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Fay, N. P., Bennett, R. A., Spinler, J. C., Humphreys, E. D., (2008), "Small-scale upper mantle convection and crustal dynamics in southern California", Geochemistry, Geophysics, Geosystems, 9, 8: pg: Q08006, (DOI: 10.1029/2008GC001988). Cited by:
Goyette, S., Takatsuka, M., Clark, S., Müller, R. D., Rey, P., Stegman, D. R., (2008), "Increasing the usability and accessibility of geodynamic modelling tools to the geoscience community: UnderworldGUI", Visual Geosciences, 13, 1: pg: 25--36, (DOI: 10.1007/s10069-007-0006-3). Cited by:
Le Pourhiet, L., Huet, B., May, D. A., Labrousse, L., Jolivet, L., (2012), "Kinematic interpretation of the 3D shapes of metamorphic core complexes", Geochemistry, Geophysics, Geosystems, 13, 9: pg: Q09002, (DOI: 10.1029/2012GC004271). Cited by:
Li, Y., Qi, J., (2012), "Salt-related Contractional Structure and Its Main Controlling Factors of Kelasu Structural Zone in Kuqa Depression: Insights from Physical and Numerical Experiments", Procedia Engineering, 31: pg: 863--867, (DOI: 10.1016/j.proeng.2012.01.1113). Cited by:
Fernando, B., Wójcicka, N., Maguire, R., Stähler, S. C., Stott, A. E., Ceylan, S., Charalambous, C., Clinton, J., Collins, G. S., Dahmen, N., Froment, M., Golombek, M., Horleston, A., Karatekin, O., Kawamura, T., Larmat, C., Nissen-Meyer, T., Patel, M. R., Plasman, M., Posiolova, L., Rolland, L., Spiga, A., Teanby, N. A., Zenhäusern, G., Giardini, D., Lognonné, P., Banerdt, B., Daubar, I. J., (2021), "Seismic constraints from a Mars impact experiment using InSight and Perseverance", Nature Astronomy, : (DOI: 10.1038/s41550-021-01502-0). Cited by:
Diao, Faqi, Wang, Rongjiang, Zhu, Yage, Xiong, Xiong, (2021), "Revisiting the Fault Locking of the Central Himalayan Thrust with a Viscoelastic Earthquake‐Cycle Deformation Model", Seismological Research Letters, : 10, (DOI: 10.1785/0220200310). Cited by:
Williams, C. A., (2006), "LithoMop v0.7.2 [software]", Computational Infrastructure for Geodynamics: . Cited by:
Currenti, G., Del Negro, C., Ganci, G., Williams, C. A., (2008), "Static stress changes induced by the magmatic intrusions during the 2002-2003 Etna eruption", Journal of Geophysical Research, 113, B10: pg: B10206, (DOI: 10.1029/2007JB005301). Cited by:
Hsu, Y-J, Segall, P., Yu, S-B, Kuo, L-C, Williams, C. A., (2007), "Temporal and spatial variations of post-seismic deformation following the 1999 Chi-Chi, Taiwan earthquake", Geophysical Journal International, 169, 2: pg: 367--379, (DOI: 10.1111/j.1365-246X.2006.03310.x). Cited by:
Antonioli, F., Ferranti, L., Fontana, A., Amorosi, A., Bondesan, A., Braitenberg, C., Dutton, A., Fontolan, G., Furlani, S., Lambeck, K., Mastronuzzi, G., Monaco, C., Spada, G., Stocchi, P., (2009), "Holocene relative sea-level changes and vertical movements along the Italian and Istrian coastlines", Quaternary International, 206, 1-2: pg: 102--133, (DOI: 10.1016/j.quaint.2008.11.008). Cited by:
Antonioli, F., Ferranti, L., Stocchi, P., Deiana, G., Lo Presti, V., Furlani, S., Marino, C., Orru, P., Scicchitano, G., Trainito, E., Anzidei, M., Bonamini, M., Sanso, P., Mastronuzzi, G., (2018), "Morphometry and elevation of the last interglacial tidal notches in tectonically stable coasts of the Mediterranean Sea", Earth-Science Reviews, 185: pg: 600--623, (DOI: 10.1016/j.earscirev.2018.06.017). Cited by:
Antonioli, F., Furlani, S., Montagna, P., Stocchi, P., (2021), "The Use of Submerged Speleothems for Sea Level Studies in the Mediterranean Sea: A New Perspective Using Glacial Isostatic Adjustment (GIA)", Geosciences, 11, 2: pg: 77, (DOI: 10.3390/geosciences11020077). Cited by:
Antonioli, F., Furlani, S., Montagna, P., Stocchi, P., Calcagnile, L., Quarta, G., Cecchinel, J., Lo Presti, V., Morticelli, M. G., Foresta Martin, F., Pons-Branchu, E., Vaccher, V., (2021), "Submerged Speleothems and Sea Level Reconstructions: A Global Overview and New Results from the Mediterranean Sea", Water, 13, 12: (DOI: 10.3390/w13121663). Cited by:
Bechor, B., Sivan, D., Miko, S., Hasan, O., Grisonic, M., Rossi, I. R., Lorentzen, B., Artioli, G., Ricci, G., Ivelja, T., Spada, G., Brook, A., (2020), "Salt pans as a new archaeological sea-level proxy: A test case from Dalmatia, Croatia", Quaternary Science Reviews, 250: pg: 106680, . Cited by:
Bechor, B., Theodoulou, T., Spada, G., Dean, S., Sivan, D., (2019), "Medieval relative low sea-level indications from the Peloponnese and the Aegean Sea", Quaternary International, : (DOI: 10.1016/j.quaint.2019.11.026). Cited by:
Bender, M., Mann, T., Stocchi, P., Kneer, D., Schone, T., Illigner, J., Jompa, J., Rovere, A., (2020), "Late Holocene (0-6 ka) sea-level changes in the Makassar Strait, Indonesia", Climate of the Past, 16, 4: pg: 1187--1205, (DOI: 10.5194/cp-16-1187-2020). Cited by:
Bonaduce, A., Pinardi, N., Oddo, P., Spada, G., Larnicol, G., (2016), "Sea-level variability in the Mediterranean Sea from altimetry and tide gauges", Climate Dynamics, 47, 9-10: pg: 2851--2866, (DOI: 10.1007/s00382-016-3001-2). Cited by:
Bulgakov R.F., Afanas ev V. V., (2020), "Effect of hydroisostatic compensation depending on the shelf width on the example of the Laptev and the East Siberian seas", Geosystems of Transition Zones, 4, 3: pg: 305--320, (DOI: 10.30730/gtrz.2020.4.3.305-312.313-320). Cited by:
Bulgakov R.F., Afanas ev V. V., (2020), "Effect of hydroisostasy on postglacial transgression on the shelf and coast of Primorye as revealed by computer modelling", Geosystems of Transition Zones, 4, 2: pg: 220--229, (DOI: 10.30730/gtrz.2020.4.2.210-219.220-229). Cited by:
Caporizzo, C., Aucelli, P. P. C., Galan-Ruffoni, I., Gracia, F. J., Martin-Puertas, C., Mattei, G., Stocchi, P., (2020), "Estimating RSL changes in the Northern Bay of Cadiz (Spain) during the late Holocene", 2020 IMEKO TC-19 International Workshop on Metrology for the Sea, Naples, Italy: . Cited by:
Carbias, aD, Cartajena, I., Simonetti, R., Lopez, P., Morales, C., Ortega, C., Evans, M. A.and Flatman, C. J.and Flemming, C. N. (2014), "Prehistoric Archaeology on the Continental Shelf: A Global Review", Submerged Paleolandscapes: Site GNL Quintero 1 (GNLQ1) and the First Evidences from the Pacific Coast of South America, Springer New York, New York, NY: pg: 131--149, 978-1-4614-9635-9, (DOI: 10.1007/978-1-4614-9635-9_8). Cited by:
Chelli, A., Pappalardo, M., Bini, M., Bruckner, H., Neri, G., Neri, M., Spada, G., (2017), "Assessing tectonic subsidence from estimates of Holocene relative sea-level change: An example from the NW Mediterranean (Magra Plain, Italy)", The Holocene, : (DOI: 10.1177/0959683617715688). Cited by:
Boer, B., Stocchi, P., Wal, R. S. W., (2014), "A fully coupled 3-D ice-sheet-sea-level model: algorithm and applications", Geoscientific Model Development, 7, 5: pg: 2141--2156, (DOI: 10.5194/gmd-7-2141-2014). Cited by:
Boer, B., Stocchi, P., Whitehouse, P. L., Wal, R. S. W., (2017), "Current state and future perspectives on coupled ice-sheet -- sea-level modelling", Quaternary Science Reviews, 169: pg: 13--28, (DOI: 10.1016/j.quascirev.2017.05.013). Cited by:
Evelpidou, N., Pirazzoli, P., Vassilopoulos, A., Spada, G., Ruggieri, G., Tomasin, A., (2012), "Late Holocene Sea Level Reconstructions Based on Observations of Roman Fish Tanks, Tyrrhenian Coast of Italy", Geoarchaeology, 27, 3: pg: 259--277, (DOI: 10.1002/gea.21387). Cited by:
Evelpidou, N., Pirazzoli, P. A., Spada, G., (2015), "Origin and Holocene Evolution of a Slightly Submerged Tidal Notch in the NE Adriatic", Journal of Coastal Research, 300: pg: 255--264, (DOI: 10.2112/JCOASTRES-D-14-00016.1). Cited by:
Ewert, H., Groh, A., Dietrich, R., (2012), "Volume and mass changes of the Greenland ice sheet inferred from ICESat and GRACE", Journal of Geodynamics, 59-60: pg: 111--123, (DOI: 10.1016/j.jog.2011.06.003). Cited by:
Fenoglio-Marc, L., Rietbroek, R., Grayek, S., Becker, M., Kusche, J., Stanev, E., (2012), "Water mass variation in the Mediterranean and Black Seas", Journal of Geodynamics, 59-60: pg: 168--182, (DOI: 10.1016/j.jog.2012.04.001). Cited by:
Fenoglio-Marc, L., Tel, E., (2010), "Coastal and global sea level change", Journal of Geodynamics, 49, 3-4: pg: 151--160, (DOI: 10.1016/j.jog.2009.12.003). Cited by:
Florido, E., Auriemma, R., Faivre, S., Radic Rossi, I., Antonioli, F., Furlani, S., Spada, G., (2011), "Istrian and Dalmatian fishtanks as sea-level markers", Quaternary International, 232, 1-2: pg: 105--113, (DOI: 10.1016/j.quaint.2010.09.004). Cited by:
Forno, G. D., Gasperini, P., Spada, G., Sneeuw, N.and Novk, P.and Crespi, M.and Sans?ˆ, F. (2012), "VII Hotine-Marussi Symposium on Mathematical Geodesy: Proceedings of the Symposium in Rome, 6-10 June, 2009", Implementation of the Complete Sea Level Equation in a 3D Finite Elements Scheme: A Validation Study, Springer Berlin Heidelberg, Berlin, Heidelberg: pg: 393--397, 978-3-642-22078-4, (DOI: 10.1007/978-3-642-22078-4_59). Cited by:
Galassi, G., Spada, (2017), "Tide gauge observations in Antarctica (1958--2014) and recent ice loss", Antarctic Science, Cambridge University Press, 29, 4: pg: 369--381, (DOI: 10.1017/S0954102016000729). Cited by:
Galassi, G., Spada, G., (2014), "Sea-level rise in the Mediterranean Sea by 2050: Roles of terrestrial ice melt, steric effects and glacial isostatic adjustment", Global and Planetary Change, 123: pg: 55--66, (DOI: 10.1016/j.gloplacha.2014.10.007). Cited by:
Giaime, M., Morhange, C., Cau Ontiveros, M. \'A, Fornos, J. J., Vacchi, M., Marriner, N., (2017), "In search of Pollentia's southern harbour: Geoarchaeological evidence from the Bay of Alcudia (Mallorca, Spain)", Palaeogeography, Palaeoclimatology, Palaeoecology, 466: pg: 184--201, (DOI: 10.1016/j.palaeo.2016.11.023). Cited by:
Goslin, J., Van Vliet Lanoe, B., Spada, G., Bradley, S., Tarasov, L., Neill, S., Suanez, S., (2015), "A new Holocene relative sea-level curve for western Brittany (France): Insights on isostatic dynamics along the Atlantic coasts of north-western Europe", Quaternary Science Reviews, 129: pg: 341--365, (DOI: 10.1016/j.quascirev.2015.10.029). Cited by:
Gowan, E. J., Zhang, X., Khosravi, S., Rovere, A., Stocchi, P., Hughes, A. L. C., Gyllencreutz, R., Mangerud, J., Svendsen, J-I, Lohmann, G., (2021), "A new global ice sheet reconstruction for the past 80 000 years", Nature Communications, 12, 1: pg: 1199, (DOI: 10.1038/s41467-021-21469-w). Cited by:
Grant, G. R., Naish, T. R., Dunbar, G. B., Stocchi, P., Kominz, M. A., Kamp, P. J. J., Tapia, C. A., McKay, R. M., Levy, R. H., Patterson, M. O., (2019), "The amplitude and origin of sea-level variability during the Pliocene epoch", Nature, 574: pg: 237--241, (DOI: 10.1038/s41586-019-1619-z). Cited by:
Groh, A., Ewert, H., Scheinert, M., Fritsche, M., Rulke, A., Richter, A., Rosenau, R., Dietrich, R., (2012), "An investigation of Glacial Isostatic Adjustment over the Amundsen Sea sector, West Antarctica", Global and Planetary Change, 98-99: pg: 45--53, (DOI: 10.1016/j.gloplacha.2012.08.001). Cited by:
Harff, J., Flemming, N. C., Groh, A., Hunicke, B., Lericolais, G., Meschede, M., Rosentau, A., Sakellariou, D., Uscinowicz, S., Zhang, W., others, (2017), "Sea Level and Climate", Submerged Landscapes of the European Continental Shelf: Quaternary Paleoenvironments, John Wiley & Sons: pg: 11--49, . Cited by:
Harrison, B. J., Daron, J. D., Palmer, M. D., Weeks, J. H., (2021), "Future sea-level rise projections for tide gauge locations in South Asia", Environmental Research Communications, : . Cited by:
Hartmann, R., Ebbing, J., Conrad, C. P., (2020), "A Multiple 1D Earth Approach (M1DEA) to account for lateral viscosity variations in solutions of the sea level equation: An application for glacial isostatic adjustment by Antarctic deglaciation", Journal of Geodynamics, : pg: 101695, (DOI: 10.1016/j.jog.2020.101695). Cited by:
Howard, T., Pardaens, A. K., Bamber, J. L., Ridley, J., Spada, G., Hurkmans, R. T. W. L., Lowe, J. A., Vaughan, D., (2014), "Sources of 21st century regional sea-level rise along the coast of northwest Europe", Ocean Science, 10, 3: pg: 473--483, (DOI: 10.5194/os-10-473-2014). Cited by:
Howard, T., Pardaens, A. K., Lowe, J. A., Ridley, J., Hurkmans, R. T. W. L., Bamber, J. L., Spada, G., Vaughan, D., (2013), "Sources of 21st century regional sea level rise along the coast of North-West Europe", Ocean Science Discussions, 10, 6: pg: 2433--2459, (DOI: 10.5194/osd-10-2433-2013). Cited by:
Husson, L., Bodin, T., Spada, G., Choblet, G., Kreemer, C., (2018), "Bayesian surface reconstruction of geodetic uplift rates: mapping the global fingerprint of Glacial Isostatic Adjustment", Journal of Geodynamics, 122: pg: 25--40, (DOI: 10.1016/j.jog.2018.10.002). Cited by:
Jevrejeva, S., Moore, J. C., Grinsted, A., Matthews, A. P., Spada, G., (2014), "Trends and acceleration in global and regional sea levels since 1807", Global and Planetary Change, 113: pg: 11--22, (DOI: 10.1016/j.gloplacha.2013.12.004). Cited by:
Karkani, A., Evelpidou, N., Giaime, M., Marriner, N., Morhange, C., Spada, G., (2019), "Late Holocene sea-level evolution of Paros Island (Cyclades, Greece)", Quaternary International, 500: pg: 139--146, (DOI: 10.1016/j.quaint.2019.02.027). Cited by:
Kopp, R. E., Simons, F. J., Mitrovica, J. X., Maloof, A. C., Oppenheimer, M., (2009), "Probabilistic assessment of sea level during the last interglacial stage", Nature, 462, 7275: pg: 863--867, (DOI: 10.1038/nature08686). Cited by:
Lodolo, E., Galassi, G., Spada, G., Zecchin, M., Civile, D., Bressoux, M., Dias, J. M., (2020), "Post-LGM coastline evolution of the NW Sicilian Channel: Comparing high-resolution geophysical data with Glacial Isostatic Adjustment modeling", Plos One, 15, 2: pg: e0228087, (DOI: 10.1371/journal.pone.0228087). Cited by:
Lorscheid, T., Stocchi, P., Casella, E., Gomez-Pujol, L., Vacchi, M., Mann, T., Rovere, A., (2017), "Paleo sea-level changes and relative sea-level indicators: Precise measurements, indicative meaning and glacial isostatic adjustment perspectives from Mallorca (Western Mediterranean)", Palaeogeography, Palaeoclimatology, Palaeoecology, 473: pg: 94--107, (DOI: 10.1016/j.palaeo.2017.02.028). Cited by:
MacDougall, M. D. J., Braun, A., Fotopoulos, G., (2020), "Implications of glacial isostatic adjustment on petroleum reservoirs in the Grand banks of Newfoundland", Journal of Geodynamics, 140: pg: 101781, . Cited by:
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