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Transient erosion in the Valencia Trough turbidite systems, NW Mediterranean Basin. Geomorphology. 130:173–184.. 2011.
Submarine Mass Movements and Their Consequences: An introduction.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :1–12.. 2012.
Submarine Mass Movements and Their Consequences. Submarine Mass Movements and Their Consequences. 37:85–94.. 2014.
Submarine Mass Movements Along a Sediment Starved Margin: The Menorca Channel (Balearic Islands – Western Mediterranean). Submarine Mass Movements and Their Consequences. :329–338.. 2014.
Submarine landslides of the Mediterranean Sea: Trigger mechanisms, dynamics, and frequency-magnitude distribution. Journal of Geophysical Research: Earth Surface. 118:2600–2618.. 2013.
Sediment undulations on the Llobregat prodelta: Signs of early slope instability or sedimentary bedforms? Rendiconti Online Societa Geologica Italiana. 7:103–106.. 2009.
Seafloor mapping for geohazard assessment: state of the art. Marine Geophysical Research. 32:1–11.. 2011.
A review of undulated sediment features on Mediterranean prodeltas: distinguishing sediment transport structures from sediment deformation. Marine Geophysical Research. 32:49–69.. 2011.
Recent submarine landslides on the continental slope of Storfjorden and Kveithola Trough-Mouth Fans (north west Barents Sea). Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research, 34, Springer, Dordrecht (The Netherlands). :735–745.. 2012.
An overview of the role of long-term tectonics and incoming plate structure on segmentation of submarine mass wasting phenomena along the Middle America Trench.. Submarine Mass Movements and Their Consequences - 5th International Symposium. :391–402.. 2012.
One million years of climatic generated landslide events on the northwestern Barents Sea continental margin.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :747–756.. 2012.
New constraints on the Messinian sealevel drawdown from 3D seismic data of the Ebro Margin, western Mediterranean. Basin Research. 23:123–145.. 2011.
Late Miocene sedimentary architecture of the Ebro Continental Margin (Western Mediterranean): implications to the Messinian Salinity Crisis. International Journal of Earth Sciences. 103:423–440.. 2013.
IGCP 511: Submarine Mass Movements and Their Consequences (2005-2009). Tales Set in Stone – 40 Years of the International Geoscience Programme (IGCP). :62–66.. 2012.
Grounding zone wedges , Kveithola Trough ( NW Barents Sea ). Atlas of Submarine Glacial Landforms. 16:16840.. 2014.
Drilling Glacial Deposits in Offshore Polar Regions. Eos, Transactions American Geophysical Union. 95:277–278.. 2014.
Distinguishing sediment bedforms from sediment deformation in prodeltas of the Mediterranean Sea.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :233–244.. 2012.