[1] Antonioli F., Kershaw S., Renda P., Rust D., Belluomini G., Cerasoli M., et al., Elevation of the last interglacial highstand in Sicily (Italy): A benchmark of coastal tectonics. Quatern. Internat., 2006, 145–146, 3–18 http://dx.doi.org/10.1016/j.quaint.2005.07.002CrossrefGoogle Scholar
[2] Antonioli F., Ferranti L., Lambeck K., Kershaw S., Verrubbi V., Dai Pra G., Late Pleistocene to Holocene record of changing uplift rates in southern A multidisciplinary approach to reveal the Sicily Climate and Environment over the last 20 000 years Calabria and eastern Sicily (southern Italy, Central Mediterranean Sea). Tectonophysics, 2006, 422, 23–40 http://dx.doi.org/10.1016/j.tecto.2006.05.003CrossrefGoogle Scholar
[3] Di Stefano P., Sprovieri R., Di Stefano E., Bonomo S., Zarcone G., Geoeventi in Sicilia. Regione Si-cilia — Assessorato BB.CC.AA. e P.I. — Université degli Studi di Palermo — Dipartimento di Geologia e Geodesia, 2007 Google Scholar
[4] Di Stefano P., Nicchitta D., Zarcone G., Incarbona A., I geositi della Sicilia occidentale: situazione attuale e valorizzazione. Atti del Convegno ‘Valorizzazione del patrimonio geologico e naturalistico della Si-cilia’, 25 Novembre 2009, Palazzo dei Normanni, Palermo, Regione Sicilia, (in press) Google Scholar
[5] Lambeck K., Chappell J., Sea level change through the last glacial cycle. Science, 2001, 292, 679–686 http://dx.doi.org/10.1126/science.1059549CrossrefGoogle Scholar
[6] Lea D.W., Martin P.A., Pak D.K., Spero H.J., Reconstructing a 350 ky history of sea level using planktonic Mg/Ca and oxygen isotope records from a Cocos Ridge core, Quaternary Sci. Rev., 2002, 21, 283–293 http://dx.doi.org/10.1016/S0277-3791(01)00081-6CrossrefGoogle Scholar
[7] Waelbroeck C., Labeyrie L., Michel E., Duplessy J.C., Lambeck K., McManus J.F., Balbon E., Labracherie M., Sea-level and deep water temperature changes derived from benthic foraminifera isotopic records, Quaternary Sci. Rev., 2002, 21, 295–305 http://dx.doi.org/10.1016/S0277-3791(01)00101-9CrossrefGoogle Scholar
[8] Siddall M., Rohling E.J., Almogi-Labin A., Hemleben Ch., Meischner D., Schmelzer I., Smeed D.A., Sealevel fluctuations during the last glacial cycle, Nature, 2003, 423, 853–858 http://dx.doi.org/10.1038/nature01690CrossrefGoogle Scholar
[9] Masini F., Petruso D., Bonfiglio L., Mangano G., Origination and extinction patterns of mammals in three central Western Mediterranean islands from the Late Miocene to Quaternary, Quatern. Intern., 2008, 182, 63–79 http://dx.doi.org/10.1016/j.quaint.2007.09.020CrossrefGoogle Scholar
[10] Kuhlemann J., Rohling E.J., Krumrei I., Kubik P., Ivy-Ochs S., Kucera M., Regional Synthesis of Mediter-ranean Atmospheric Circulation During the Last Glacial Maximum, Science, 2008, 321, 1338–1340 http://dx.doi.org/10.1126/science.1157638CrossrefGoogle Scholar
[11] Thiede J., A glacial Mediterranean. Nature, 1978, 276, 680–683 http://dx.doi.org/10.1038/276680a0CrossrefGoogle Scholar
[12] Thunell R.C., Eastern Mediterranean Sea during the last glacial maximum: an 18,000-years B.P. reconstruction, Quaternary Res., 1979, 11, 353–372 http://dx.doi.org/10.1016/0033-5894(79)90080-2CrossrefGoogle Scholar
[13] Sprovieri R., Di Stefano E., Incarbona A., Gargano M.E., A high-resolution record of the last deglacia-tion in the Sicily Channel based on foraminifera and calcareous nannofossil quantitative distribution, Palaeogeogr. Palaeoecl., 2003, 202, 119–142 http://dx.doi.org/10.1016/S0031-0182(03)00632-1CrossrefGoogle Scholar
[14] Sprovieri R., Di Stefano E., Incarbona A., Oppo, D.W., Suborbital climate variability during Marine Isotopic Stage 5 in the central Mediterranean Basin: evidence from calcareous plankton, Quaternary Sci. Rev., 2006, 25, 2332–2342 http://dx.doi.org/10.1016/j.quascirev.2006.01.035Google Scholar
[15] Hayes A., Kucera M., Kallel N., Sbaffi L., Rohling E.J., Glacial Mediterranean sea surface tempera-tures based on planktonic foraminiferal assemblages, Quaternary Sci. Rev., 2005, 24, 999–1016 http://dx.doi.org/10.1016/j.quascirev.2004.02.018CrossrefGoogle Scholar
[16] Sbaffi L., Wezel F.C., Kallel N., Paterne M., Cacho I., Ziveri P., Shackleton N., Response of the pelagic environment to palaeoclimatic changes in the central Mediterranean Sea during the Late Quaternary, Mar. Geol., 2001, 178, 39–62 http://dx.doi.org/10.1016/S0025-3227(01)00185-2CrossrefGoogle Scholar
[17] Sbaffi L., Wezel F.C., Curzi G., Zoppi U., Millennial-to centennial-scale palaeoclimatic variations dur-ing Termination I and the Holocene in the central Mediterranean Sea, Global Planet. Change, 2004, 40, 201–217 http://dx.doi.org/10.1016/S0921-8181(03)00111-5CrossrefGoogle Scholar
[18] Di Stefano E., Incarbona A., High resolution pa-leoenvironmental reconstruction of the ODP-963D Hole (Sicily Channel) during the last deglaciation, based on calcareous nannofossils, Mar. Micropaleontol., 2004, 52, 241–254 http://dx.doi.org/10.1016/j.marmicro.2004.04.009CrossrefGoogle Scholar
[19] Incarbona A., Di Stefano E., Patti B., Pelosi N., Bonomo S., Mazzola S., et al., Holocene millennial-scale productivity variations in the Sicily Channel (Mediterranean Sea), Paleoceanography, 2008, 23, 1–18 http://dx.doi.org/10.1029/2007PA001581CrossrefGoogle Scholar
[20] Incarbona A., Di Stefano E., Sprovieri R., Bonomo S., Censi P., Dinarès-Turell J., Spoto S., Vertical structure variability of the water column and Paleo-productivity reconstruction in the Central-Western Mediterranean during the Late Pleistocene, Mar. Micropaleontol., 2008, 69, 26–41 http://dx.doi.org/10.1016/j.marmicro.2007.11.007CrossrefGoogle Scholar
[21] Dansgaard W., Johnsen S.J., Clausen H.B., Dahl-Jensen D., Gundestrup N.S., Hammer C.U., et al., Evidence for general instability of past climate from a 250-kyr ice-core record, Nature, 1993, 364, 218–220 http://dx.doi.org/10.1038/364218a0CrossrefGoogle Scholar
[22] Mayewski P.A., Meeker L.D., Twickler M.S., Whitlow S., Yang Q., Lyons W.B., Prentice M., Major features and forcing of high-latitude northern hemisphere atmospheric circulation using a 110 000-year long glaciochemical series, J. Geophys. Res., 1997, 102, 26345–26366 http://dx.doi.org/10.1029/96JC03365CrossrefGoogle Scholar
[23] North Greenland Ice Core Project members, High-resolution record of Northern Hemisphere climate extending into the last interglacial period, Nature, 2004, 431, 148–151 Google Scholar
[24] Meeker L.D., Mayewski P.A., A 1400-year high-resolution record of atmospheric circulation over the North Atlantic and Asia, Holocene, 2002, 12, 257–266 http://dx.doi.org/10.1191/0959683602hl542ftCrossrefGoogle Scholar
[25] O’Brien S.R., Mayewski P.A., Meeker L.D., Meese Alessandro Incarbona, Giuseppe Zarcone, Mauro Agate, Sergio Bonomo, Enrico Di Stefano, Federico Masini, Fabio Russo, Luca Sineo D.A., Twickler M.S., Whitlow S.I., Complexity of Holocene climate as reconstructed from a Greenland ice core, Science, 1995, 270, 1962–1964 http://dx.doi.org/10.1126/science.270.5244.1962CrossrefGoogle Scholar
[26] POEM group, General circulation of the Eastern Mediterranean, Earth-Science Reviews, 1992, 32, 285–309 http://dx.doi.org/10.1016/0012-8252(92)90002-BCrossrefGoogle Scholar
[27] Millot C., Circulation in the western Mediterranean Sea, J. Marine Syst., 1999, 20, 423–442 http://dx.doi.org/10.1016/S0924-7963(98)00078-5CrossrefGoogle Scholar
[28] Rohling E.J., Hayes A., De Rijk S., Kroon D., Zachariasse W.J., Eisma D., Abrupt cold spells in the northwest Mediterranean, Paleoceanography, 1998, 13, 316–322 http://dx.doi.org/10.1029/98PA00671CrossrefGoogle Scholar
[29] Cacho I., Grimalt J.O., Sierro F.J., Shackleton N., Canals M., Evidence for enhanced Mediterranean thermohaline circulation during rapid climatic coolings, Earth Planet. Sc. Lett., 2000, 183, 417–429 http://dx.doi.org/10.1016/S0012-821X(00)00296-XCrossrefGoogle Scholar
[30] Moreno A., Cacho I., Canals M., Grimalt J.O., Millennial-scale variability in the productivity signal from the Alboran Sea record, Palaeogeogr. Palaeoecl., 2004, 211, 205–219 http://dx.doi.org/10.1016/j.palaeo.2004.05.007CrossrefGoogle Scholar
[31] Sierro F.J., Hodell D.A., Curtis J.H., Flores J.-A., Reguera I., Colmenero-Hidalgo E., et al., Impact of iceberg melting on Mediterranean thermohaline circulation during Heinrich Events, Paleoceanography, 2005, 20 CrossrefGoogle Scholar
[32] Frigola J., Moreno A., Cacho I., Canals M., Sierro F.J., Flores J.A., Grimalt, J.O., Evidence of abrupt changes in Western Mediterranean Deep Water cir-culation during the last 50 kyr: A high-resolution marine record from the Balearic Sea, Quatern. Intern., 2008, 181, 88–104 http://dx.doi.org/10.1016/j.quaint.2007.06.016CrossrefGoogle Scholar
[33] Sadori L., Zanchetta G., Giardini M., Last glacial to Holocene palaeoenvironmental evolution at Lago di Pergusa (Sicily), as inferred from pollen, microcharcoal, and stable isotopes, Quatern. Intern., 2008, 181, 4–14 http://dx.doi.org/10.1016/j.quaint.2007.02.024CrossrefGoogle Scholar
[34] Allen J.R.M., Brandt U., Brauer A., Hubberten H.-W., Huntley B., Keller, et al., Zolitschka B., Rapid environmental changes in southern Europe during the last glacial period, Nature, 1999, 400, 740–743 http://dx.doi.org/10.1038/23432CrossrefGoogle Scholar
[35] Sanchez-Goñi M.F., Eynaud F., Turon J.L., Shackleton N.J., High resolution palynological record off the Iberian margin: direct land-sea correlation for the Last Interglacial complex, Earth Planet. Sc. Lett, 1999, 171, 123–137 http://dx.doi.org/10.1016/S0012-821X(99)00141-7CrossrefGoogle Scholar
[36] Tzedakis P.C., McManus J.F., Hooghiemstra H., Oppo D.W., Wijmstra T.A., Comparison of changes in vegetation in northeast Greece with records of climate variability on orbital and suborbital frequencies over the last 450 000 years, Earth Planet. Sc. Lett, 2003, 212, 197–212 http://dx.doi.org/10.1016/S0012-821X(03)00233-4CrossrefGoogle Scholar
[37] Roucoux K.H., de Abreu L., Shackleton N.J., Tzedakis P.C., The response of NW Iberian vegetation to North Atlantic climate oscillations during the last 65 kyr., Quaternary Sci. Rev., 2005, 24, 1637–1653 http://dx.doi.org/10.1016/j.quascirev.2004.08.022CrossrefGoogle Scholar
[38] Agnesi V., Macaluso T., Masini F., L’ambiente e il clima della Sicilia nell’ultimo milione di anni. In: Tusa S. (ed.), Prima Sicilia alle origini della società siciliana, Ediprint, Palermo, 1997, 111–133 Google Scholar
[39] Bonfiglio L., Marra A.C., Masini F., The contribution of Quaternary vertebrates to the paleoenvironmental and paleoclimatological reconstructions in Sicily. In Hart, M.B. (Ed.) Climates: Past and Present. Geological Society of London, Special Publications, London, 2000, 181, 171–184 Google Scholar
[40] Zanchetta G., Borghini A., Fallick A.E., Bonadonna F.P., Leone G., Late Quaternary palaeohydrology of Lake Pergusa (Sicily, southern Italy) as inferred by stable isotopes of lacustrine carbonates, J. Paleolimnol., 2006 Google Scholar
[41] Barron E., Pollard D., High-Resolution Climate Simulations of Oxygen Isotope Stage 3 in Europe, Quaternary Res., 2002, 58, 296–309 http://dx.doi.org/10.1006/qres.2002.2374CrossrefGoogle Scholar
[42] Broecker W.S., Paleocean circulation during the last deglaciation: A bipolar seesaw? Paleoceanography, 1998, 13, 119–121 http://dx.doi.org/10.1029/97PA03707CrossrefGoogle Scholar
[43] Petit J.R., Jouzel J., Raynaud D., Barkov N.I., Barnola J.-M., Basile I., et al., Climate and atmospheric his-tory of the past 420 000 years from the Vostok ice core, Antarctica. Nature, 1999, 399, 429–436 http://dx.doi.org/10.1038/20859CrossrefGoogle Scholar
[44] Martin P.A., Lea D.W., Rosenthal Y., Shackleton N.J., Sarnthein M., Papenfuss T., Quaternary deep sea temperature histories derived from benthic foraminiferal Mg/Ca, Earth Planet. Sc. Lett., 2002, 198, 193–209 http://dx.doi.org/10.1016/S0012-821X(02)00472-7CrossrefGoogle Scholar
[45] Skinner L.C., Shackleton N.J., Elderfield H., Millennial-scale variability of deep-water temper-ature and 18Odw
indicating deep-water source variations in the Northeast Atlantic, 0-34 ka BP, Geochem. Geophy. Geosy., 2003, 4, 1–17 http://dx.doi.org/10.1029/2003GC000585Google Scholar
[46] Skinner L.C., Shackleton N.J., An Atlantic lead over Pacific deep-water change across Termination I: im-plications for the application of the marine isotope stage stratigraphy, Quaternary Sci. Rev., 2005, 24, 571–580 http://dx.doi.org/10.1016/j.quascirev.2004.11.008CrossrefGoogle Scholar
[47] Bond G., Heinrich H., Broecker W.S., Labeyrie L., McManus J., Andrews J., et al., Evidence for massive discharges of icebergs into the North Atlantic during the last glacial period, Nature, 1992, 360, 245–249 http://dx.doi.org/10.1038/360245a0CrossrefGoogle Scholar
[48] Grootes P.M., Stuiver M., White J.W.C., Johnsen S., Jouzel J., Comparison of oxygen isotope records from the GISP2 and GRIP Greenland ice cores, Nature, 1993, 366, 552–554 http://dx.doi.org/10.1038/366552a0CrossrefGoogle Scholar
[49] Oppo D.W., Lehman S.J., Suborbital time scale variability of North Atlantic deep water during the past 200 000 years. Paleoceanography, 1995, 10, 901–910 http://dx.doi.org/10.1029/95PA02089CrossrefGoogle Scholar
[50] Rohling E.J., Mayewsky, P.A., Abu-Zied R.H., Casford J.S.L., Hayes A., Holocene atmosphere-ocean interaction: records from Greenland and the Aegean sea, Clim. Dynam., 2002, 18, 587–593 http://dx.doi.org/10.1007/s00382-001-0194-8CrossrefGoogle Scholar
[51] Cacho I., Grimalt J.O., Pelejero C., Canals M., Sierro F.J., Flores J.A., Shackleton N.J., Dansgaard-Oeschger and Heinrich event imprints in Alboran Sea paleotemperatures, Paleoceanography, 1999, 14, 698–705 http://dx.doi.org/10.1029/1999PA900044CrossrefGoogle Scholar
[52] Buccheri G., Capretto G., Di Donato V., Esposito P., Ferruzza G., Pescatore T., et al., A high resolution record of the last deglaciation in the southern Tyrrhenian sea: environmental and climatic evolution, Mar. Geol., 2002, 186, 447–470 http://dx.doi.org/10.1016/S0025-3227(02)00270-0CrossrefGoogle Scholar
[53] Combourieu Nebout N., Turon J.L., Zahn R., Capotondi L., Londeix L., Pahnke K., Enhanced aridity and atmospheric high-pressure stability over the western Mediterranean during the North Atlantic cold events of the past 50 k.y., Geology, 2002, 30, 863–866 http://dx.doi.org/10.1130/0091-7613(2002)030<0863:EAAAHP>2.0.CO;2CrossrefGoogle Scholar
[54] Moreno A., Cacho I., Canals M., Prins M.A., Sánchez-Goñi M.-F., Grimalt J.O., Weltje G.J., Saharan Dust Transport and High-Latitude Glacial Climatic Variability: The Alboran Sea Record, Quaternary Res., 2002, 58, 318–328 http://dx.doi.org/10.1006/qres.2002.2383CrossrefGoogle Scholar
[55] Pérez-Folgado M., Sierro F.J., Flores J.-A., Cacho I., Grimalt J.O., Zahn R., Western Mediterranean planktonic foraminifera events and climatic variability during the last 70 kyr., Mar. Micropaleontol., 2003, 48, 49–70 http://dx.doi.org/10.1016/S0377-8398(02)00160-3CrossrefGoogle Scholar
[56] Martrat B., Grimalt J.O., Lopez-Martinez C., Cacho I., Sierro F.J., Flores J.A., et al., Abrupt Temperature Changes in the Western Mediterranean over the Past 250 000 Years. Science, 2004, 306, 1762–1765 http://dx.doi.org/10.1126/science.1101706CrossrefGoogle Scholar
[57] Di Donato V., Esposito P., Garilli V., Naimo D., Buccheri G., Caffau M., et al., Surface-bottom relationship in the Gulf of Salerno (Tyrrhenian Sea) over the last 34 kyr: Compositional data analysis of paleontological proxies and geochemical evidence, Geobios, 2009, 42, 561–579 http://dx.doi.org/10.1016/j.geobios.2009.02.005CrossrefGoogle Scholar
[58] Sprovieri M., Pelosi N., Sprovieri R., Incarbona A., Ribera d’Alcalà M., L’evoluzione del clima nell’area mediterranea durante l’intervallo 20 000-70 000 anni. In: Carli B., Cavarretta G., Colacino M., Fuzzi S. (Eds.), Clima e cambiamenti climatici: le attività di ricerca del CNR, Consiglio Nazionale delle Ricerche, Roma, 2007, 177–180 Google Scholar
[59] Sadori L., Narcisi B., The post-glacial record of environmental history from Lago di Pergusa (Sicily), The Holocene, 2001, 11, 655–671 http://dx.doi.org/10.1191/09596830195681CrossrefGoogle Scholar
[60] [60]ZonneveldK. A.F., Palaeoclimaticand palaeoecologic changes in the Eastern Mediterranean and Arabian Sea regions during the last deglaciation: a palynological approach to land-sea correlation. LPP Contribution Series 3, Ponsen and Looijen, Wageningen, 1996 Google Scholar
[61] Combourieu Nebout N., Paterne M., Turon J.-L., Siani G., A high-resolution record of the last deglaciation in the central Mediterranean Sea: palaeovegetation and palaeohydrological evolution, Quaternary Sci. Rev., 1998, 17, 303–317 http://dx.doi.org/10.1016/S0277-3791(97)00039-5CrossrefGoogle Scholar
[62] Magri D., Parra I., Late Quaternary western Mediterranean pollen records and African winds, Earth Planet. Sc. Lett., 2002, 200, 401–408 http://dx.doi.org/10.1016/S0012-821X(02)00619-2CrossrefGoogle Scholar
[63] Brauer A., Allen J.R.M., Mingram J., Dulski P., Wulf S., Huntley B., Evidence for last interglacial chronology and environmental change from Southern Europe. Proceedings of the National Academy of Sciences of the United States of America, 2007, 104, 450–455 http://dx.doi.org/10.1073/pnas.0603321104CrossrefGoogle Scholar
[64] Allen J.R.M., Huntley B., Last Interglacial palaeovegetation, palaeoenvironments and chronology: a new record from Lago Grande di Monticchio, southern Italy. Quaternary Sci. Rev., 2009, 28, 1521–1538 http://dx.doi.org/10.1016/j.quascirev.2009.02.013CrossrefGoogle Scholar
[65] Montenat C., Barrier P., Approche quantitative des mouvements verticaux quaternaires dans le détroit de Messine. Doc. et Trav. IGAL, 1987, 11, 185–190 Google Scholar
[66] Di Stefano A., Branca S., Long-term uplift rate of the Etna Volcano basement (southern Italy) based on biochronological data from Pleistocene sediments. Terra Nova, 2002, 14, 61–68 http://dx.doi.org/10.1046/j.1365-3121.2002.00389.xCrossrefGoogle Scholar
[67] De Guidi G., Catalano S., Monaco C., Tortorici L., Morphological evidence of Holocene coseismic deformation in the Taormina region (NE Sicily). J. Geod., 2003, 36, 193–211 http://dx.doi.org/10.1016/S0264-3707(03)00047-4CrossrefGoogle Scholar
[68] Ferranti L., Monaco C., Antonioli F., Maschio L., Kershaw S., Verrubbi V., The contribution ofregional uplift and coseismic slip to the vertical crustal motion in the Messina Straits, Southern Italy: evidence from raised late Holocene shorelines, J. Geophys. Res., 2007, 112 CrossrefGoogle Scholar
[69] Ferranti L., Monaco C., Morelli, D., Antonioli F., Maschio L., Holocene activity of the Scilla Fault, southern Calabria: insights from coastal morphostructural investigations. Tectonophysics, 2008, 453, 74–93 http://dx.doi.org/10.1016/j.tecto.2007.05.006CrossrefGoogle Scholar
[70] Chilardi S., Frayer D.W., Gioia P., Macchiarelli R., Mussi M., Fontana Nuova di Ragusa (Sicily, Italy): southernmost Aurignacian site in Europe, Antiquity, 1996, 70, 553–563 Google Scholar
[71] Segre A., Vigliardi A., L’Epigravettien évolué et final en Sicile, Rivista di Scienze Preistoriche, 1983, 37, 351–369 Google Scholar
[72] Piperno M., Il popolamento della Sicilia il Paleolitico inferiore. In: Tusa, S. (Ed.), Prima Sicilia alle origini della società siciliana, Ediprint, Palermo, 1997, 83–92 Google Scholar
[73] Vigliardi A., L’arte rupestre e mobiliare dal Paleolitico all’Eneolitico. In: Tusa S. (Ed.), Prima Sicilia alle origini della società siciliana, Ediprint, Palermo, 1997, 83–92 Google Scholar
[74] Sineo L., Bigazzi R., D’Amore G., Tartarelli G., Di Patti C., Berzero A., Caramella Crespi V., I resti umani della Grotta di S. Teodoro (Messina): datazione assoluta con il metodo della spettrometria gamma diretta (U/Pa), Antropo, 2002, 2, 9–16 Google Scholar
[75] D’Amore G., Di Marco S., Tartarelli G., Bigazzi R., Sineo L., Late Pleistocene human evolution in Sicily: comparative morphometric analysis of Grotta di San Teodoro craniofacial remains, J. Hum. Evol., 2009 CrossrefGoogle Scholar
[76] Incarbona A., Catalano R., Di Patti C., Sineo L., Radiocarbon dating ofhuman skeletons from S. Teodoro Cave, Unpublished Data, 2009 Google Scholar
[77] Alley R.B., Mayewski P.A., Sowers T., Stuiver M., Taylor K.C., Clark, P.U., Holocene climatic instability: a prominent widespread event 8200 years ago. Geology, 1997, 25, 483–486 http://dx.doi.org/10.1130/0091-7613(1997)025<0483:HCIAPW>2.3.CO;2CrossrefGoogle Scholar
[78] Denton G.H., Karlén W., Holocene climatic variations: their pattern and possibile cause, Quaternary Res., 1973, 3, 155–205 http://dx.doi.org/10.1016/0033-5894(73)90040-9CrossrefGoogle Scholar
[79] Bond G., Showers W., Cheseby M., Lotti R., Almasi P., deMenocal P., et al., A pervasive millennial-scale cycle in North atlantic Holocene and glacial climates, Science, 1997, 278, 1257–1266 http://dx.doi.org/10.1126/science.278.5341.1257CrossrefGoogle Scholar
[80] Bond G., Kromer B., Beer J., Muscheler R., Evans M., Showers W., et al., Persistent solar influence on North Atlantic climate during the Holocene, Science, 2001, 294, 2130–2136 http://dx.doi.org/10.1126/science.1065680CrossrefGoogle Scholar
[81] Mayewski P.A., Rohling E.J., Stager J.C., Karlén W., Maasch K.A., Meeker L.D., et al., Holocene climate variability, Quaternary Res., 2004, 62, 243–255 http://dx.doi.org/10.1016/j.yqres.2004.07.001CrossrefGoogle Scholar
[82] Rouis-Zargouni I., Turon J. L., Londeix L., Essallami L., Kallel N., Sicre M. A., Environmental and climatic changes in the central Mediterranean Sea (Siculo-Tunisian Strait) during the last 30 ka based on dinoflagellate cyst and planktonic foraminifera assemblages, Palaeogeogr. Palaeoecl. (in Press) Google Scholar
[83] Bianchi G.G., McCave I.N., Holocene periodicity in North Atlantic climate and deep-ocean flow south of Iceland, Nature, 1999, 397, 515–517 http://dx.doi.org/10.1038/17362CrossrefGoogle Scholar
[84] Chapman M.R., Shackleton N.J., Evidence of 550-year and 1 000-year cyclicities in North Atlantic circulation patterns during the Holocene, Holocene, 2000, 10, 287–291 http://dx.doi.org/10.1191/095968300671253196CrossrefGoogle Scholar
[85] Giraudeau J., Cremer M., Manthe’ S., Labeyrie L., Bond G., Coccolith evidence for instabilities in surface circulation south of Iceland during Holocene times, Earth Planet. Sc. Lett., 2000, 179, 257–268 http://dx.doi.org/10.1016/S0012-821X(00)00113-8CrossrefGoogle Scholar
[86] Jackson R.B., Jobbágy E.G., Avissar R., Roy S.B., Barrett D.J., Cook C.W., et al., Atmospheric science: Trading water for carbon with biological carbon se-questration, Science, 2005, 310, 1944–1947 http://dx.doi.org/10.1126/science.1119282CrossrefGoogle Scholar
[87] Isono D., Yamamoto M., Irino T., Oba T., Murayama M., Nakamura T., Kawahata H., The 1 500-year climate oscillation in the midlatitude North Pacific during the Holocene, Geology, 2009, 37, 591–594 http://dx.doi.org/10.1130/G25667A.1CrossrefGoogle Scholar
[88] Grove J.M., Little Ice Ages: Ancient and Modern, Routledge, New York., 2004 Google Scholar
[89] Holzhauser H., Magny M., Zumbuhl H.J., Glacier and lake-level variations in west-central Europe over the last 3 500 years, The Holocene, 2005, 15, 789–801 http://dx.doi.org/10.1191/0959683605hl853raCrossrefGoogle Scholar
[90] Bradley R.S., Holocene perspectives on future climate change. In: Battarbee R.W., Binney H.A. (Eds.), Natural Climate Variability and Global Warming: A Holocene Perspective. John Wiley and Sons, Ltd., Publication, 2008, 254-268 Google Scholar
[91] Verschuren, D., Charman, D.J., Latitudinal linkages in late Holocene moisture- balance variation. In Battarbee, R.W. and Binney, H.A. (Eds.) Natural Climate Variability and Global Warming: A Holocene Perspective. John Wiley and Sons, Ltd., Publication, New York, 2008, 189–231 http://dx.doi.org/10.1002/9781444300932.ch8CrossrefGoogle Scholar
[92] Wanner H., Beer J., Bütikofer J., Crowley T.J., Cubasch U., Flückiger J., Goosse H., Grosjean M., et al., Mid- to Late Holocene climate change: an overview, Quaternary Sci. Rev., 2008, 27, 1791–1828 http://dx.doi.org/10.1016/j.quascirev.2008.06.013CrossrefGoogle Scholar
[93] Matthews J.A., Briffa K.R., The ‘Little Ice Age’: re-evaluation of an evolving concept. Geografiska Annaler, 2005, 87A, 17–36 http://dx.doi.org/10.1111/j.0435-3676.2005.00242.xCrossrefGoogle Scholar
[94] Goosse H., Mann M.E., Renssen H., Climate of the past millennium: combining proxy data and model simulations. In: Battarbee R.W., Binney H.A. (Eds.) Natural Climate Variability and Global Warming: A Holocene Perspective. John Wiley and Sons, Ltd., Publication, New York, 2008, 163–188 http://dx.doi.org/10.1002/9781444300932.ch7CrossrefGoogle Scholar
[95] Mann M.E., Zhang Z., Hughes M.K., Bradley R.S., Miller S.K., Rutherford S., Proxy-based reconstructions of hemispheric and global surface temperature variations over the past two millennia, Proceedings of the National Academy of Sciences, 2008, 105, 13252–13257 http://dx.doi.org/10.1073/pnas.0805721105CrossrefGoogle Scholar
[96] Silenzi S., Antonioli F., Chemello R., A new marker for sea surface temperature trend during the last centuries in temperate areas: Vermetid Reef, Global and Planetary Change, 2004, 40, 105–114 http://dx.doi.org/10.1016/S0921-8181(03)00101-2CrossrefGoogle Scholar
[97] Piervitali E., Colacino M., Evidence of Drought in A multidisciplinary approach to reveal the Sicily Climate and Environment over the last 20 000 years Western Sicily during the Period 1565–1915 from Liturgical Offices, Climatic Change, 2001, 49, 225238 http://dx.doi.org/10.1023/A:1010746612289CrossrefGoogle Scholar
[98] Sadori L., Giardini M., Charcoal analysis, a method to study vegetation and climate ofthe Holocene: The case of Lago Pergusa (Sicily, Italy), Geobios, 2007, 40, 173–180 http://dx.doi.org/10.1016/j.geobios.2006.04.002CrossrefGoogle Scholar
[99] Tinner W., van Leeuwen J.F.N., Colombaroli D., Vescovi E., van der Knaap W.O., Henne P.D., et al., Holocene environmental and climatic changes at Gorgo Basso, a coastal lake in southern Sicily, Italy, Quaternary Sci. Rev., 2009, 28, 1498–1510 http://dx.doi.org/10.1016/j.quascirev.2009.02.001CrossrefGoogle Scholar
[100] Noti R., van Leeuwen J.F.N., Colombaroli D., Vescovi E., Pasta S., La Mantia T., Tinner W., Mid- and late-Holocene vegetation and fire history at Biviere di Gela, a coastal lake in southern Sicily, Italy. Veg. Hist. Archaeobot., 2009, 18, 371–387 http://dx.doi.org/10.1007/s00334-009-0211-0CrossrefGoogle Scholar
[101] Sauro U., Borsato A., Frisia S., Madonia G., Piccini L., Tuccimei P., et al., Variabilità climatica nel Tardiglaciale e nell’Olocene da dati di speleotemi lungo una traversa N-S in Italia. Studi Trentini di Scienze Naturali, Acta Geologica, 2005, 80, 175–184 Google Scholar
[102] Frisia S., Borsato A., Mangini A., Spötl C., Madonia G., Sauro U., Holocene climate variability in Sicily from a discontinuous stalagmite record and the Mesolithic to Neolithic transition, Quatern. Intern., 2006, 66, 388–400 http://dx.doi.org/10.1016/j.yqres.2006.05.003CrossrefGoogle Scholar
[103] de Menocal P., Ortiz J., Guilderson T., Adkins J., Sarnthein M., Baker L., Yarusinsky M., Abrupt onset and termination of the African humid period: rapid climate responses to gradual insolation forcing, Quaternary Sci. Rev., 2000, 19, 347–361 http://dx.doi.org/10.1016/S0277-3791(99)00081-5CrossrefGoogle Scholar
[104] Gasse F., Hydrological changes in the African tropics since the last glacial maximum, Quaternary Sci. Rev., 2000, 19, 189–211 http://dx.doi.org/10.1016/S0277-3791(99)00061-XCrossrefGoogle Scholar
[105] Gaetani M., Baldi M., Dalu G.A., Maracchi G., Connessioni tra il clima della regione Mediterranea e l’Africa Occidentale attraverso la circolazione meridiana di Hadley. In: Carli B., Cavarretta G., Colacino M., Fuzzi S. (Eds.), Clima e cambiamenti climatici: le attività di ricerca del CNR, Consiglio Nazionale delle Ricerche, Roma, 2007, 23–26 Google Scholar
[106] Tagliacozzo A., Archeozoologia dellaGrotta dell’Uzzo, Sicilia. Da un’economia di caccia ad un’economia di pesca ed allevamento. Supplemento Bollettino Paleontologia Italiana, 1993, 84, 1–278 Google Scholar
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