Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/9137
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dc.contributor.authorallMusumeci, C.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Catania, Catania, Italiaen
dc.contributor.authorallScarfì, L.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Catania, Catania, Italiaen
dc.contributor.authorallPalano, M.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Catania, Catania, Italiaen
dc.contributor.authorallPatanè, D.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Catania, Catania, Italiaen
dc.date.accessioned2014-10-22T12:29:50Zen
dc.date.available2014-10-22T12:29:50Zen
dc.date.issued2014-09-03en
dc.identifier.urihttp://hdl.handle.net/2122/9137en
dc.description.abstractWe performed an in-depth analysis of the ongoing tectonics of a large sector of southern Sicily, including the Hyblean Foreland and the front of the Maghrebian Chain, as well as the Ionian Sea offshore, through the integration of seismic and GPS observations collected in the nearly two decades. In particular, a dataset consisting of more than 1100 small-to moderate-magnitude earthquakes (1.0 ≤ ML ≤ 4.6) has been used for local earthquake tomography in order to trace the characteristics of the faulting systems, and for focal mechanisms computation to resolve the current local stress field and to characterise the faulting regime of the investigated area. In addition, GPS measurements, carried out on both episodic and continuous stations, allowed us to infer the main features of the current crustal deformation pattern. Main results evidence that the Hyblean Plateau is subject to a general strike–slip faulting regime, with a maximum horizontal stress axis NW–SE to NNW–SSE oriented, in agreement with the Eurasia–Nubia direction of convergence. The Plateau is separated into two different tectonic crustal blocks by the left-lateral strike–slip Scicli–Ragusa Fault System. The western block moves in agreement with central Sicily while the eastern one accommodates part of the contraction arising from the main Eurasia–Nubia convergence. Furthermore, we provided evidences leading to consider the Hyblean–Maltese Escarpment Fault System as an active boundary characterised by a left-lateral strike–slip motion, separating the eastern block of the Plateau from the Ionian basin. All these evidences lend credit to a crustal segmentation of the southeastern Sicily.en
dc.language.isoEnglishen
dc.publisher.nameElsevier Science Limiteden
dc.relation.ispartofTectonophysicsen
dc.relation.ispartofseries/630(2014)en
dc.subjectSoutheastern Sicilyen
dc.subjectSeismotectonicsen
dc.subjectTomographyen
dc.subjectFocal mechanismsen
dc.subjectCrustal stressen
dc.subjectGeodetic strain rateen
dc.titleForeland segmentation along an active convergent margin: New constraints in southeastern Sicily (Italy) from seismic and geodetic observationsen
dc.typearticleen
dc.description.statusPublisheden
dc.type.QualityControlPeer-revieweden
dc.description.pagenumber137-149en
dc.subject.INGV04. Solid Earth::04.07. Tectonophysics::04.07.02. Geodynamicsen
dc.identifier.doi10.1016/j.tecto.2014.05.017en
dc.relation.referencesAdam, J., Reuther, C.D., Grasso, M., Torelli, L., 2000. Active fault kinematics and crustal stresses along the Ionian margin of southeastern Sicily. Tectonophysics, 326, 217-239. Amato, A., Azzara, R., Basili, A., Chiarabba, C., Cocco, M., Di Bona, M., Selvaggi, G., 1995. Main shock and aftershocks of the December 13, 1990, Eastern Sicily earthquake. Annali di Geofisica 38, 255-266. Argnani, A., Bonazzi, C.; 2005. The Malta Escarpment fault zone offshore eastern Sicily: Pliocene-Quaternary tectonic evolution based on new multichannel seismic data. Tectonics 24, TC4009, doi:10.1029/2004TC001656. Azzaro, R., Barbano, M. S., 2000. Analysis of the seismicity of Southeastern Sicily: a proposed tectonic interpretation, Annali di Geofisica 43, 171-188. Barreca, G., 2014. Geological and geophysical evidences for mud diapirism in south-eastern Sicily (Italy) and geodynamic implications. Journal of Geodynamics doi: 10.1016/j.jog.2014.02.003 Beutler, G., Moore, A.W., Mueller, I.I., 2008. The International Global Navigation Satellite Systems (GNSS) Service: developments and achievements. Journal of Geodesy 83 (3-4), 297-307, http://dx.doi.org/10.1007/s00190-008-0268-z. Bianca, M., Monaco, C., Tortorici, L., Cernobori, L., 1999. Quaternary normal faulting in southeastern Sicily (Italy): a seismic source for the 1693 large earthquake. Geophysical Journal International 139, 370-394. Billi, A., Porreca, M., Faccenna, C., Mattei, M., 2006. Magnetic and structural constraints for the non-cylindrical evolution of a continental forebulge (Hyblea, Italy). Tectonics 25, TC3011, doi: 10.1029/2005TC001800. Boccaletti, M., Cello, G., Tortorici, L., 1990. Strike-slip deformation as a fundamental process during the Neogene-Quaternary evolution of the Tunisian-Pelagian area. Annales Tectonicae 4, 104-119. Boschi, E., Guidoboni, E., Ferrari, G., Mariotti, D., Valensise, G.; 2000. Catalogue of strong Italian earthquakes. Annali di Geofisica 43, 268 pp. Bousquet, J.C., Lanzafame, G., 2004. Compression and Quaternary tectonic inversion on the Northern edge of the Hyblean Mountains, foreland of the Appenine-Maghrebian chain in Eastern Sicily (Italy): geodynamic implications for Mt. Etna. GeoActa 3, 165-177. Brancato, A., Hole, J.A., Gresta, S., Beale, J.N., 2009. Determination of seismogenic structures in southeastern Sicily (Italy) by high-precision relative relocation of microearthquakes. Bulletin of the Seismological Society of America 99 (3), 1921-1936. Butler, R.W.H., Grasso, M., La Manna, F., 1992. Origin and deformation of the Neogene-Recent Maghrebian foredeep at the Gela Nappe, SE Sicily. Journal of the Geological Society 149, 547-556. Catalano, S., De Guidi, G., Romagnoli, G., Torrisi, S., Tortorici, G., Tortorici, L., 2008. The migration of plate boundaries in SE Sicily: influence on the large-scale kinematic model of the African promontory in southern Italy. Tectonophysics 449, 41-62, doi:10.1016/j.tecto.2007.12.003. Catalano, S., Romagnoli, G., Tortorici, G., 2010. Kinematics and dynamics of the Late Quaternary rift flank deformation in the Hyblean Plateau (SE Sicily). Tectonophysics 486, 1-14, doi: 10.1016/j.tecto.2010.01.013. Chamot-Rooke, N., Rangin, C., Le Pichon, X., DOTMED Working Group, 2005. DOTMED-Deep Offshore Tectonics of the Mediterranean: Asynthesis of deep marine data in eastern Mediterranean (CD-ROM). Mémoires de la Société Géologique de France 177, 64 pp. Cocina, O., Neri, G., Privitera, E., Spampinato, S., 1997. Stress tensor computations in the Mount Etna area (southern Italy) and tectonic implications. Journal of Geodynamics 23, 2, 109-127. DeMets, C., Gordon, R. G., Argus, D. F., 2010. Geologically current plate motions. Geophysical Journal International 181,1-80, doi: 10.1111/j.1365-246X.2009.04491.x Devoti, R., Esposito, A., Pietrantonio, G., Pisani, A. R., Riguzzi, F., 2011. Evidence of large scale deformation patterns from GPS data in the Italian subduction boundary. Earth and Planetary Science Letters 311, 230-241, doi: 10.1016/j.epsl.2011.09.034. Doglioni, C., Innocenti, F., Mariotti, G., 2001. Why Mt Etna?, Terra Nova 13 (1), 25-31, doi:10.1046/j.1365-3121.2001.00301.x. England, P., Molnar, P., 1997. Active deformation of Asia: from kinematics to dynamics. Science 278, 647-650, http://dx.doi.org/10.1126/science.278.5338.647. Faccenna, C., Becker, T.W., Lucente, F.P., Jolivet, L., Rossetti, F., 2001. History of subduction and back-arc extension in the central Mediterranean. Geophysical Journal International 145, 809-820, doi:10.1046/j.0956-540X.2001.01435.x. Ferranti, L., Oldow, J.S., D’Argenio, B., Catalano, R., Lewis, D., Marsella, E., Avellone, G., Maschio, L., Pappone, G., Pepe, F., Sulli, A., 2008. Active deformation in Southern Italy, Sicily and southern Sardinia from GPS velocities of the Peri-Tyrrhenian Geodetic Array (PTGA). Bollettino della Società Geologica Italiana 127 (2), 299-316. Finetti, I.R., Del Ben, A., 1996. Crustal Tectono-Stratigraphic Setting of the Pelagian Foreland from New CROP Seismic Data. In: Finetti, I.R. (Ed.), CROP PROJECT: Deep Seismic Exploration of the Central Mediterranean and Italy. Chapter 26, 581-595. Finetti, I.R., Lentini, F., Carbone, S., Del Ben, A., Di Stefano, A., Forlin, E., Guarnieri, P., Pipan, M., Prizzon, A., 2005. Geological outline of Sicily and lithospheric tectono-dynamics of its Tyrrhenian margin fron CROP seismic data, in: Finetti I.R. (Ed.), CROP: Deep Seismic Exploration of thw Mediterranean region. Elsevier 15, 319-376. Gephart, J. W., 1990. Stress and the direction of slip on fault planes, Tectonics 9, 845-858. Gephart, J.W., Forsyth, D.W., 1984. An improved method for determining the regional stress tensor using earthquake focal mechanism data: application to the San Fernando earthquake sequence. Journal of Geophysical Research 89, 9305-9320. Ghisetti, F., Vezzani, L., 1980. The structural features of the Iblean plateau and of the Monte Iudica area (South Eastern Sicily). A microtectonic contribution to the deformational history of the Calabrian Arc. Bollettino della Società Geologica Italiana 99, 57–102. Gillard, D., Wyss, M., Okubo, P., 1996. Type of faulting and orientation of stress and strain as a function of space and time in Kilauea's south flank, Hawaii. Journal of Geophysical Research 101, 16025-16042. Grasso, M., Reuther, C.D., 1988. The western margin of Hyblean plateau: a neotectonic transform system on the SE Sicilian foreland. Annales Tectonicae 2, 107–120. Grasso, M., Pedley, H.M., Maniscalco, R., Ruggieri, R., 2000. Geological context and explanatory notes of the Carta Geologica del settore centromeridionale dell'Altopiano Ibleo. Memorie della Società Geologica Italiana 55, 45-52. Grasso, M., Behncke, B., Di Geronimo, I., Giuffrida, S., La Manna, F., Maniscalco, R., Pedley, H.M., Raffi, S., Schmincke, H.U., Strano, D., Sturiale, G., 2004. Carta geologica del bordo nord-occidentale dell'Avampaese Ibleo e del fronte della Falda di Gela. Firenze: S.EL.C.A. Gruppo Analisi Dati Sismici, 2013. Catalogo dei terremoti della Sicilia Orientale - Calabria Meridionale (1999-2011). INGV-Catania, http://www.ct.ingv.it/ufs/analisti/catalogolist.php Guidoboni, E., Ferrari, G., Mariotti, D., Comastri, A., Tarabusi, G., Valensise, G., 2007. CFTI4Med, Catalogue of Strong Earthquakes in Italy (461 B.C.-1997) and Mediterranean Area (760 B.C.-1500). INGV-SGA, http://storing.ingv.it/cfti4med. He, D.F., Yin, C., Du, S.K., Shi, X., Ma, H.S., 2004. Characteristics of structural segmentation of foreland thrust belts-a case study of the fault belts in the northwestern margin of Junggar Basin (in Chinese with English abstract). Earth Science Frontiers 11, 91-101. Herring, T.A., King, R.W., McClusky, S.C., 2010. Introduction to GAMIT/GLOBK, Release 10.4. Massachusetts Institute of Technology, Cambridge MA, 1-48. Husen, S., Kissling, E., Flueh, E., Asch, G., 1999. Accurate hypocentre determination in the seismogenic zone of the subducting Nazca plate in northern Chile using a combined on-/offshore network. Geophysical Journal International 138, 687–701. Iaffa, D. N., Sàbat, F., Muñoz, J. A., Carrera, N., 2013. Basin fragmentation controlled by tectonic inversion and basement uplift in Sierras Pampeanas and Santa Barbara System, northwest Argentina. Geological Society, London, Special Publications 377, (101-117), doi: 10.1144/SP377.13. Jordan, T.E., Schlunegger, F., Cardozo, N., 2001. Unsteady and spatially variable evolution of the Neogene Andean Bermejo foreland basin, Argentina. Journal of South American Earth Sciences 14, 775-798, doi: 10.1016/S0895-9811(01)00072-4. Lavecchia, G., Ferrarini, F., De Nardis, R., Visini, F., Barbano, M.S., 2007. Active thrusting as a possible seismogenic source in Sicily (southern Italy): Some insights from integrated structural-kinematic and seismological data. Tectonophysics 445, 145-167, doi:10.1016/j.tecto.2007.07.007. Lu, H.F., Chen, C.M., Liu, Z.H., Jia, D., Wang, G.Q., Jia, C.Z., 2000. The structural features and origin of the Kuqa rejuvenation foreland thrust belt (in Chinese with English abstract). Acta Petrolei Sinica 21, 18-24. Malinverno, A., Ryan, W.B.F., 1986. Extension in the Tyrrhenian Sea and shortening in the Apennines as result of arc migration driven by sinking of the lithosphere. Tectonics 5(2), 227-245, doi:10.1029/TC005i002p00227. Mantovani, E., Babbucci, D., Tamburelli, C., Viti, M., 2009. A review on the driving mechanism of the Tyrrhenian–Apennines system: Implications for the present seismotectonic setting in the Central-Northern Apennines. Tectonophysics 476, 22-40, doi:10.1016/j.tecto.2008.10.032. Manuella, F.C., Brancato, A., Carbone, S., Gresta, S., 2013. A crustal-upper mantle model for southeastern Sicily (Italy) from the integration of petrologic and geophysical data. Journal of Geodynamics 66, 92-102. Mattia, M., Bruno, V., Cannavò, F., Palano, M., 2012. Evidences of a contractional pattern along the northern rim of the Hyblean Plateau (Sicily, Italy) from GPS data. Geologica Acta 10, 1–9, doi:10.1344/105000001705. Michael, A.J.; 1987. Use of Focal Mechanisms to Determine Stress: A Control Study. Journal of Geophysical Research 92, 357-368. Monaco, C., Tortorici, L., Nicolich, R., Cernobori, L., Costa, M., 1996. From collisional to rifted basins: An example from the southern Calabrian arc (Italy). Tectonophysics 266, 233-249, doi:10.1016/S0040-1951(96)00192-8. Musumeci, C., Di Grazia, G., Gresta, S., 2003. Minimum 1-D velocity model in Southeastern Sicily (Italy) from local earthquake data. Journal of Seismology 7, 469-478. Musumeci, C., Patanè, D., Scarfì, L., Gresta, S., 2005. Stress Directions and Shear-Wave Anisotropy: Observations from Local Earthquakes in Southeastern Sicily, Italy. Bulletin of the Seismological Society of America 95, 4, 1359-1374, doi:10.1785/0120040108. Nicolich, R., Laigle, M., Hirn, A., Cernobori, L., Gallard, J.; 2000. Crustal structure of the Ionian margin of Sicily: Etna volcano in the frame of regional evolution. Tectonophysics 329, 121-139, doi:10.1016/S0040-1951(00)00192-X. O’Connel, R.J., Budiansky, B., 1974. Seismic velocities in dry and saturated cracked solids. Journal of Geophysical Research 79: 5412-5426. Oldow, J.S., Ferranti, L., Lewis, D.S., Campbell, J.K., D’Argenio, B., Catalano, R., Pappone, G., Carmignani, L., Conti, P., Aiken, C.L.V., 2002. Active fragmentation of Adria, the north African promontory, central Mediterranean orogen. Geology 30 (9), 779-782, doi: 10.1130/0091-7613. Palano, M., Cannavò, F., Ferranti, L., Mattia, M., Mazzella, M.E., 2011. Strain and stress fields in the Southern Apennines (Italy) constrained by geodetic, seismological and borehole data. Geophysical Journal International 187, 1270-1282, doi: 10.1111/j.1365-246X.2011.05234.x. Palano, M., Ferranti, L., Monaco, C., Mattia, M., Aloisi, M., Bruno, V., Cannavò, F., Siligato, G., 2012. GPS velocity and strain fields in Sicily and southern Calabria, Italy: Updated geodetic constraints on tectonic block interaction in the central Mediterranean. Journal of Geophysical Research 117, B07401, doi:10.1029/2012JB009254. Palano, M., Imprescia, P., Gresta, S., 2013. Current stress and strain-rate fields across the Dead Sea Fault System: Constraints from seismological data and GPS observations. Earth and Planetary Science Letters 369-370, 305-316, doi:10.1016/j.epsl.2013.03.043. Parker, R.L., McNutt, M.K., 1980. Statistics for the one norm misfit measure. Journal of Geophysical Research 85, 4429-4430. Patacca, E., Sartori, R., Scandone, P., 1990. Tyrrhenian basin and Apenninic arcs. Kinematic relations since late Tortonian times. Memorie della Società Geologica Italiana 45, 425-451. Polonia, A., Torelli, L., Mussoni, P., Gasperini, L., Artoni, A., Klaeschen, D., 2011. The Calabrian Arc subduction complex in the Ionian Sea: Regional architecture, active deformation, and seismic hazard. Tectonics 30, TC5018, doi:10.1029/2010TC002821. Presti D., Billi A., Orecchio B., Totaro C., Faccenna C., Neri G., 2013. Earthquake focal mechanisms, seismogenic stress, and seismotectonics of the Calabrian Arc, Italy. Tectonophysics, 602, 153-175, doi: 10.1016/j.tecto.2013.01.030. Ragg, S., Grasso, M., Müller, B., 1999. Patterns of tectonic stress in Sicily from borehole breakout observations and finite element modeling. Tectonic 18(4), 669-685, doi: 10.1029/1999TC900010. Reasenberg, P.A., Oppenheimer, D., 1985. Fortran computer programs for calculating and displaying earthquake fault-plane solutions. U.S. Geol. Surv., Open File Rept. 85-379, 109 pp. Scarfì, L., Giampiccolo, E., Musumeci, C., Patanè, D., Zhang, H., 2007. New insights on 3D crustal structure in Southeastern Sicily (Italy) and tectonic implications from an adaptive mesh seismic tomography. Physics of the Earth and Planetary Interiors 161, 74-85. Scarfì, L., Langer, H., Scaltrito, A., 2009. Seismicity, seismotectonics and crustal velocity structure of the Messina Strait (Italy). Physics of the Earth and Planetary Interiors 177, 65-78, doi:10.1016/j.pepi.2009.07.010. Scarfì, L., Messina, A., Cassisi, C., 2013. Sicily and southern Calabria focal mechanism database: a valuable tool for local and regional stress-field determination. Annals of Geophysics, 56, 1, D0109; doi:10.4401/ag-6109. Sgroi, T., de Nardis, R., Lavecchia, G., 2012. Crustal structure and seismotectonics of central Sicily (southern Italy): new constraints from instrumental seismicity. Geophysical Journal International 189, 1237-1252. Sirovich, L., Pettenati, F., 2001. Test of source parameters inversion of the intensities of a 54,000-death shock of the XVII Century in SE Sicily. Bulletin of the Seismological Society of America 91, 4, 792-811. Spampinato, C.R., Braitenberg, C., Monaco, C., Scicchitano, G., 2013. Analysis of vertical movements in eastern Sicily and southern Calabria (Italy) through geodetic leveling data. Journal of Geodynamics 66, 1-12, doi: 10.1016/j.jog.2012.12.002. Tapponnier, P., Meyer, B., Avouac, J.P., Peltzer, G., Gaudemer, Y., Guo, S.M., Xiang, H.F., Yin, K.L., Chen, Z.T., Cai, S.H., Dai, H.G., 1990. Active thrusting and folding in the Qilian Shan, and decoupling between upper crust and mantle in northeastern Tibet. Earth and Planetary Science Letters 97 (3-4), 382-403, doi: 10.1016/0012-821X(90)90053-Z. Thurber, C.H., Roecker, S., Ellsworth, W., Chen, Y., Lutter, W., Sessions, R., 1997. Two-dimensional seismic image of the San Andreas fault in the northern Gabilan Range, central California: evidence for fluids in the fault zone. Geophysical Research Letters 24, 1591–1594. Torelli, L., Grasso, M., Mazzoldi, G., Peis, D., 1998. Plio–Quaternary tectonic evolution and structure of the Catania foredeep, the northern Hyblean Plateau and the Ionian shelf (SE Sicily). Tectonophysics 298, 30, 209-221. Tortorici, L., Monaco, C., Mazzoli, S., Bianca, M., 2001. Timing and modes of deformation in the western Sicilian thrust system, Southern Italy. Journal of Petroleum Geology 24(2), 191-211, doi:10.1111/j.1747-5457.2001.tb00667.x. Visini, F., de Nardis, R., Barbano, M.S., Lavecchia, G., 2009. Testing the seismogenic sources of the January 11th 1693 Sicilian earthquake (Io X/XI): insights from macroseismic field simulations. Italian Journal of Geosciences 128(1), 147-156. Visini, F., de Nardis, R., Lavecchia, G., 2010. Rates of active compressional deformation in central Italy and Sicily: evaluation of the seismic budget. International Journal of Earth Sciences 99, S243–S264. doi: 10.1007/s00531-009-0473-x. Wessel, P., Bercovici, D., 1998. Interpolation with splines in tension: a Green’s function approach. Mathematical Geology 30, 77-93. Wiemer, S., 2001. A software package to analyze seismicity: ZMAP, Seismological Research Letters 72, 373-382. Wyss, M., Liang, B., Tanigawa, W. R., Xiaoping, W., 1992. Comparison of orientations of stress and strain tensor based on fault plane solutions in Kaoiki, Hawaii. Journal of Geophysical Research 97, 4769-4790. Wyss, M., Lu, Z., 1995. Plate boundary segmentation by stress directions: southern San Andreas fault, California. Geophysical Research Letters 22, 547-550. Zhang, H., Thurber, C., Bedrosian, P., 2009. Joint inversion for Vp, Vs, and Vp/Vs at SAFOD, Parkfield, California. Geochemistry, Geophysics, Geosystems 10:Q110032, doi:10.1029/2009GC002709. Zoback, M.L., 1992. First- and second-order patterns of stress in the lithosphere: the World Stress Map Project. Journal of Geophysical Research 97 (B8), 11703-11728.en
dc.description.obiettivoSpecifico1T. Geodinamica e interno della Terraen
dc.description.journalTypeJCR Journalen
dc.description.fulltextopenen
dc.relation.issn0040-1951en
dc.relation.eissn1879-3266en
dc.contributor.authorMusumeci, C.en
dc.contributor.authorScarfì, L.en
dc.contributor.authorPalano, M.en
dc.contributor.authorPatanè, D.en
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italiaen
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italiaen
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italiaen
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italiaen
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crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OE, Catania, Italia-
crisitem.author.orcid0000-0002-0143-4594-
crisitem.author.orcid0000-0002-5995-3880-
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crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.classification.parent04. Solid Earth-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
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