TY - JOUR
T1 - A high-resolution record of early rift development and tectonic, sedimentary and environmental conditions in an active rift basin
T2 - IODP MSP drilling in the Corinth Rift, Greece (Expedition 381)
AU - McNeill, Lisa C.
AU - Shillington, Donna J.
AU - Ash, Jeanine
AU - Carter, Gareth D.O.
AU - Collier, Richard E.Ll
AU - Cvetkoska, Aleksandra
AU - Diz, Paula
AU - Doan, Mai Linh
AU - Everest, Jeremy D.
AU - Fabregas, Natacha
AU - Fatourou, Eugenia
AU - Ford, Mary
AU - Gawthorpe, Robert L.
AU - De Gelder, Gino
AU - Geraga, Maria
AU - Gillespie, Jack
AU - Green, Sophie
AU - Hemelsdaël, Romain
AU - Herrero-Bervera, Emilio
AU - Ismaiel, Mohammad
AU - Janikian, Liliane
AU - Johnson, Cari
AU - Kafetzidou, Aikaterini
AU - Koukousioura, Olga
AU - Kouli, Katerina
AU - Le Ber, Erwan
AU - Li, Shunli
AU - Maffione, Marco
AU - Mahoney, Carol
AU - Machlus, Malka L.
AU - Marret, Fabienne
AU - Mazzini, Ilaria
AU - Michas, Georgios
AU - Miller, Clint
AU - Nixon, Casey W.
AU - Oflaz, Sabire Asli
AU - Omale, Abah P.
AU - Panagiotopoulos, Konstantinos
AU - Parisi, Roberta
AU - Pechlivanidou, Sofia
AU - Phillips, Marcie Purkey
AU - Sauer, Simone
AU - Seguin, Joana
AU - Sergiou, Spyros
AU - Zakharova, Natalia V.
N1 - Publisher Copyright:
© 2026 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license. http://creativecommons.org/licenses/by/4.0/
PY - 2026/6
Y1 - 2026/6
N2 - The Corinth Rift in Greece is very active, with high rates of extension, sedimentation and environmental change. International Ocean Discovery Program (IODP) Expedition 381 drilled three sites sampling syn-rift sediments, complementing previous fault and stratigraphic interpretations and providing the longest high-resolution stratigraphic record for an early phase rift. Sedimentation in the Gulf of Corinth started ∼2.0-2.5 Ma as an isolated basin, with the most recent rift phase starting at ∼0.75 Ma, marking a shift to increasingly orbitally-controlled marine incursions. A wide range of paleoenvironmental conditions have been generated, reflected in the diverse microfossil assemblages and sedimentary lithologies. Drilling results highlight a recent acceleration of strain rate and fault activity connected to rapid strain localization, with linkage of the border fault system over 10s-100s kyr timescales. Over long timescales (100s kyr), these variations in fault slip rate control sediment accumulation. On shorter time scales (10s kyr), changes in accumulation rate and type of sediment are primarily controlled by glacial-interglacial climate change, with accumulation rates in glacial periods at least double that of interglacial periods, accompanied by enhanced basin stratification and dominance of non-marine faunal assemblages. The mud-dominated sediments have three stratal package types (bioturbated, bedded, laminated) that record distinct hydrological conditions linked to climate and sea level which influence the landscape and basin conditions. Results from the Corinth Rift are compared with other active basins and rift systems for a better understanding of the tectonic and climatic processes shaping these environments.
AB - The Corinth Rift in Greece is very active, with high rates of extension, sedimentation and environmental change. International Ocean Discovery Program (IODP) Expedition 381 drilled three sites sampling syn-rift sediments, complementing previous fault and stratigraphic interpretations and providing the longest high-resolution stratigraphic record for an early phase rift. Sedimentation in the Gulf of Corinth started ∼2.0-2.5 Ma as an isolated basin, with the most recent rift phase starting at ∼0.75 Ma, marking a shift to increasingly orbitally-controlled marine incursions. A wide range of paleoenvironmental conditions have been generated, reflected in the diverse microfossil assemblages and sedimentary lithologies. Drilling results highlight a recent acceleration of strain rate and fault activity connected to rapid strain localization, with linkage of the border fault system over 10s-100s kyr timescales. Over long timescales (100s kyr), these variations in fault slip rate control sediment accumulation. On shorter time scales (10s kyr), changes in accumulation rate and type of sediment are primarily controlled by glacial-interglacial climate change, with accumulation rates in glacial periods at least double that of interglacial periods, accompanied by enhanced basin stratification and dominance of non-marine faunal assemblages. The mud-dominated sediments have three stratal package types (bioturbated, bedded, laminated) that record distinct hydrological conditions linked to climate and sea level which influence the landscape and basin conditions. Results from the Corinth Rift are compared with other active basins and rift systems for a better understanding of the tectonic and climatic processes shaping these environments.
KW - Basin development
KW - Climate-tectonic-sedimentation interactions
KW - Continental rifting
KW - Gulf of Corinth
KW - IODP Expedition 381
KW - Normal faulting
KW - Paleoclimate and paleoenvironment
KW - Sedimentary processes
UR - https://www.scopus.com/pages/publications/105035022349
UR - https://www.scopus.com/pages/publications/105035022349#tab=citedBy
U2 - 10.1016/j.margeo.2026.107750
DO - 10.1016/j.margeo.2026.107750
M3 - Article
AN - SCOPUS:105035022349
SN - 0025-3227
VL - 496
JO - Marine Geology
JF - Marine Geology
M1 - 107750
ER -