Generation and Disruption of Subducted Lithosphere in the Central-Western Mediterranean Region and Time-Space Distribution of Magmatic Activity Since the Late Miocene
暂无分享,去创建一个
[1] M. Viti,et al. Basic Role of Extrusion Processes in the Late Cenozoic Evolution of the Western and Central Mediterranean Belts , 2021, Geosciences.
[2] M. Viti,et al. Possible Multiple Sources of the Strong 1117 Po Plain Earthquake, Inferred from the Plio-Quaternary Evolution of the Northern Adriatic Area , 2021, International journal of geosciences.
[3] L. Jolivet,et al. Geodynamic evolution of a wide plate boundary in the Western Mediterranean, near-field versus far-field interactions , 2021, BSGF - Earth Sciences Bulletin.
[4] A. Brogi. Late evolution of the inner Northern Apennines from the structure of the Monti del Chianti-Monte Cetona Ridge (Tuscany, Italy) , 2020, Journal of Structural Geology.
[5] N. Cenni,et al. Geodynamics of the central-western Mediterranean region: plausible and non-plausible driving forces , 2020 .
[6] N. Cenni,et al. How and why the present tectonic setting in the Apennine belt has developed , 2019, Journal of the Geological Society.
[7] J. Lofi,et al. The Western Tyrrhenian Sea revisited:: New evidence for a rifted basin during the Messinian Salinity Crisis , 2018 .
[8] D. Patanè,et al. Slab narrowing in the Central Mediterranean: the Calabro-Ionian subduction zone as imaged by high resolution seismic tomography , 2018, Scientific Reports.
[9] Roberto Basili,et al. The Calabrian Arc: three-dimensional modelling of the subduction interface , 2017, Scientific Reports.
[10] Y. Niu. Slab breakoff: a causal mechanism or pure convenience? , 2017, Science bulletin.
[11] A. D. Ben,et al. Seismic evidence of the rebound of the Adria foreland and the current geodynamics of the Central and Southern Apennines (Italy) , 2016 .
[12] M. Handy,et al. Transition from orogen-perpendicular to orogen-parallel exhumation and cooling during crustal indentation — Key constraints from 147Sm/144Nd and 87Rb/87Sr geochronology (Tauern Window, Alps) , 2015 .
[13] A. Peccerillo,et al. Magmatism, mantle evolution and geodynamics at the converging plate margins of Italy , 2015, Journal of the Geological Society.
[14] N. Cenni,et al. Generation of Back-Arc Basins as Side Effect of Shortening Processes: Examples from the Central Mediterranean , 2014 .
[15] S. Dominici,et al. Hinterland basin development and infilling through tectonic and eustatic processes: latest Messinian‐Gelasian Valdelsa Basin, Northern Apennines, Italy , 2014 .
[16] Paolo Baldi,et al. Present vertical movements in Central and Northern Italy from GPS data: Possible role of natural and anthropogenic causes , 2013 .
[17] C. Berndt,et al. Early‐stage rifting of the northern Tyrrhenian Sea Basin: Results from a combined wide‐angle and multichannel seismic study , 2013 .
[18] Stefano Solarino,et al. Can local earthquake tomography settle the matter about subduction in the Northern and Central Ap , 2012 .
[19] Paolo Baldi,et al. Present kinematics of Central and Northern Italy from continuous GPS measurements , 2012 .
[20] G. Neri,et al. How lithospheric subduction changes along the Calabrian Arc in southern Italy: geophysical evidences , 2009, International Journal of Earth Sciences.
[21] M. Viti,et al. Plate kinematics and geodynamics in the central Mediterranean. , 2011 .
[22] Mark B. Allen,et al. Continental collision and slab break-off: A comparison of 3-D numerical models with observations , 2011 .
[23] A. Peccerillo,et al. Tertiary to Present Evolution of Orogenic Magmatism in Italy , 2010 .
[24] G. Luca,et al. Seismicity in Central and Northern Apennines integrating the Italian national and regional networks , 2009 .
[25] Stefano Solarino,et al. P wave seismic velocity and Vp/Vs ratio beneath the Italian peninsula from local earthquake tomography , 2009 .
[26] D. Albarello,et al. Nubia-Eurasia kinematics: an alternative interpretation from Mediterranean and North Atlantic evidence , 2007 .
[27] M. Wilson,et al. The circum-Mediterranean anorogenic Cenozoic igneous province , 2007 .
[28] Luigi Cantelli,et al. The Alpine evolution of the Southern Alps around the Giudicarie faults: A Late Cretaceous to Early Eocene transfer zone , 2006 .
[29] D. Morata,et al. Miocene to Late Quaternary Patagonian basalts (46-47°S): Geochronometric and geochemical evidence for slab tearing due to active spreading ridge subduction , 2006 .
[30] Florent de Lamotte,et al. E–W opening of the Algerian Basin (Western Mediterranean) , 2004 .
[31] T. Trua,et al. Lateral flow of African mantle below the nearby Tyrrhenian plate: geochemical evidence , 2003 .
[32] A. Peccerillo. Plio-Quaternary magmatism in Italy , 2003 .
[33] Jeffrey Park,et al. Seismic evidence for catastrophic slab loss beneath Kamchatka , 2002, Nature.
[34] A. Peccerillo. Geochemical similarities between the Vesuvius, Phlegraean Fields and Stromboli Volcanoes: petrogenetic, geodynamic and volcanological implications , 2001 .
[35] W. Spakman,et al. Subduction and slab detachment in the Mediterranean-Carpathian region. , 2000, Science.
[36] F. P. Lucente,et al. Crustal and uppermost mantle structure in Italy fron the inversion of P-wave arrival times: geodynamic impliations , 1999 .
[37] Luigi Carmignani,et al. Tertiary extensional tectonics in Tuscany (Northern Apennines, Italy) , 1994 .
[38] I. Martini,et al. Tectono-sedimentary characteristics of Late Miocene-Quaternary extensional basins of the Northern Apennines, Italy , 1993 .