Cite

Alonso-Garcia M, Sierro FJ, Kucera M, Flores JA, Cacho I and Andersen N, 2011. Ocean circulation, ice sheet growth and interhemispheric coupling of millennial climate variability during the mid-Pleistocene (ca 800–400 ka). Quaternary Science Reviews, 30: 3234–3247, 10.1016/j.quascirev.2011.08.005.Alonso-GarciaMSierroFJKuceraMFloresJACachoIAndersenN2011Ocean circulation, ice sheet growth and interhemispheric coupling of millennial climate variability during the mid-Pleistocene (ca 800–400 ka)Quaternary Science Reviews303234324710.1016/j.quascirev.2011.08.005Open DOISearch in Google Scholar

Baker A, Smart PL and Ford DC, 1993. Northwest European palaeoclimate as indicated by growth frequency variations of secondary calcite deposits. Palaeogeography, Palaeoclimatology, Palaeoecology, 100: 291–301, 10.1016/0031-0182(93)90059-R.BakerASmartPLFordDC1993Northwest European palaeoclimate as indicated by growth frequency variations of secondary calcite depositsPalaeogeography, Palaeoclimatology, Palaeoecology10029130110.1016/0031-0182(93)90059-ROpen DOISearch in Google Scholar

Baker A, Wilson R, Fairchild IJ, Franke J, Spötl C, Mattey D, Trouet V and Fuller L, 2011. High resolution δ18O and δ13C records from an annually laminated Scottish stalagmite and relationship with last millennium climate. Global and Planetary Change 79: 303–311, 10.1016/j.gloplacha.2010.12.007.BakerAWilsonRFairchildIJFrankeJSpötlCMatteyDTrouetVFullerL2011High resolution δ18O and δ13C records from an annually laminated Scottish stalagmite and relationship with last millennium climateGlobal and Planetary Change7930331110.1016/j.gloplacha.2010.12.007Open DOISearch in Google Scholar

Cheng H, Edwards RL, Hoff J, Gallup CD, Richards DA and Asmerom Y, 2000. The half-lives of U-234 and Th-230. Chemical Geology, 169: 17–33, 10.1016/S0009-2541(99)00157-6.ChengHEdwardsRLHoffJGallupCDRichardsDAAsmeromY2000The half-lives of U-234 and Th-230Chemical Geology169173310.1016/S0009-2541(99)00157-6Open DOISearch in Google Scholar

Dziadzio P, Różniak R and Szulc J, 1993. Geneza polew naciekowych z jaskiń Psiej i Naciekowej w Tatrach Zachodnich (Origin of the Pleistocen calcite flowstones of two cave (Jaskinia Psia and Jaskinia Naciekowa) in the WEST Tatra Mts). Przegląd Geologiczny 41: 767–775 (in Polish).DziadzioPRóżniakRSzulcJ1993Geneza polew naciekowych z jaskiń Psiej i Naciekowej w Tatrach Zachodnich (Origin of the Pleistocen calcite flowstones of two cave (Jaskinia Psia and Jaskinia Naciekowa) in the WEST Tatra Mts)Przegląd Geologiczny41767775(in Polish)Search in Google Scholar

Fairchild IJ and Baker A, 2012. Speleothem Science: From Process to Past Environments. Wiley-Blackwell, Chichester, 432 pp, 10.1002/9781444361094.FairchildIJBakerA2012Speleothem Science: From Process to Past Environments.Wiley-BlackwellChichester43210.1002/9781444361094Open DOISearch in Google Scholar

Fairchild IJ and Treble PC, 2009. Trace elements in speleothems as recorders of environmental change. Quaternary Science Reviews 28: 449–468, 10.1016/j.quascirev.2008.11.007.FairchildIJTreblePC2009Trace elements in speleothems as recorders of environmental changeQuaternary Science Reviews2844946810.1016/j.quascirev.2008.11.007Open DOISearch in Google Scholar

Feng X, Peterson JC, Quideau SA, Virginia RA, Graham RC, Sonder LJ and Chadwick OA, 1999. Distribution, accumulation and fluxes of soil carbon in four monoculture lysimeters at San Dimas Experimental Forest, California. Geochimica et Cosmochimica Acta 63: 1319–1333.FengXPetersonJCQuideauSAVirginiaRAGrahamRCSonderLJChadwickOA1999Distribution, accumulation and fluxes of soil carbon in four monoculture lysimeters at San Dimas Experimental Forest, CaliforniaGeochimica et Cosmochimica Acta631319133310.1016/S0016-7037(99)00048-4Search in Google Scholar

Ford DC and Williams PW, 1989. Karst Geomorphology and Hydrology. Unwin Hyman, London, 601 pp.FordDCWilliamsPW1989Karst Geomorphology and HydrologyUnwin HymanLondon60110.1007/978-94-011-7778-8Search in Google Scholar

Frisia S, 2015. Microstratigraphic logging of calcite fabrics in speleothems as tool for palaeoclimate studies. International Journal of Speleology 44: 1–16, 10.5038/1827-806X.44.1.1.FrisiaS2015Microstratigraphic logging of calcite fabrics in speleothems as tool for palaeoclimate studiesInternational Journal of Speleology4411610.5038/1827-806X.44.1.1Open DOISearch in Google Scholar

Frisia S, Borsato A, Preto N and McDermott F, 2003. Late Holocene annual growth in three Alpine stalagmites records the influence of solar activity and the North Atlantic Oscillation on winter climate. Earth and Planetary Science Letters 216: 411–424, 10.1016/S0012-821X(03)00515-6.FrisiaSBorsatoAPretoNMcDermottF2003Late Holocene annual growth in three Alpine stalagmites records the influence of solar activity and the North Atlantic Oscillation on winter climateEarth and Planetary Science Letters21641142410.1016/S0012-821X(03)00515-6Open DOISearch in Google Scholar

Hernández-Almeida I, Sierro FJ, Flores JA, Cacho I and Filippelli GM, 2013. Palaeoceanographic changes in the North Atlantic during the Mid-Pleistocene Transition (MIS 31–19) as inferred from planktonic foraminiferal and calcium carbonate records. Boreas 42: 140–159, 10.1111/j.1502-3885.2012.00283.x.Hernández-AlmeidaISierroFJFloresJACachoIFilippelliGM2013Palaeoceanographic changes in the North Atlantic during the Mid-Pleistocene Transition (MIS 31–19) as inferred from planktonic foraminiferal and calcium carbonate recordsBoreas4214015910.1111/j.1502-3885.2012.00283.xOpen DOISearch in Google Scholar

Holden NE, 1990. Total half-lives for selected nuclides. Pure and Applied Chemistry 62: 941–958, 10.1351/pac199062050941.HoldenNE1990Total half-lives for selected nuclidesPure and Applied Chemistry6294195810.1351/pac199062050941Open DOISearch in Google Scholar

Hu C, Henderson GM, Huang J, Xie S, Sun Y and Johnson KR, 2008. Quantification of Holocene Asian monsoon rainfall from spatially separated cave records. Earth and Planetary Science Letters, 266: 221–232, 10.1016/j.epsl.2007.10.015.HuCHendersonGMHuangJXieSSunYJohnsonKR2008Quantification of Holocene Asian monsoon rainfall from spatially separated cave recordsEarth and Planetary Science Letters26622123210.1016/j.epsl.2007.10.015Open DOISearch in Google Scholar

Imbrie J, Hays JD, Martinson DG, McIntyre A, Mix AC, Morley JJ, Pisias NG, Prell WL, and Shackleton NJ, 1984. The orbital theory of Pleistocene climate: Support from a revised chronology of the marine δ18O record. In: Berger A, Imbrie J, Hays H, Kukla G and Saltzman B, eds. Milankovitch and climate: understanding the response to astronomical forcing. D. Reidel, Norwell: 269–305.ImbrieJHaysJDMartinsonDGMcIntyreAMixACMorleyJJPisiasNGPrellWLShackletonNJ1984The orbital theory of Pleistocene climate: Support from a revised chronology of the marine δ18O recordBergerAImbrieJHaysHKuklaGSaltzmanBMilankovitch and climate: understanding the response to astronomical forcing.D. ReidelNorwell26930510.1007/978-94-017-4841-4Search in Google Scholar

Jaffey AH, Flynn KF, Glendenin LE, Bentley WC and Essling AM, 1971. Precisionmeasurement of half-lives and specific activities of 235U and 238U. Physical Review C4: 1889–1906, 10.1103/PhysRevC.4.1889.JaffeyAHFlynnKFGlendeninLEBentleyWCEsslingAM1971Precisionmeasurement of half-lives and specific activities of 235U and 238UPhysical ReviewC41889190610.1103/PhysRevC.4.1889Open DOISearch in Google Scholar

Kendall AC and Broughton PL, 1978. Origin of fabric in speleothems of columnar calcite crystals. Journal of Sedimentary Petrology 48: 519–538.KendallACBroughtonPL1978Origin of fabric in speleothems of columnar calcite crystalsJournal of Sedimentary Petrology4851953810.1306/212F74C3-2B24-11D7-8648000102C1865DSearch in Google Scholar

Krajewski M and Matyszkiewicz J, 2009. Upper Jurassic deposits in the Częstochowa Upland. In: Stefaniak K, Tyc A, Socha P, eds., Karst of the Częstochowa Upland and eastern Sudetes. Studies of the Faculty of Earth Sciences University of Silesia, 56: 37–56.KrajewskiMMatyszkiewiczJ2009Upper Jurassic deposits in the Częstochowa UplandStefaniakKTycASochaPKarst of the Częstochowa Upland and eastern SudetesStudies of the Faculty of Earth Sciences University of Silesia56375610.3986/ac.v37i1.529Search in Google Scholar

Landwehr JM, Sharp WD, Coplen TB, Ludwig KR and Winograd IJ, 2011. The chronology for the δ18O record from Devils Hole, Nevada, extended into the mid-Holocene. U.S. Geological Survey Open-File Report 2011–1082, 5 p.LandwehrJMSharpWDCoplenTBLudwigKRWinogradIJ2011The chronology for the δ18O record from Devils Hole, Nevada, extended into the mid-HoloceneU.S. Geological Survey Open-File Report 2011–1082510.3133/ofr20111082Search in Google Scholar

Lang N and Wolff EW, 2011. Interglacial and glacial variability from the past 800 ka in marine, ice and terrestrial archives. Climate of the Past 7: 361–380, 10.5194/cp-7-361-2011.LangNWolffEW2011Interglacial and glacial variability from the past 800 ka in marine, ice and terrestrial archivesClimate of the Past736138010.5194/cp-7-361-2011Open DOISearch in Google Scholar

Lisiecki LE and Raymo ME, 2005. A Pliocene-Pleistocene stack of 57 globally distributed benthic δ18O records. Paleoceanography 20: PA1003, 10.1029/2004PA001071.LisieckiLERaymoME2005A Pliocene-Pleistocene stack of 57 globally distributed benthic δ18O recordsPaleoceanography20PA100310.1029/2004PA001071Open DOISearch in Google Scholar

Marks L, Dzierżek J, Janiszewski R, Kaczorowski J, Lindner L, Majecka A, Makos M, Szymanek M, Tołoczko-Pasek A and Woronko B, 2016. Quaternary stratigraphy and palaeogeography of Poland. Acta Geologica Polonica, 66: 403–427.MarksLDzierżekJJaniszewskiRKaczorowskiJLindnerLMajeckaAMakosMSzymanekMTołoczko-PasekAWoronkoB2016Quaternary stratigraphy and palaeogeography of PolandActa Geologica Polonica6640342710.1515/agp-2016-0018Search in Google Scholar

Martin-Garcia GM, Alonso-Garcia M, Sierro FJ, Hodell DA and Flores JA, 2015. Severe cooling episodes at the onset of deglaciations on the Southwestern Iberian margin from MIS 21 to 13 (IODP site U1385). Global and Planetary Change 135: 159–169, 10.1016/j.gloplacha.2015.11.001.Martin-GarciaGMAlonso-GarciaMSierroFJHodellDAFloresJA2015Severe cooling episodes at the onset of deglaciations on the Southwestern Iberian margin from MIS 21 to 13 (IODP site U1385)Global and Planetary Change13515916910.1016/j.gloplacha.2015.11.001Open DOISearch in Google Scholar

McDermott F, Atkinson TC, Fairchild IJ, Baldini LM and Mattey DP, 2011. A first evaluation of the spatial gradients in δ18O recorded by European Holocene speleothems. Global and Planetary Change 79: 275–287, 10.1016/j.gloplacha.2011.01.005.McDermottFAtkinsonTCFairchildIJBaldiniLMMatteyDP2011A first evaluation of the spatial gradients in δ18O recorded by European Holocene speleothemsGlobal and Planetary Change7927528710.1016/j.gloplacha.2011.01.005Open DOISearch in Google Scholar

Muñoz-García MB, Cruz J, Martín-Chivelet J, Ortega AI, Turrero MJ and López-Elorza M, 2016. Comparison of speleothem fabrics and microstratigraphic stacking patterns in calcite stalagmites as indicators of paleoenvironmental change. Quaternary International 407: 74–85, 10.1016/j.quaint.2016.02.036.Muñoz-GarcíaMBCruzJMartín-ChiveletJOrtegaAITurreroMJLópez-ElorzaM2016Comparison of speleothem fabrics and microstratigraphic stacking patterns in calcite stalagmites as indicators of paleoenvironmental changeQuaternary International407748510.1016/j.quaint.2016.02.036Open DOISearch in Google Scholar

Pawlak J and Hercman H, 2016. Numerical correlation of speleothem stable isotope records using a genetic algorithm. Quaternary Geochronology 33: 1–12, 10.1016/j.quageo.2015.12.005.PawlakJHercmanH2016Numerical correlation of speleothem stable isotope records using a genetic algorithmQuaternary Geochronology3311210.1016/j.quageo.2015.12.005Open DOISearch in Google Scholar

Roberts MS, Smart, PL and Baker A, 1998. Annual trace element variations in a Holocene Speleothem. Earth and Planetary Science Letters 154: 237–246, 10.1016/S0012-821X(97)00116-7.RobertsMSSmartPLBakerA1998Annual trace element variations in a Holocene SpeleothemEarth and Planetary Science Letters15423724610.1016/S0012-821X(97)00116-7Open DOISearch in Google Scholar

Rudzka D, McDermott F, Baldini LM, Fleitmann D, Moreno A and Stoll H, 2011. The coupled δ13C-radiocarbon systematics of three late Glacial/early Holocene speleothems; insights into soil and cave processes at climatic transitions. Geochimica et Cosmo-chimicaActa 75: 4321–4339, 10.1016/j.gca.2011.05.022.RudzkaDMcDermottFBaldiniLMFleitmannDMorenoAStollH2011The coupled δ13C-radiocarbon systematics of three late Glacial/early Holocene speleothems; insights into soil and cave processes at climatic transitionsGeochimica et Cosmo-chimicaActa754321433910.1016/j.gca.2011.05.022Open DOISearch in Google Scholar

Schimpf D, Kilian R, Kronz A, Simon K, Spötl C and Wörner G, 2011. The significance of chemical, isotopic, and detrital components in three coeval stalagmites from the superhumid southernmost Andes (53°S) as high-resolution palaeo-climate proxies. Quaternary Science Reviews 30: 443–459, 10.1016/j.quascirev.2010.12.006.SchimpfDKilianRKronzASimonKSpötlCWörnerG2011The significance of chemical, isotopic, and detrital components in three coeval stalagmites from the superhumid southernmost Andes (53°S) as high-resolution palaeo-climate proxiesQuaternary Science Reviews3044345910.1016/j.quascirev.2010.12.006Open DOISearch in Google Scholar

Schwarcz HP, 1986. Geochronology and isotopic geochemistry of speleothems. In Fontes, JC and Fritz, P, eds., Handbook of environmental isotope geochemistry. The terrestrial environment. B: Elsevier, Amsterdam: 271–303.SchwarczHP1986Geochronology and isotopic geochemistry of speleothemsFontesJCFritzPHandbook of environmental isotope geochemistry. The terrestrial environment.B: ElsevierAmsterdam27130310.1016/B978-0-444-42225-5.50012-7Search in Google Scholar

Stoll HM, Moreno A, Mendez-Vicente A, Gonzalez-Lemos S, Jimenez-Sanchez M, Dominguez-Cuesta MJ, Edwards RL, Cheng H and Wang X, 2013. Paleoclimate and growth rates of speleothems in the northwestern Iberian Peninsula over the last two glacial cycles. Quaternary Research 80: 284–290, 10.1016/j.yqres.2013.05.002.StollHMMorenoAMendez-VicenteAGonzalez-LemosSJimenez-SanchezMDominguez-CuestaMJEdwardsRLChengHWangX2013Paleoclimate and growth rates of speleothems in the northwestern Iberian Peninsula over the last two glacial cyclesQuaternary Research8028429010.1016/j.yqres.2013.05.002Open DOISearch in Google Scholar

Sznober N and Tyc A, 2010. Głęboka Cave in the ’Góra Zborów‘ reserve – development for tourism and a new survey (English summary). Jaskinie 4(61): 29–33.SznoberNTycA2010Głęboka Cave in the ’Góra Zborów‘ reserve – development for tourism and a new survey (English summary)Jaskinie4612933Search in Google Scholar

Turgeon S and Lundberg J, 2001. Chronology of discontinuities and petrology of speleothems as paleoclimatic indicators of the Klamath Mountains, Southwestern Oregon, USA. Carbonates and Evaporites 16: 153–167, 10.1007/BF03175833.TurgeonSLundbergJ2001Chronology of discontinuities and petrology of speleothems as paleoclimatic indicators of the Klamath Mountains, Southwestern Oregon, USACarbonates and Evaporites1615316710.1007/BF03175833Open DOISearch in Google Scholar

Wang YJ, Cheng H, Edwards RL, An ZS, Wu JY, Shen CC and Dorale JA, 2001. A High-Resolution absolute-dated Late Pleistocene monsoon record from Hulu Cave, China. Science 294: 2345–2348, 10.1126/science.1064618.WangYJChengHEdwardsRLAnZSWuJYShenCCDoraleJA2001A High-Resolution absolute-dated Late Pleistocene monsoon record from Hulu Cave, ChinaScience2942345234810.1126/science.106461811743199Open DOISearch in Google Scholar

Wang YJ, Cheng H, Edwards RL, He Y, Kong X, An Z, Wu J, Kelly MJ, Dykoski CA and Li X, 2005. The Holocene Asian Monsoon: Links to Solar Changes and North Atlantic Climate. Science 308: 854–857, 10.U26/science.1106296.WangYJChengHEdwardsRLHeYKongXAnZWuJKellyMJDykoskiCALiX2005The Holocene Asian Monsoon: Links to Solar Changes and North Atlantic ClimateScience30885485710.U26/science.1106296Open DOISearch in Google Scholar

Yuan D, Cheng H, Edwards RL, Dykoski CA, Kelly MJ, Zhang M, Qing J, Lin Y, Wang Y, Wu J, Dorale JA, An Z and Cai Y, 2004. Timing, duration, and transitions of the Last Interglacial Asian monsoon. Science 304: 575–578, 10.1126/science.1091220.YuanDChengHEdwardsRLDykoskiCAKellyMJZhangMQingJLinYWangYWuJDoraleJAAnZCaiY2004Timing, duration, and transitions of the Last Interglacial Asian monsoonScience30457557810.1126/science.109122015105497Open DOISearch in Google Scholar

eISSN:
1897-1695
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Geosciences, other