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    العلاقة: Compressional Tectonics: Plate Convergence to Mountain Building, Volume 1; Kitap Bölümü - Uluslararası; Yılmaz, Y., Yiğitbaş, E. and Çemen, İ. (2023). Tectonics of the Southeast Anatolian Orogenic Belt. In Compressional Tectonics (eds E.J. Catlos and İ. Çemen). https://doi.org/10.1002/9781119773856.ch7Test; https://doi.org/10.1002/9781119773856.ch7Test; https://hdl.handle.net/20.500.12428/5311Test; 203; 222; 2-s2.0-85161697711

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    المساهمون: DiSTAR, Università di Napoli Federico II, Napoli, Department of Mathematics and Geosciences, University of Trieste, Trieste, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OV, Napoli, Italia, Department of Chemical and Geological Sciences, University of Modena and Reggio Emilia Modena, Italy

    العلاقة: Basin Research; /33 (2021); Allen, P. A., Crampton, S. L., & Sinclair, H. D. (1991). The inception and early evolution of the North Alpine Foreland Basin, Switzerland. Basin Research, 3, 143–163. https://doi.org/10.1111Test/ j.1365-2117.1991.tb00124.x Allen, P. A., Homewood, P., & Williams, G. D. (1986). Foreland basins: An introduction. In P. A. Allen & P. Homewood (Eds.), Foreland basins (pp. 3–12). International Association of Sedimentology, Special Publication. Ascione, A., Ciarcia, S., Di Donato, V., Mazzoli, S., & Vitale, S. (2012). The Pliocene-Quaternary wedge-top basins of southern Italy: An expression of propagating lateral slab tear beneath the Apennines. Basin Research, 24, 456–474. https://doiTest. org/10.1111/j.1365-2117.2011.00534.x Babić, L., & Zupanič, J. (2012). Laterally variable development of a basin-wide transgressive unit of the North Dalmatian Foreland Basin (Eocene, Dinarides, Croatia). Geologia Croatica, 65, 1–28. https://doi.org/10.4154/GC.2012.01Test Bernoulli, D. (2001). Mesozoic-Tertiary carbonate platforms, slopes and basins of the external Apennines and Sicily. In G. B. Vai & I. P. Martini (Eds.), Anatomy of an orogen: The Apennines and adjacent Mediterranean basins (pp. 307–325). Springer. https://doiTest. org/10.1007/978-94-015-9829-3_18 Bigi, S., Milli, S., Corrado, S., Casero, P., Aldega, L., Botti, F., Moscatelli, M., Stanzione, O., Falcini, F., Marini, M., & Cannata, D. (2009). Stratigraphy, structural setting and burial history of the Messinian Laga basin in the context of Apennine foreland basin system. Journal of Mediterranean Earth Sciences, 1, 61–84. https://doiTest. org/10.3304/JMES.2009.006 Billi, A., & Salvini, F. (2003). Development of systematic joints in response to flexure-related fibre stress in flexed foreland plates: The Apulian forebulge case history, Italy. Journal of Geodynamics, 36, 523–536. https://doi.org/10.1016/S0264-3707Test(03)00086-3 Bonardi, G., Cinque, A., De Capoa, P., Di Staso, A., Esposito, P., Guida, D., Mazzoli, S., Parente, M., Radoičić, R., Sgrosso, A., Siervo, V., & Zamparelli, V. (2016). Note illustrative della Carta Geologica d'Italia alla scala 1: 50.000 - Foglio 521 "Lauria" (p. 129). Servizio Geologico d’Italia, ISPRA. Boni, M. (1974). Le argille rosse continentali del passaggio PaleoceneMiocene nella piattaforma carbonatica campano-lucana. Bollettino Della Società Geologica Italiana, 93, 1059–1094. Bosellini, A. (2004). The western passive margin of Adria and its carbonate platforms. In Special Volume of the Italian Geological Society for the 32nd International Geological Congress, Florence, Italy (pp. 79–92). Bosence, D. (2005). A genetic classification of carbonate platforms based on their basinal and tectonic settings in the Cenozoic. Sedimentary Geology, 175, 49–72. https://doi.org/10.1016/j.sedgeo.2004.12.030Test Bradley, D. C., & Kidd, W. S. F. (1991). Flexural extension of the upper continental crust in collisional foredeeps. Geological Society of America Bulletin, 103, 1416–1438. https://doi.org/10.1130/0016Test- 7606(1991)1032.3.CO;2 Brandano, M., Corda, L., & Castorina, F. (2012). Facies and sequence architecture of a tropical foramol-rhodalgal carbonate ramp: Miocene of the Central Apennines (Italy). In M. Mutti, W. Piller, & C. Betzler (Eds.), Carbonate systems during the Oligocene-Miocene climatic transition (pp. 107–128). IAS (International Association of Sedimentologists) Special Publication. Wiley-Blackwell. https:// doi.org/10.1002/9781118398364.ch7 Brandano, M., Cornacchia, I., Raffi, I., Tomassetti, L., & Agostini, S. (2017). The Monterey Event within the Central Mediterranean area: The shallow-water record. 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Tectonic control on the architecture of a Miocene carbonate ramp in the Central Apennines (Italy): Insights from facies and backstripping analyses. Sedimentary Geology, 198, 233–253. https://doiTest. org/10.1016/j.sedgeo.2006.12.005 Carminati, E., & Doglioni, C. (2012). Alps vs. Apennines: The paradigm of a tectonically asymmetric Earth. Earth-Science Reviews, 112, 67–96. https://doi.org/10.1016/j.earscirev.2012.02.004Test Carminati, E., Fabbi, S., & Santantonio, M. (2014). Slab bending, syn-subduction normal faulting, and out-of-sequence thrusting in the Central Apennines. Tectonics, 33, 530–551. https://doiTest. org/10.1002/2013TC003386 Carnevale, G., Patacca, E., Scandone, P., & Pisa, U. (2011). Field guide to the post-conference excursions (Scontrone, Palena and Montagna della Majella). In International Conference “Neogene Park: Vertebrate Migration in the Mediterranean & Paratethys”. 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Journal of Geodynamics, 27, 191–211. https://doiTest. org/10.1016/S0264-3707(97)00072-0 Chiocchini, M., Farinacci, A., Mancinelli, A., Molinari, V., & Potetti, M. (1994). Biostratigrafia a foraminiferi, dasicladali e calpionelle delle successioni carbonatiche mesozoiche dell’Appennino centrale (Italia). In A. Mancinelli (Ed.), Biostratigrafia dell'Italia Centrale. Studi Geologici Camerti (pp. 9–129). Università di Camerino. Chiocchini, M., & Mancinelli, A. (1977). Microbiostratigrafia del Mesozoico in facies di piattaforma carbonatica dei Monti Aurunci (Lazio meridionale). Studi Geologici Camerti, 3, 109–152. Cipollari, P., & Cosentino, D. (1995). Miocene unconformities in the Central Apennines: Geodynamic significance and sedimentary basin evolution. Tectonophysics, 252, 375–389. https://doiTest. org/10.1016/0040-1951(95)00088-7 Civitelli, G., & Brandano, M. (2005). The «Calcari a Briozoi e Litotamni» in the Latium-Abruzzi carbonate platform (Central Apennines, Italy): Atlas of the lithofacies and depositional model. Bollettino Della Società Geologica Italiana, 124, 611–643. Consorti, L., Sabbatino, M., & Parente, M. (2020). Insights on the paleoecology of Ammonia (Foraminifera, Rotalioidea) from Miocene carbonates of central and southern Apennines (Italy). Palaeogeography, Palaeoclimatology, Palaeoecology, 562, 110105. https://doi.org/10.1016/j.palaeo.2020.110105Test Cosentino, D., Cipollari, P., Marsili, P., & Scrocca, D. (2010). Geology of the central Apennines: A regional review. Journal of the Virtual Explorer, 36, 1–37. https://doi.org/10.3809/jvirtex.2010.00223Test Crampton, S. L., & Allen, P. A. (1995). Recognition of forebulge unconformities associated with early stage foreland basin development: Example from the North Alpine Foreland Basin. AAPG Bulletin, 79, 1495–1514. Critelli, S., Muto, F., Tripodi, V., Perri, F., & Schattner, U. (2011). Relationships between lithospheric flexure, thrust tectonics and stratigraphic sequences in foreland setting: The Southern Apennines foreland basin system, Italy. In U. Schattner (Ed.), New frontiers in tectonic research - At the midst of plate convergence (pp. 121–170). Tech Open Access Publisher. https://doi.org/10.5772/24120Test Curzi, M., Billi, A., Carminati, E., Rossetti, F., Albert, R., Aldega, L., Cardello, G. L., Conti, A., Gerdes, A., Smeraglia, L., Van der Lelij, R., Vignaroli, G., & Viola, G. (2020). Disproving the presence of Paleozoic-Triassic metamorphic rocks on the Island of Zannone (central Italy): Implications for the early stages of the TyrrhenianApennines tectonic evolution. Tectonics, 39, 1–25. https://doiTest. org/10.1029/2020TC006296 D’Errico, M., & Di Staso, A. (2010). Stratigraphic revision of the Cenozoic deposits of the Lungro-Verbicaro Unit (Northern Calabria): New data for the reconstruction of tectonic evolution of the southern Apennines. 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(1998). Eoceneearly Miocene foreland basin development and the history of Himalayan thrusting, western and central Nepal. Tectonics, 17, 741– 765. https://doi.org/10.1029/98TC02598Test DeCelles, P. G., & Giles, K. A. (1996). Foreland basin systems. Basin Research, 8, 105–123. https://doi.org/10.1046/j.1365-2117Test. 1996.01491.x DePaolo, D. J., & Ingram, B. L. (1985). High-resolution stratigraphy with strontium isotopes. Science, 227, 938–942. https://doiTest. org/10.1126/science.227.4689.938 Dewey, J. F., Helman, M. L., Turco, E., Hutton, D. H. W., & Knott, S. D. (1989) Kinematics of the western Mediterranean. In M. P. Coward, D. Dietrich, & R. G. Park (Eds.), Alpine tectonics (Vol. 45, pp. 265– 283). Geological Society Special Publication. Doglioni, C. (1991). A proposal for the kinematic modelling of Wdipping subductions-possible applications to the TyrrhenianApennines system. Terra Nova, 3, 423–434. https://doi.org/10.1111Test/ j.1365-3121.1991.tb00172.x Doglioni, C. (1995). Geological remarks on the relationships between extension and convergent geodynamic settings. Tectonophysics, 252, 253–267. https://doi.org/10.1016/0040-1951Test(95)00087-9 Doglioni, C., Mongelli, F., & Pieri, P. (1994). The Puglia uplift (SE Italy): An anomaly in the foreland of the Apenninic subduction due to buckling of a thick continental lithosphere. Tectonics, 13, 1309– 1321. https://doi.org/10.1029/94TC01501Test Dorobek, S. L. (1995). Synorogenic carbonate platforms and reefs in foreland basins: Controls on stratigraphic evolution and platform/reef morphology. In S. L. Dorobek & G. M. Ross (Eds.), Stratigraphic Evolution of Foreland Basins (Vol. 52, pp. 127–147). SEPM (Society for Sedimentary Geology) Special Publication. https://doi.org/10.2110/pec.95.52.0127Test Faccenna, C., Becker, T. W., Auer, L., Billi, A., Boschi, L., Brun, J. P., Capitanio, F. A., Funiciello, F., Horvàth, F., Jolivet, L., Piromallo, C., Royden, L., Rossetti, F., & Serpelloni, E. (2014). Mantle dynamics in the Mediterranean. Reviews of Geophysics, 52, 283–332. https://doi.org/10.1002/2013RG000Test 444 Faccenna, C., Funiciello, F., Giardini, D., & Lucente, P. (2001). Episodic back-arc extension during restricted mantle convection in the Central Mediterranean. Earth and Planetary Science Letters, 1Faccenna, C., Mattei, M., Funiciello, R., & Jolivet, L. (1997). Styles of back-arc extension in the Central Mediterranean. Terra Nova, 9, 126–130. https://doi.org/10.1046/j.1365-3121.1997.d01-12.xTest Flemings, P. B., & Jordan, T. E. (1990). Stratigraphic modeling of foreland basins: Interpreting thrust deformation and lithosphere rheology. Geology, 18, 430–434. https://doi.org/10.1130/0091Test- 7613(1990)0182.3.CO;2 Frijia, G., & Parente, M. (2008). Strontium isotope stratigraphy in the upper Cenomanian shallow-water carbonates of the southern Apennines: Short-term perturbations of marine 87Sr/86Sr during the oceanic anoxic event 2. 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Geological Society of America Bulletin, 121, 963–978. https://doi.org/10.1130/B26035.1Test Iannace, A., Vitale, S., D’Errico, M., Mazzoli, S., Di Staso, A., Macaione, E., Messina, A., Reddy, S. M., Somma, R., Zamparelli, V., Zattin, M., & Bonardi, G. (2007). The carbonate tectonic units of northern Calabria (Italy): A record of Apulian palaeomargin evolution and Miocene convergence, continental crust subduction and exhumation of HP-LT rocks. Journal of Geological Society of London, 164, 1165–1186. https://doi.org/10.1144/0016-76492007-017Test Iannone, A., & Pieri, P. (1983). Rapporti fra i prodotti residuali del carsismo e la sedimentazione quaternaria nell’area delle Murge. Rivista Italiana Di Paleontologia E Stratigrafia, 88, 319–330. ISPRA. (2021). Italy territory Institute for Environmental Protection and Research of Italy. http://www.sinanet.isprambiente.it/it/siaispra/download-mais/dem20/viewTest La Bruna, V., Agosta, F., Lamarche, J., Viseur, S., & Prosser, G. (2018). Fault growth mechanisms and scaling properties in foreland basin system: The case study of Monte Alpi, Southern Apennines,87(1–2), 105– 116. https://doi.org/10.1016/S0012-821XTest(01)00280-1 Italy. Journal of Structural Geology, 116, 94–113. https://doiTest. org/10.1016/j.jsg.2018.08.009 Lees, A. (1975). Possible influence of salinity and temperature on modern shelf carbonate sedimentation. Marine Geology, 19, 159–198. https://doi.org/10.1016/0025-3227Test(75)90067-5 Leszczyński, S., & Nemec, W. (2015). Dynamic stratigraphy of composite peripheral unconformity in a foredeep basin. Sedimentology, 62, 645–680. https://doi.org/10.1111/sed.12155Test Lirer, F., Persico, D., & Vigorito, M. (2005). Calcareous plankton biostratigraphy and age of the Middle Miocene deposits of Longano Formation (eastern Matese Mountains, southern Apennines). Rivista Italiana Di Paleontologia E Stratigrafia, 111, 91–108. https://doiTest. org/10.13130/2039-4942/6277 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, 227–245. https:// doi.org/10.1029/TC005i002p00227 Mazzoli, S., Aldega, L., Corrado, S., Invernizzi, C., & Zattin, M. (2006). Pliocene-quaternary thrusting, syn-orogenic extension and tectonic exhumation in the Southern Apennines (Italy): Insights from the Monte Alpi area. Special Papers Geological Society of America, 414, 55–77. https://doi.org/10.1130/2006.2414Test(04) Mazzoli, S., D'errico, M., Aldega, L., Corrado, S., Invernizzi, C., Shiner, P., & Zattin, M. (2008). Tectonic burial and “young” (2.0.CO;2 Sabbatino, M., Vitale, S., Tavani, S., Consorti, L., Corradetti, A., Cipriani, A., Arienzo, I., & Parente, M. (2020). Constraining the onset of flexural subsidence and peripheral bulge extension in the Miocene foreland of the southern Apennines (Italy) by Sr-isotope stratigraphy. Sedimentary Geology, 401, 105634. https://doiTest. org/10.1016/j.sedgeo.2020.105634 Saura, E., Garcia-Castellanos, D., Casciello, E., Parravano, V., Urruela, A., & Vergés, J. (2015). Modeling the flexural evolution of the Amiran and Mesopotamian foreland basins of NW Zagros (IranIraq). Tectonics, 34(3), 377–395. https://doi.org/10.1002/2014TTest C003660 Selli, R. (1957). Sulla trasgressione del Miocene nell’Italia meridionale. Giornale Geologia, 26, 1–54. Selli, R. (1962). Il Paleogene nel quadro della geologia dell’Italia Meridionale. Memorie Della Società Geologica Italiana, 3, 733–789. Sgrosso, I. (1998). Possibile evoluzione cinematica miocenica nell’orogene Centro-Sud-Appenninico. Bolletino Della Società Geologica Italiana, 117(3), 679–724. Sinclair, H. D. (1997). Tectonostratigraphic model for underfilled peripheral foreland basins: An Alpine perspective. Geological Society of America Bulletin, 109, 324–346. https://doi.org/10.1130/0016Test- 7606(1997)1092.3.CO;2 Steuber, T. (2003). Strontium isotope stratigraphy of Cretaceous hippuritid rudist bivalves: Rates of morphological change and heterochronic evolution. Palaeogeography, Palaeoclimatology, Palaeoecology, 200, 221–243. https://doi.org/10.1016/S0031Test -0182(03)00452-8 Taddei, A., & Siano, M. G. (1992). Analisi biostratigrafica e considerazioni paleoecologiche sulla successione Neogenica del Monte Alpi (Lucania). Bollettino Della Società Geologica Italiana, 111, 255–272. Taddei Ruggiero, E. (1996). Biostratigrafia e paleoecologia delle Calcareniti di Gravina nei dintorni di Cerignola (brachiopodi e foraminiferi). Memorie Della Società Geologica Italiana, 51, 197–207. Tavani, S., Granado, P., Corradetti, A., Camanni, G., Vignaroli, G., Manatschal, G., Mazzoli, S., Muñoz, J. A., & Parente, M. (2021). Rift inheritance controls the switch from thin- to thick- skinned thrusting and basal décollement re-localization at the subduction-tocollision transition. Geological Society of America Bulletin, 1, 1–14. https://doi.org/10.1130/B35800.1Test Tropeano, M., & Sabato, L. (2000). Response of Plio-Pleistocene mixed bioclastic-lithoclastic temperate-water carbonate systems to forced regressions: The Calcarenite di Gravina Formation, Puglia, SE Italy. Geological Society Special Publication, 172, 217–243. https://doiTest. org/10.1144/GSL.SP.2000.172.01.11 Turcotte, D. L., & Schubert, G. (1982). Geodynamics (p. 450). Wiley. Turcotte, D. L., & Schubert, G. (2006). Geodynamics: Applications of continuum physics to geological problems (p. 456). Wiley. Vecchio, E., Barattolo, F., & Hottinger, L. (2007). Alveolina horizons in the Trentinara Formation (southern Apennines, Italy): Stratigraphic and paleogeographic implications. Rivista Italiana Di Paleontologia E Stratigrafia, 113, 21–42. https://doi.org/10.13130Test/ 2039-4942/6356 Veevers, J. J., Falvey, D. A., & Robins, S. (1978). Timor Trough and Australia: Facies show topographic wave migrated 80 km during the past 3 my. Tectonophysics, 45, 217–227. https://doiTest. org/10.1016/0040-1951(78)90008-2 Vergés, J., Marzo, M., Santaeulària, T., Serra-Kiel, J., Burbank, D. W., Muñoz, J. A., & Giménez-Montsant, J. (1998). Quantified vertical motions and tectonic evolution of the SE Pyrenean foreland basin. Geological Society Special Publication, 134, 107–134. https://doiTest. org/10.1144/GSL.SP.1998.134.01.06 Vezzani, L., Festa, A., & Ghisetti, F. C. (2010). Geology and tectonic evolution of the Central-Southern Apennines, Italy. Special Paper Geological Society of America, 469, 1–58. https://doiTest. org/10.1130/2010.2469 Vitale, S., & Ciarcia, S. (2013). Tectono-stratigraphic and kinematic evolution of the southern Apennines/Calabria–Peloritani Terrane system (Italy). Tectonophysics, 583, 164–182. https://doiTest. org/10.1016/j.tecto.2012.11.004 White, T., Furlong, K., & Arthur, M. (2002). Forebulge migration in the Cretaceous Western interior basin of the Central United States. Basin Research, 14, 43–54. https://doiTest. org/10.1046/j.1365-2117.2002.00165.x Yu, H. S., & Chou, Y. W. (2001). Characteristics and development of the flexural forebulge and basal unconformity of Western Taiwan Foreland Basin. Tectonophysics, 333, 277–291. https://doiTest. org/10.1016/S0040-1951(00)00279-1; http://hdl.handle.net/2122/15475Test

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