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PUBMED FOR HANDHELDS

Journal Abstract Search


121 related items for PubMed ID: 38848355

  • 21. Seismic evidence for active underplating below the megathrust earthquake zone in Japan.
    Kimura H, Takeda T, Obara K, Kasahara K.
    Science; 2010 Jul 09; 329(5988):210-2. PubMed ID: 20616277
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  • 23. A great earthquake rupture across a rapidly evolving three-plate boundary.
    Furlong KP, Lay T, Ammon CJ.
    Science; 2009 Apr 10; 324(5924):226-9. PubMed ID: 19359581
    [Abstract] [Full Text] [Related]

  • 24. Upper-plate controls on co-seismic slip in the 2011 magnitude 9.0 Tohoku-oki earthquake.
    Bassett D, Sandwell DT, Fialko Y, Watts AB.
    Nature; 2016 Mar 03; 531(7592):92-6. PubMed ID: 26935698
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  • 26. Seismic evidence for megathrust fault-valve behavior during episodic tremor and slip.
    Gosselin JM, Audet P, Estève C, McLellan M, Mosher SG, Schaeffer AJ.
    Sci Adv; 2020 Jan 03; 6(4):eaay5174. PubMed ID: 32010787
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  • 27. Earthquake hazards on the cascadia subduction zone.
    Heaton TH, Hartzell SH.
    Science; 1987 Apr 10; 236(4798):162-8. PubMed ID: 17789780
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  • 28. Crustal architecture of the cascadia forearc.
    Trehu AM, Asudeh I, Brocher TM, Luetgert JH, Mooney WD, Nabelek JL, Nakamura Y.
    Science; 1994 Oct 14; 266(5183):237-43. PubMed ID: 17771442
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  • 29. 2010 Maule earthquake slip correlates with pre-seismic locking of Andean subduction zone.
    Moreno M, Rosenau M, Oncken O.
    Nature; 2010 Sep 09; 467(7312):198-202. PubMed ID: 20829792
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  • 30. Seismic evidence for overpressured subducted oceanic crust and megathrust fault sealing.
    Audet P, Bostock MG, Christensen NI, Peacock SM.
    Nature; 2009 Jan 01; 457(7225):76-8. PubMed ID: 19122639
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  • 32. Updated concepts of seismic gaps and asperities to assess great earthquake hazard along South America.
    Lay T, Nishenko SP.
    Proc Natl Acad Sci U S A; 2022 Dec 20; 119(51):e2216843119. PubMed ID: 36512498
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  • 33. Structural Evolution of a Crustal-Scale Seismogenic Fault in a Magmatic Arc: The Bolfin Fault Zone (Atacama Fault System).
    Masoch S, Gomila R, Fondriest M, Jensen E, Mitchell T, Pennacchioni G, Cembrano J, Di Toro G.
    Tectonics; 2021 Aug 20; 40(8):e2021TC006818. PubMed ID: 34594061
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  • 34. Tracking Deep Sediment Underplating in a Fossil Subduction Margin: Implications for Interface Rheology and Mass and Volatile Recycling.
    Tewksbury-Christle CM, Behr WM, Helper MA.
    Geochem Geophys Geosyst; 2021 Mar 20; 22(3):e2020GC009463. PubMed ID: 33776592
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  • 35. A wide depth distribution of seismic tremors along the northern Cascadia margin.
    Kao H, Shan SJ, Dragert H, Rogers G, Cassidy JF, Ramachandran K.
    Nature; 2005 Aug 11; 436(7052):841-4. PubMed ID: 16094366
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  • 36. Seismological evidence for a multifault network at the subduction interface.
    Chalumeau C, Agurto-Detzel H, Rietbrock A, Frietsch M, Oncken O, Segovia M, Galve A.
    Nature; 2024 Apr 11; 628(8008):558-562. PubMed ID: 38632482
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  • 37. Slow earthquakes linked along dip in the Nankai subduction zone.
    Hirose H, Asano Y, Obara K, Kimura T, Matsuzawa T, Tanaka S, Maeda T.
    Science; 2010 Dec 10; 330(6010):1502. PubMed ID: 21148384
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  • 38. Splay fault branching along the Nankai subduction zone.
    Park JO, Tsuru T, Kodaira S, Cummins PR, Kaneda Y.
    Science; 2002 Aug 16; 297(5584):1157-60. PubMed ID: 12183623
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  • 39. An exponential build-up in seismic energy suggests a months-long nucleation of slow slip in Cascadia.
    Hulbert C, Rouet-Leduc B, Jolivet R, Johnson PA.
    Nat Commun; 2020 Aug 18; 11(1):4139. PubMed ID: 32811833
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  • 40. Subducting volcaniclastic-rich upper crust supplies fluids for shallow megathrust and slow slip.
    Gase AC, Bangs NL, Saffer DM, Han S, Miller PK, Bell RE, Arai R, Henrys SA, Kodaira S, Davy R, Frahm L, Barker DHN.
    Sci Adv; 2023 Aug 18; 9(33):eadh0150. PubMed ID: 37585538
    [Abstract] [Full Text] [Related]


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