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3. The Submarine Boundaries of Mount Etna’s Unstable Southeastern Flank

5. Basin inversion: reactivated rift structures in the central Ligurian Sea revealed using ocean bottom seismometers

6. Basin inversion: Reactivated rift structures in the Ligurian Sea revealed by OBS

7. Analysis of seismic and aseismic deformation using shoreline-crossing observations

8. Seismogenic up-dip limit of the 2014 Mw 8.1 Iquique earthquake links subduction erosion and upper plate deformation

9. Relationship between subduction erosion and the up‐dip limit of the 2014 Mw 8.1 Iquique earthquake

10. Microseismicity and lava flows hint at magmato‐tectonic processes near the southern tip of the Fonualei Rift and Spreading Center in the Lau Basin

11. Basin inversion in the Ligurian Sea revealed by local seismicity

12. Seismic reflection character of the plate interface in the rupture zone of the 2014 Iquique earthquake sequence

13. Imaging the crustal structure of the southern plate boundary of the Niuafo’ou microplate, Lau Basin, southwest Pacific, with reflection and refractions seismic data

14. Subduction erosion and upper plate deformation induced by the 2014 Mw 8.1 Iquique earthquake

15. Subduction Erosion and Upper Plate Deformation at the Up-Dip Limit of the 2014 Mw 8.1 Iquique Earthquake

17. Marine forearc structure at the seismogenic up-dip end of the 2014 Iquique Mw 8.1 earthquake

18. The FOCUS experiment 2020 (Fiber Optic Cable Use for Seafloor studies of earthquake hazard and deformation)

19. Investigations of the Oligocene-Miocene opening of the Ligurian Basin using refraction seismic data

20. Crustal Structure of the Southern Plate Boundary of the Niuafo’ou Microplate, Lau Basin, Southwest Pacific Ocean

22. Microseismicity indicates a current transition from rifting to spreading at the southern Fonualei Rift and Spreading Center in the Lau Basin

24. Applying laser reflectometry to study active submarine faults: the FOCUS project (FOCUS = Fiber Optic Cable Use for Seafloor studies of earthquake hazard and deformation)

25. The structure of the 2014 Mw 8.1 Iquique earthquake revealed by offshore observations

26. Fiber optic monitoring of active faults at the seafloor: I the FOCUS project

29. Extremely thinned continental crust underneath the Ligurian Basin?

30. Formation and Rifting of backarc crust in the Lau Basin: First results of a recent seismic experiment

31. Measuring tectonic seafloor deformation and strain-build up with acoustic direct-path ranging

32. LOBSTER - Ligurian Ocean Bottom Seismology and Tectonics

33. Investigations of the crust and upper mantle in the Ligurian Basin using refraction seismic data and ambient noise – LOBSTER

35. Seafloor geodesy to monitor deformation offshore Northern Chile (GeoSEA)

36. Seismic investigations of the Ligurian Basin

37. Gravitational collapse of Mount Etna’s southeastern flank

39. The AlpArray Seismic Network: A Large‑Scale European Experiment to Image the Alpine Orogen

43. RV MARIA S. MERIAN Fahrtbericht / Cruise Report MSM71 LOBSTER: Ligurian Ocean Bottom Seismology and Tectonics Research, Las Palmas (Spain) – Heraklion (Greece) 07.02.-27.02.2018

45. Monitoring seafloor displacement offshore Mount Etna: Evidence for active deformation from acoustic geodesy

47. Seafloor geodesy to monitor deformation offshore Northern Chile (GeoSEA)

50. Ligurian Ocean Bottom Seismology and Tectonics Research – LOBSTER

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