. Satake, 2011, Correlation between Coulomb stress changes imparted by large historical strike-slip earthquakes and current seismicity in Japan, Earth Planets Space, 63, 301-314, doi:10.5047/eps.2011.01.008. [Article Link]
  40. Imai, K., Namegaya, Y., Tsuji, Y., Fujii, Y., Ando, R., Komatsubara, J., Komatsubara, T., Horikawa, H., Miyachi, Y., Matsuyama M., Yoshii, T., Ishibe, T., Satake, K., Nishiyama, A., Harada, T., Shigihara, Y., Shigihara, Y., and Fujima, K., 2010. Field Survey for Tsunami Trace Height along the Coasts of the Kanto and Tokai districts from the 2010 Chile Earthquake, Journal of Japan Society of Civil Engineers, Ser. B2 (Coastal Engineering), 66, 1351-1355, doi:10.2208/kaigan.66.1351. (in Japanese with English abstract) [Article Link]
  41. Nanjo, K. Z., T. Ishibe, H. Tsuruoka, D. Schorlemmer, Y. Ishigaki, and N. Hirata, 2010, Analysis of the Completeness Magnitude and Seismic Network Coverage of Japan, Bull. Seism. Soc. Am., 100(6), 3261-3268, doi:10.1785/0120100077. [Article Link]
  42. Ishibe, T. and K. Shimazaki, 2009, Seismicity in source regions of large interplate earthquakes around Japan and the characteristic earthquake Model, Earth Planets Space, 61, 1041-1052, doi:10.1186/BF03352955. [Article Link]
  43. Ishibe, T. and K. Shimazaki, 2007, Seismicity in a source region of a large interplate earthquake and the Characteristic Earthquake Model, Historical Earthquakes, 22, 157-168. (in Japanese with English abstract) [Article Link]
  44. Ishibe, T. and K. Shimazaki, 2006, Seismicity around Quaternary Active Faults and Characteristic Earthquake Model, Historical Earthquakes, 21, 137-152. (in Japanese with English abstract) [Article Link]
  45. Ishibe, T. and K. Shimazaki, 2005, Estimation of the Source of Tsunami Accompanied by the 1596 Keicho-Bungo Earthquake, Historical Earthquakes, 20, 119-131. (in Japanese with English abstract) [Article Link]

[Research Papers without review]

  1. Matsu'ura, R.S., T. Ishibe, and A. Hashima, 2024, Current status of the Relative Quiescence of the seismicity off the east coast of Hokkaido: a decade after its significance was revealed, Report of the Coordinating Committee for Earthquake Prediction, Japan 111. (in Japanese) [Article Link]
  2. Satake, K., T. Ishibe, and S. Murotani, 2022, Deterministic and probabilistic tsunami forecast from seismogenic source faults in the backarc of Northeast Japan, Report of the Coordinating Committee for Earthquake Prediction, Japan 108,648-653. (in Japanese) [Article Link]
  3. Goto, T., J. Kanai, and T. Ishibe, 2022, Questionaries' survey on flood control measures for schools, kindergartens, and welfare facilities in areas of zero meters above sea level such as reclaimed land - Case study along the coast of Ariake and Yatsushiro Sea -, Journal of Japan Society of Civil Engineers, Ser. F6 (Safety Problem).
  4. Ishibe, T., and K. Satake, Changes in the number of felt reports at Edo (former Tokyo) and Tokyo -Toward seismicity analyses in historical period-, Zisin Journal, 72, 1-13. [Article Link]
  5. Hayashi, Y., T. Ishibe, M. Odagiri (Shiraishi) and A. Nishiyama, 2018, Creation of a table of contents and index of "Historical Earthquakes", Historical Earthquakes, 33, 240-242. (in Japanese) [Article Link]
  6. Muragishi, J., A. Nishiyama, T. Ishibe, T. Harada, K. Satake, 2016, Damage of the 1855 Ansei Edo earthquake near the Edo city (Translated),Saigai, fukko to shiryo (Natural Hazards, Disaster Recovery, and Document) , 8, 13-24 (in Japanese).
  7. Ishibe, T., S. Murotani, K. Satake, K. Shimazaki, S. Nakagawa, S. Sakai, N. Hirata, and A. Nishiyama, 2012, Classification of Magnitude 7 Earthquakes in Tokyo Metropolitan Area since 1885,Report of the Coordinating Committee for Earthquake Prediction, Japan, 88, 526-530 (in Japanese). [Article Link]
  8. Ishibe, T., K. Shimazaki, K. Satake, and H. Tsuruoka, 2012, Change in seismicity rate around the Quaternary active faults due to the 2011 off the Pacific coast of Tohoku Earthquake,Report of the Coordinating Committee for Earthquake Prediction, Japan, 87, 97-100 (in Japanese). [Article Link]
  9. The 2010 Central Chile (Maule) Earthquake Tsunami Joint Survey Group, 2012, Report of the Joint Survey along the Japan coast for the 2010 Central Chile (Maule) earthquake tsunami, Tsunami engineering technical report, 29, 37-54.
  10. The 2011 Tohoku Earthquake Tsunami Joint Survey Group, 2011, Report of the Joint Survey for the 2011 Tohoku earthquake tsunami, Tsunami engineering technical report, 28, 129-133.
  11. Tsuji, Y., Satake, K., Ishibe, T., Kusumoto, S., Harada, T., Nishiyama, A., Kim, H. Y., Ueno, T., Murotani, S., Oki, S., Sugimoto, M., Tomari, J., Heidarzadeh, M., Watada, S., Imai, K., Choi, B. H., Yoon, S. B., Bae, J. S., Kim, K. O., and Kim H. W., 2011, Field Surveys of Tsunami Heights from the 2011 off the Pacific Coast of Tohoku, Japan Earthquake, Bull. Earthq. Res. Inst. Univ. Tokyo, 86, 29-279 (in Japanese with English abstract). [Article Link]
  12. Ishibe, T., K. Shimazaki, K. Satake, and H. Tsuruoka, 2011, Change in seismicity beneath the Tokyo metropolitan area due to the 2011 off the Pacific Coast of Tohoku, Japan, Earthquake,Report of the Coordinating Committee for Earthquake Prediction, Japan, 86, 116-120 (in Japanese). [Article Link]
  13. Tsuji, Y., K. Satake, T. Ishibe, M. Sugimoto, S. Oki, A. Nishiyama, S. Murotani, J. Tomari, and T. Ueno, 2010, Tsunami field survey of the 2011 off the Pacific coast of Tohoku earthquake (Preliminary report) Zisin Journal, 832-838 (in Japanese). [Article Link]
  14. Shimazaki, K. and T. Ishibe, 2010, Investigation of historical earthquakes in Tokyo Metropolitan area, Kagaku, 832-838 (in Japanese).
  15. Haraguchi, T. and T. Ishibe, 2009, Great interplate earthquake model off central Sanriku inferred from tsunami deposits and uplifted event layers, Monthly Chikyu31, 223-230 (in Japanese).
  16. Shimazaki, K., M. Okamura, H. Matsuoka, and T. Ishibe, 2009, Single-channel Seismic Profiling at Koaidame in Tokyo, Bull. Earthq. Res. Inst. Univ. Tokyo, 84, 267-270 (in Japanese with English abstract). [Article Link]
  17. Shimazaki, K., T. Haraguchi, T. Ishibe, and T. Nakata, 2009, Resurvey of Possible Seismic Fissures in the Old-Edo River in Tokyo, Bull. Earthq. Res. Inst. Univ. Tokyo, 84, 229-240 (in Japanese with English abstract). [Article Link]
  18. Ishibe, T., A. Nishiyama, K. Satake, and K. Shimazaki, 2009b, Review of previous studies on M7-class earthquakes that occurred in the southern Kanto region and data collection - The 1921 Ibaraki-Ken Nanbu earthquake, the 1922 Uraga-channel earthquake and the 1987 Chiba-Ken Toho-Oki earthquake -, Bull. Earthq. Res. Inst. Univ. Tokyo, 84, 183-212 (in Japanese with English abstract). [Article Link]
  19. Ishibe, T., A. Nishiyama, K. Satake, and K. Shimazaki, 2009a, Review of previous studies on M7-class earthquakes that occurred in the southern Kanto region and data collection - The 1894 Meiji Tokyo earthquake and the 1895 Ibaraki-Ken Nanbu earthquake -, Bull. Earthq. Res. Inst. Univ. Tokyo, 84, 149-182 (in Japanese with English abstract). [Article Link]
  20. Ishibe, T. and K. Shimazaki, 2008, The Gutenberg-Richter relationship vs. the Characteristic Earthquake Model: Effects of different sampling methods, Bull. Earthq. Res. Inst. Univ. Tokyo, 83, 131-151. [Article Link]