Czasopismo
2023
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Vol. 67, No. 3
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art. no. 37
Tytuł artykułu
Autorzy
Treść / Zawartość
Pełne teksty:
Warianty tytułu
Języki publikacji
Abstrakty
Eemian organogenic deposits, analysed at the Struga and Parysów sites (Garwolin Plain, central Poland), reveal the vegetation history. Palynological analysis supported by plant macrofossil analysis revealed a pollen succession encompassing seven regional pollen assemblages zones, E1-E7 RPAZ, within which indicator taxa for various climate characteristics (mainly temperature and humidity, including Tilia tomentosa and Hedera helix) were recorded. Additionally, the Struga G-120 profile encompasses a Late Saalian section of deposits in which stadial and interstadial oscillations are inferred. The data corroborated earlier findings that the warmest and wettest part of the Eemian interglacial was during the hazel phase (E4 RPAZ) and the beginning of the hornbeam phase (E5 RPAZ). The younger part of the hornbeam phase bears the record of a decrease in humidity and gradual drop in air temperature. During the telocratic period encompassing the spruce-fir (E6 RPAZ) and pine (E7 RPAZ) phases, increased humidity and rising water levels in the lakes studied are again evident. The reconstructed plant succession and climatic conditions are discussed against a broader background of other Eemian profiles from Poland and neighbouring countries. They largely confirm that, at that time, the Garwolin Plain showed characteristics typical of a transitional climate from oceanic in Western Europe to continental beyond the eastern borders of Poland.
Czasopismo
Rocznik
Tom
Strony
art. no. 37
Opis fizyczny
Bibliogr. 112 poz., fot., map., tab., wykr.
Twórcy
autor
- Institute of Earth and Environmental Sciences , University of Maria Curie-Skłodowska, al. Kraśnicka 2d, 20-718 Lublin, Poland, aleksandra.bober@mail.umcs.pl
autor
- University of Białystok, Faculty of Biology, Ciołkowskiego 1J, 15-245 Białystok, Poland
autor
- W. Szafer Institute of Botany Polish Academy of Sciences in Kraków, Lubicz 46, 31-512, Kraków, Poland
autor
- Institute of Earth and Environmental Sciences , University of Maria Curie-Skłodowska, al. Kraśnicka 2d, 20-718 Lublin, Poland
autor
- Polish Geological Institute – National Research Institute, Rakowiecka 4, 00-975 Warszawa, Poland
Bibliografia
- 1. Aalbersberg, G., Litt, T., 1998. Multiproxy climate reconstructions For the Eemian and Early Weichselian. Journal of Quaternary Science, 13: 367-390; https://doi.org/10.1002/(sici)1099-1417(1998090)13:5<367::AID-JQS400>3.0.Co;2-I
- 2. Balwierz, Z., Kupryjanowicz, M., Nalepka, D., Bińka, K., Fiłoc, M., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I. A., Walanus, A., Winter, H., 201 8. Betula L. - Birch. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (ed. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 49-56. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 3. Berglund, B.E., Ralska-Jasiewiczowa, M., 1986. Pollen analysis. in: Handbook oF Holocene Palaeoecology and Palaeohydrology (ed. B.E. Berglund). John Wiley & Sons, Chichester.
- 4. Berggren, G., 1981. Atlas of Seeds, and Small Fruit of Northwest European Plant Species, Salicaceae-Cruciferae. Part 3. Swedish Museum of Natural History, Stockholm.
- 5. Beug, H.J., 1973. Die Bedeutung der interglazialen Ablagerungen von Zeifen und Eurach (Oberbayern, BRD) für die Vegetationsgeschichte der Eem-Warmzeit am Nordrand der Alpen. In: Palynology of the Pleistocene and Pliocene. Proceedings of the III. (ed. V. Gritschuk). International Palynology Conference, Novosibirsk, Nauka, Moskow: 7-13.
- 6. Bińka, K., Nitychoruk, J., 2001. Late Saalian climate changes in Europe in the light of pollen analysis and the problem of two-step deglaciation at the oxygen isotope stage 6/5e transition. Boreas, 30: 307-316; https://doi.org/10.1111/j.1502-3885.2010.00179.x
- 7. Bitner, k., 1957. Three localities of interglacial flora of Sidra northly of Sokółka in Podlasie (in Polish with English summary). Biuletyn Instytutu Geologicznego, 18: 109-154.
- 8. Börner, A., Hrynowiecka, A., Stachowicz-Rybka, R., Niska, M., Moskal-del Hoyo, M., Kuznetsov, V., Maksimov, F., Petrov, a., 2018. Palaeoecological investigations and 230Th/U dating of the Eemian Interglacial peat sequence from Neubrandenburg-Hinterste Mühle (Mecklenburg-Western Pomerania, Ne Germany). Quaternary International, 467: 62-78; https://doi.org/10.1016/j.quaint.2017.04.003
- 9. Bober, A., Pidek, I.A., żarski, M., 2018. Late Saalin and Eemian interglacial at the Struga site (Garwolin plain central Poland). Acta Palaeobotanica, 58: 219-229; https://doi.org/10.2478/acpa-2018-0007
- 10. Bober, A., Brzozowicz, D., Drzymulska, D., żarsk, I M., Suchora, m., 2021. Palaeobotanicai record of the Eemian Interglacial succession at the Jagodne site (Garwolin plain central Poland). Geological Quarterly, 65: 34; http://doi.org/10.7306/gq.1602
- 11. Borówko-Dłużakowa, Z., Halicki, B., 1957. InterglACIAI SECTIONS of the Suwałki region and of the adjacent territory. Acta Geologica Polonica, 7: 361-399.
- 12. Bova, S., Rosenthal, Y., Liu, Z., Godad, S.P., Yan, M., 2021. Sea-sonal origin of the thermal maxima at the Holocene and the last interglacial. Nature, 589: 548-553; https://doi.org/10.1038/s41586-020-03155-x
- 13. Brauer, A., Allen, J.R.M., Mingram, J., Dulski, P., Wulf, S., Huntley, B., 2007. Evidence for the Last interglacial chronology and environmental change from southern Europe. National Academy of Sciences, 104: 450-455; https://doi.org/10.1073/pnas.0603321104
- 14. Brewer, S, Quiot, J., Sánchez-Gońi, M.F., Klotz, S., 2008. The Climate in Europe during the Eemian: a multi-method approach using pollen data. Quaternary science reviews, 27: 2303-23 https://doi.org/10.1016/j.quascirev.2008.08.029
- 15. Cappers, R.T.J., Bekker, R.M., Jans, J.E.A., 2006. Digital Seed Atlas of the Netherlands. Publisher Barkhuis Publishing and University of Groningen Library, Groningen.
- 16. Cheddadi, R., Mamakowa, K., Guiot, J., de Beaulieu, J.-L., Reille, M., Andrieu, V., Granoszewski, W., Peyron, O., 1998. Was the climate of the Eemian stable? A quantitative climate reconstruction from seven European pollen records. Palaeogeography, Palaeoclimatology, Palaeoecology, 143: 73-85; https://doi.org/10.1016/s0031-0182(98)00067-4
- 17. Cohen, K.M., Gibbard, P.L., 2019. Global chronostratigraphical correlation table for the last 2.7 million years, version 2019 QI-500. Quaternary International, 500: 20-31; https://doi.org/10.1016/j.quaint.2019.03.009
- 18. Cortijo, E., Duplessy, J.C., Labeyrie, L., Leclaire, H., Duprat, J., van Weering, T.C.E., 1994. Eemian cooling in the Norwegian Sea and North Atlantic Ocean preceding continental ice-sheet growth. Nature, 372: 446-449; https://doi.org/10.1038/372446a0
- 19. Dansgaard, W., Johnsen, S.J., Clausen, H.B., Dahl-Jensen, D., Gundestrup, N.S., Hammer, C.U., Hvidberg, C.S., Steffensen, J.P., Sveinbjörnsdottir, A.E., Jouzel, J., Bond, G., 1993. Evidence for general instability of past climate from a 250 kyr ice core record. Nature, 364: 218-220; https://doi.org/10.1038/364218a0
- 20. De Beaulieu, J.L., Reille, M., 1989. The transition from temperate phases to stadials in the long upper Pleistocene sequence from Les Echets (France). Palaeogeography, Palaeoclimatology, Palaeoecology, 72:147-159; https://doi.org/10.1016/0031-0182(89)90139-9
- 21. De Beaulieu, J.L., Reille, M., 1992a. The last climatic cycle at La Grande Pile (Vosges France) a new pollen profile. Quaternary Science Reviews, 11: 431-438; https://doi.org/10.1016/0277-3791(92)90025-4
- 22. De Beaulieu, J.-L., Reille, M., 1992b. Long Pleistocene pollen sequences from the Velay plateau (Massif central France). I. Ribains maar. Veg. Hist. Archaeobotany, 1: 233-242; https://doi.org/10.1002/1099-1417(200010)15:7%3c665::aid- jqs560%3e3.0.co;2-g
- 23. Fiłoc, M., Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I. A., Walanus, A., i Winter, H., 2018. Poaceae (Gramineae) - Grass family. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (ed. M. Kupryjanowicz, d. Nalepka, e. Madeyska and ch. Turner): 209-216. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 24. Fronval, T., Jansen, E., 1996. Rapid changes in ocean circulation and heat flux in the Nordic seas during the last interglacial period. Nature, 383: 806-810; https://doi.org/10.1038/383806a0
- 25. Grosse-Brauckmann, G., 1972. Über pflanzliche Makrofossilien mitteleuropäischer Torfe I. Gewebereste krautiger Pflanzen und ihre Merkmale. Telma, 2: 19-55; https://doi.org/10.23689/fidgeo-5276
- 26. Grosse-Brauckmann, G., 1974. Über pflanzliche makrofossilien mitteleuropäischer Torfe II. Weitere Reste (Fruchten und Samen, Moose u.a.) Und ihre bestimmungsmtiglichkeiten. Telma, 4: 51-117; https://doi.org/10.23689/fidgeo-5276
- 27. Govin, A., Capron, E., Tzedakis, P.C., Verheyden, S., Ghaleb, B., Hillaire-Marcel, C., St-Onge, G., Stoner, J.S., Bassinot, F., Bazin, L., Blunier, T., Combourieu-Nebout, N., Ouahabi, A.E., Genty, D., Gersonde, R., Jimenez-Amat, P., Landais, A., Martrat, B., Masson-Delmotte, V., Parrenin, F., Seidenkrantz, M.-S., Veres, D., Waelbroeck, C., Zahn, R., 2015. Sequence of events from the onset to the demise of the Last Interglacial: Evaluating strengths and limitations of chronologies used in climatic archives. Quaternary Science Review, 129: 1-36; https://doi.org/10.1016/j.quascirev.2015.09.018
- 28. Granoszewski, W., 2003. Late Pleistocene vegetation history and CLIMATIC CHANGES AT Horoszki Duże, E Poland: A Palaebotanical Study. Acta Palaeobotanica, Supplementum 4: 3-95.
- 29. Granoszewski, W., Winter, H., Rylova, T.B., Sanchenko, I.E., 2012. The course and correlation of the late Pleistocene pollen sequences from Poland and Belarus (in Polish with English summary). Przegląd Geologiczny, 60: 605-614.
- 30. Granoszewski, W., Kołaczek, P., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Kupryjanowicz, M., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I A., Walanus, A., Winter, H., 2018. Ulmus L. - Elm. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (ed. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 155-160. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 31. Grimm, E.C., 2016. Tiliai t. Https://www.neotomadb.org/apps/tilia
- 32. Guiot, J., de bBeaulieu, J.-L., CHeddadi, R., Davis, F., Ponel, P. Reille, M., 1993. The climate in western Europe during the last glacial/interglacial cycle derived from pollen and insect remains. Palaeogeography, Palaeoclimatology, Palaeoecology, 103: 73-93; https://doi.org/10.1016/0031-0182(93)90053-l
- 33. Hrynowiecka, A., Brzozowicz, D., Żarski, M., Stachowicz-Rybka, R., Pidek, I.A., 2020. Record of climate and palaeoenvironment changes in the fossil Eemian lake in Żabieniec (Central Poland). Procedings of INQUA SEQS, 2020: 55.
- 34. Hrynowiecka, A., Stachowicz-Rybka, R., Niska, M., Moskal-del Hoyo, M., Börner, A., Rother, H., 2021. Eemian (MIS 5e) climate oscillations based on palaeobotanical analysis from the Beckentin profile (NE Germany). Quaternary International, 605-606: 38-54; https://doi.org/10.1016/j.quaint.2021.01.025
- 35. Hursevič, G.K., Rylova, T.B., Fedenâ, S.A., 1995. BIOSTRATIGRAFIYA verkhnego pleistotsena po opornym razrezam yugo-vostochnoy Belarusi (in Russian). Litosfera, 2: 57-67.
- 36. IMGW, 2022, Charakterystyka wybranych elementów klimatu w Polsce w lipcu 2022 roku. Komunikat Biura Prasowego IMGW-PIB, Warszawa.
- 37. Iversen, J., 1944. Viscum, Hedera helix and ilex as climatic indicators. A contribution to the study of the Post-Glacial temperature climate. Geologiska Föreningens i Stockholm Förhandlingar, 66: 463-483.
- 38. Janczyk-Kopikowa, Z., 1965. Flora of the Eemian interglacial at Kaliska near Chodecz in Kujawy region (in Polish with English summary). Biuletyn Instytutu Geologicznego, 187: 107-117.
- 39. Jung, W., Beug, H.J., Dehm, R., 1972. Das Riss-Würm Interglazial von Zeifen, Landkreis Laufen a.d Salzach. Abhandlungen der Bayerischen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Klasse. Neue Folge, 151: 1-131.
- 40. Kats, N.Ya, kats, S.V., Kipiani, M.G., 1965. Atlas and a guide to fruits and seeds found in the Quaternary deposits of the USSR (in Russian). Akademiya nauk SSSR, Komissiya po izucheniyu chetvertichnogo perioda. Moskva, Nauka.
- 41. Klotz, S., Guiot, J., Mosbrugger, V., 2003. Continental European Eemian and early Würmian climate evo lution: comparing signals using different quantitative reconstruction approaches based on pollen. Global and Planetary Change, 36: 277-294; https://doi.org/10.1016/s0921-8181(02)00222-9
- 42. Kołaczek, P., Karpińska-Kołaczek, M., Petera-Zganiacz, J., 2012. Vegetation patterns under climate changes in the Eemian and Early Weichselian in Central Europe inferred from a palynological sequence from Ustków (central Poland). Quaternary International, 268: 9-20; https://doi.org/10.1016/j.quaint.2012.05.004
- 43. Kołaczek, P., Niska, M., Mirosław-Grabowska, J., Gałka M., 2016. Periodic lake-peatland shifts under the Eemian and Early Weichselian climate changes in Central Europe on the basis of multi-proxy studies. Palaeogeography, Palaeoclimatology, Palaeoecology, 461: 29-43; https://doi.org/10.1016/j.palaeo.2016.08.002
- 44. Kołaczek, P., Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I. A., Walanus, A., Winter, H., 2018a. Fraxinus excelsior L. - Ash. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 79-84. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 45. Kołaczek, P., Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I. A., Walanus, A., Winter, H., 2018b. Artemisia L. - Mugwort In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 171-176. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 46. Krupiński, K.M., 2005. The investigation of the younger pleistocene lacustrine sediments of the Płock UPLAND (in Polish with English summary). Biuletyn Państwowego Instytutu Geologicznego, 184: 5-58.
- 47. Krupiński, K., Morawski, W., 1993. Geological position and pollen analysis of Eemian Interglacial sediments of Warsaw-Wawrzyszew. Acta Palaeobotanica, 33: 309-346.
- 48. Król, S., 1975. An ecological outline. In: Cis Pospolity. Taxus Baccata L. Nasze Drzewa Leśne, Monografie Popularnonaukowe. (eds. S. Białobok). Poznań-Warszawa: Państwowe Wydawnictwo Naukowe PWN. 78-103.
- 49. Kühl, N., Litt, T., 2003. Quantitative time series reconstruction of Eemian temperature at three European sites using pollen data. Vegetation History and Archaeobotany, 12: 205-214; https://doi.org/10.1007/s00334-003-0019-2
- 50. Kukla, G., Mcmanus, J. F., Rousseau, D. D., Chuine, I., 1997. How long and how stable was the last interglacial? Quaternary Science Reviews, 16: 605-612; https://doi.org/10.1016/s0277-3791(96)00114-x
- 51. Kukla, G.J., Bender, M.L., de Beaulieu, J.-L., Bond, G., Broecker, W.S., Cleveringa, P., Gavin, J.E., Herbert, T.D., Imbrie, J., Jouzel, J., Keigwin, L.D., Knudsen, K.-L., Mcmanus, J.F., Merkt, J., Muhs, D.R., Müller, H., Poore, R.Z., Porter, S.C., Seret, G., Shackleton, N.J., Turner, C., Tzedakis, P.C., Winograd, I.J., 2002. Last Interglacial Climates. Quaternary Research, 58: 2-13; https://doi.org/10.1006/qres.2001.2316
- 52. Kupryjanowicz, m., 2008. Vegetation and climate of the Eemian and Early Vistulian Lakeland in northern podlasie. Acta palaeobotanica, 48: 3-130.
- 53. Kupryjanowicz, M., Granoszewski, W., 2018. Isopolle Palynostratigraphy of the Eemian Interglacial in Poland. In: Eemian History of Vegetation in Poland based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 17-20. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 54. Kupryjanowicz, M., Żarski, M., Drzymulska, D., 2003. Kontrowers - a new locality of the Eemian interglacial and the Early Vistulian at Żelechów Upland (eastern Poland). Acta Palaeobotanica, 43: 77-90.
- 55. Kupryjanowicz, M., Granoszewski, W., Nalepka, D., Pidek, I.A., Walanus, A., Balwierz, Z., Fiłoc, M., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Winter, H., 2016. Instability of the environment at the end of the Eemian interglacial as illustrated by the isopollen maps for Poland. Geological Quarterly, 60 (1): 225-237; https://doi.org/10.7306/gq.1271
- 56. Kupryjanowicz, M., Nalepka, D., Madeyska, E., Turner, C., 2018a. Eemian History of Vegetation in Poland Based on Isopollen Maps. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 57. Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I.A., Walanus, A., Winter, H., 2018b. Corylus avellana L. - Hazel in: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, d. Nalepka, e. Madeyska and ch. Turner): 65-72. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 58. Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I.A., Walanus, A., Winter, H., 2018c. Juniperus communis L. - Juniper. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 99-106. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 59. Kupryjanowicz, M., Granoszewski, W., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Pidek, I.A., Walanus, A., Winter, H., 2018d. Quercus L. - Oak. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 123-130. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 60. Kupryjanowicz, M., Malkiewicz, M., Nalepka, M., Balwierz, M., Bińka, M., Fiłoc, M., Granoszewski, M., Kołaczek, M., Nita, M., Noryśkiewicz, B., Pidek, I.A., Walanus, A., Winter, H, 2018e. Tilia L. - lime. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, d. Nalepka, E. Madeyska and ch. Turner): 145-153. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 61. Kupryjanowicz, M., Fiłoc, M., Kwiatkowski, W., 2018f., was there an abrupt cold climatic event in the middle Eemian? Pollen record from a palaeolake at the Hieronimowo site NE Poland. Quaternary International, 467: 96-106; https://doi.org/10.1016/j.quaint.2017.04.027
- 62. Kupryjanowicz, M., Fiłoc, M., Drzymulska, D, Poska, A., Suchora, M., Żarski, M., Mroczek, P., 2021. Environmental changes of the stadial/interstadial type during the Late Saalian (MIS-6) - Multi-proxy record at the Wola Starogrodzka site, central Poland. Palaeogeography, Palaeoclimatology, Palaeoecology, 572: 110420; https://doi.org/10.1016/j.palaeo.2021.110420
- 63. Landais, A., Chappellaz, J., Delmotte, M., Jouzel, J., Blunier, T., Bourg, C., Caillon, N., Cherrier, S., Malaizé, B., Masson-Delmotte, V., Raynaud, D., Schwander, J., Steffensen, J.P., 1993. A tentative reconstruction of the last interglacial and glacial inception in greenland based on new gas measurements in the Greenland Ice Core Project (GRIP) ice core, Journal of Geophysical Research: Atmospheres, 108 ; https://doi.org/10.1029/2002jd003147
- 64. Lauterbach, S., Brauer, A., Litt, T., Schettler, G., 2012. Re-evaluation of the Bispingen palaeolake record e a revised chronology for the Eemian in Northern Germany. In: EGU General Assembly 2012 Held 22-27 April 2012 in Vienna Austria, 8613.
- 65. Lambeck, K., Purcell, A., Funder, S., Kjær, K., Larsen, E., Möller, P., 2006. Constraints on the late Saalian to early Middle Weichselian ice sheet of Eurasia from field data and rebound modelling. Boreas, 35: 539-575; https://doi.org/10.1080/03009480600781875
- 66. Liivrand, E., 1974. Flora of the Mikulino Interglacial in Estonia (in Estonian). Eesti Lloodus, 9: 537-542.
- 67. Lisiecki, L.E., raymo, M.E., 2005. A Pliocene-Pleistocene stack of 57 GLOBALLY distributed BENTHIC s18O records: PLIOCENE-PLEISTOCENE benthic stack. Paleoceanography 20: pa1003; https://doi.org/10.1029/2004pa001071
- 68. Majecka, A., 2014. The palynological record of the Eemian interglacial and Early Vistulian glaciation in deposits of the Żabieniec Południowy fossil basin (Łódź Plateau central Poland) and its palaeogeographic significance. Acta Palaeobotanica, 54: 279-302; https://doi.org/10.2478/acpa-2014-0007
- 69. Makowska, A., 2009. Intermorainic lower Vistula formation against the background of geological structure of Pleistocene deposits in Vistula Pomerania, and its development during the Younger Pleistocene (in Polish with English summary). Biuletyn Państwowego Instytutu Geologicznego, 437: 59-124.
- 70. Mamakowa, K., 1976. Vegetation of the Eemian Interglacial at Imbramowice near Wrocław - Preliminary report. Acta Palaeobotanica, 17: 27-38.
- 71. Mamakowa, K., 1989. Late Middle Polish Glaciation, Eemian and Early Vistulian vegetation at Imbramowice near Wrocław and the pollen stratigraphy of this part of the Pleistocene in Poland. Acta Palaeobotanica, 29: 11-176.
- 72. Mamakowa, K., 1997. (unpubl.). Compiling, entering and processing od Polish data relating to the last interglacial - scienfific report no 2. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 73. Mauquoy, D, van Geel, B., 2007. Mire and peat macros. In: Encyclopedia of Quaternary Science (ed. S.A. Elias): 2315-2336. Vol. Heidelberg, Elsevier.
- 74. Mirosław-Grabowska, J., Niska, M., 2007a. Reconstruction of environmental conditions of Eemian palaeolake at Studzieniec (central Poland) on the basis of stable isotope and Cladocera Analyses. Quaternary International: 162-163: 195-204; https://doi.org/10.1016/j.quaint.2006.08.003
- 75. Mirosław-Grabowska, J., Niska, M., 2007b. Isotope AND Cladocera data and in terpretation from the Eemian optimum and postoptimum deposits Kaliska palaeolake (Central Poland). Quaternary International, 175: 155-167; https://doi.org/10.1016/j.quaint.2007.03.018
- 76. Müller, H., 1974. Pollenanalytische Untersuchungen und Jahresschichtenzählungen an der holsteinzeitlichen Kieselgur von Munster-Brehloh. Geologisches Jahrbuch, a21: 107-140.
- 77. Nalepka, D., Walanus, A., 2003. Data processing in pollen analysis. Acta Palaeobotanica, 43: 125-134.
- 78. Obidowicz, A., Szczepanek, K., Madeyska, E., Nalepka, D., 2004. Abies alba Mill. - Fir. In: late glacial and Holocene History of Vegetation in Poland based on isopollen maps. (ed. M. Ralska-Jasiewiczowa): 31-38. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 79. Pidek, I.A., Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Walanus, A., Winter, H., 2018a. Alnus Mill. - Alder. In: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 41-48. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 80. Pidek, I.A., Kupryjanowicz, M., Nalepka, D., Balwierz, Z., Bińka, K., Fiłoc, M., Granoszewski, W., Kołaczek, P., Majecka, A., Malkiewicz, M., Nita, M., Noryśkiewicz, B., Walanus, A., Winter, H., 2018b. Carpinus betulis l. - in: Eemian History of Vegetation in Poland Based on Isopollen Maps. (eds. M. Kupryjanowicz, D. Nalepka, E. Madeyska and Ch. Turner): 57-64. W. Szafer Institute of Botany, Polish Academy of Sciences, Kraków.
- 81. Pidek I.A., Hrynowiecka A., Zalat A.A. , Żarski m., 2021. A high-resolution pollen and diatom record of mid- to late-Eemian AT Kozłów (Central Poland) reveals no drastic climate changes in the hornbeam phase of this interglacial. Quaternary International, 583: 14-30; https://doi.org/10.1016/j.quaint.2021.02.032
- 82. Pidek, I.A., Poska, A., Hrynowiecka, A., Brzozowicz, D., Żarski, M., 2022. Two pollen-based methods of eemian climate reconSTRUCTION employed IN THE study of the Żabieniec-Jagodne palaeolakes in central Poland. Quaternary International, 632: 21-35; https://doi.org/10.1016/j.quaint.2021.09.014
- 83. Raukas, a., 1978. Pleistocene deposits of the Estonian SSR (in Russian). Valgus, Tallin.
- 84. Rioul, P., Andreu-Ponel, V., Rietti-Shati, M., Batterbee, R.W., de Beaulieu, J.-L., Cheddadi, R., Reille, M., Svobodova, H., Shemesh, A., 2001. High resolution record of climate stability in France during the last interglacial period. Nature, 413: 293-296; https://doi.org/10.1038/35095037
- 85. Roman, M., Mirosław-Grabowska, MJ., Niska, M., 2021. The Eemian Lakeland of the central Polish Plain: environmental changes and Palaeogeography. Palaeogeography, Palaeoclimatology, Palaeoecology, 561: 110087.
- 86. Sanchenko, I.E., Rylova, T.B. 2001. Biostratigraficheskoe raschlenenie muravinskikh i nizhnepoozerskikhotlozhenii pleistotsena na territorii Belarusi. Doklady Natsionalnoy Akademii Nauk Belarusi, 45: 93-98.
- 87. Sánchez-Gońi, M.-F., Loutre, M.F., Crucifix, M., Peyron, O., Santos, L., Duprat, J., Malaizé, B., Turon, J.L., Peypouquet, J.-P., 2005. Increasing vegetation and climate gradient in Western Europe over the Last Glacial Inception (122-110 ka): data-model comparison. Earth and Planetary Science Letters, 231: 111-130; https://doi.org/10.1016/j.epsl.2004.12.010
- 88. Seidenkrantz, M.-S., 1993. Benthic foraminiferal and stable isotope evidence for a 'younger dryas-style' cold spell at the saalian-eemian transition, denmark. Palaeogeography, Palaeoclimatology, Palaeoecology, 102: 103-120; https://doi.org/10.1016/0031-0182(93)90008-7
- 89. Shackleton, N.J., Chapman, M., Sánchez-Gońi, M.F., Pailler, D., Lancelot, Y., 2002. The Classic Marine Isotope Substage 5e. Quaternary Research, 58: 14-16; https://doi.org/10.1006/qres.2001.2312
- 90. Shalaboda, V.L., 2001. Characteristic features of Muravian (Eemian) pollen succession from vari ous regions of Belarus. Acta Palaeobotanica, 41: 27-41.
- 91. Solon, J., Borzyszkowski, J., Bidłasik, M., Richling, A., Badora, K., Balon J., Brzezińska-Wójcik, T., Chabudziński, Ł., Dobrowolski, R., Grzegorczyk, I., Jodłowski, M., Kistowski, M., Kot, R., Krąż, P., Lechnio, J., Macias, A., Majchrowska, A., Malinowska, E., Migoń, P., Myga-Piątek, U., Nita, J., Papińska E., Rodzik, J., Strzyż, M., Terpiłowski, S., Ziaja, W., 2018. Physico-geographical mesoregions of Poland: Verification and adjustment of boundaries on the basis of contemporary spatial data. Geographia Polonica, 91: 143-170; https://doi.org/10.7163/gpol.0115
- 92. Suchora, M., Kultys, K., Stachowicz-Rybka, R., Pidek, I. A., Hrynowiecka, A., Terpiłowski, S., Łabęcka, K., Żarski, M., 2022. Palaeoecological record of long Eemian series from Kozłów (Central Poland) with reference to palaeoclimatic and palaeohydrological interpretation. Quaternary International, 632: 36-50; https://doi.org/10.1016/j.quaint.2022.02.022
- 93. Stirling, C.H., Esat, T.M., McCulloch, M.T., Lambeck, K., 1995. High-precision U-series dating of corals from Western Australia and implications for the timing and duration of the last interglacial. Earth and Planetary Science Letters, 135: 115-130; https://doi.org/10.1016/0012-821x(95)00152-3
- 94. Święta-Musznicka, J., Latałowa, M., Szmeja, E.J., Badura, M., 2011. Salvinia natans in medieval wetland deposits in Gdańsk northern Poland: evidence for the early medieval climate warming. Journal of Paleolimnology, 45: 369-383; https://doi.org/10.1007/s10933-011-9505-1
- 95. Środoń, A., 1989. Fossil traces of Ligustrum vulgare L. In Poland (in Polish with English summary). Acta Palaeobotanica, 29: 199-205.
- 96. Tollefsrud, M.M., Latałowa, M., van der Knaap, W.O., Brochmann, C., Sperisen, C., 2015. Late Quaternary history of North Eurasian Norway spruce (Picea abies) and Siberian spruce (Picea obovata) inferred from macrofossils, pollen and cytoplasmic DNA variation. Journal of Biogeography, 42: 1431-1442; https://doi.org/10.1111/jbi.12484
- 97. Turner, C., 2002. Formal Status and Vegetational Development of the Eemian Interglacial in Northwestern and Southern Europe. Quaternary Research, 58: 41-44; https://doi.org/10.1006/qres.2002.2365
- 98. Tzedakis, P.C., Frogley, M.R., Heaton, T.H.E., 2002. Duration of last interglacial conditions in northwestern Greece. Quaternary Research, 58: 53-55; https://doi.org/10.1006/qres.2002.2328
- 99. Tzedakis, P.C., Frogley, M.R., Heaton, T.H.E., 2003. Last Interglacial conditions in southern Europe: evidence from ioannina, northwest Greece. Global and Planetary Change, 36: 157-170; https://doi.org/10.1016/s0921-8181(02)00182-0
- 100. Väliranta, M., Salonen, J.S., Heikkilä, M., Amon, L., Helmens, K., Klimaschewski, A., Kuhry, P, Kultti, S., Poska, A., Shala, S., Veski, S., Birks, H.H., 2015. Plant macrofossil evidence for an early onset of the Holocene summer thermal maximum in northernmost Europe. Nature Communications, 6; https://doi.org/10.1038/ncomms7809
- 101. Van leeuwen, R., Beets, D., Bosch, J., Burger, A., Cleveringa, P., van Harten, D., Wolf, H., 2000. Stratigraphy and integrated facies analysis of the Saalian and Eemian sediments in the Amsterdam-Terminal borehole, the Netherlands. Netherlands Journal of Geosciences, 79: 161-196; https://doi.org/10.1017/s0016774600023647
- 102. Velichkevich, F.YU., zastawniak, E., 2006. Atlas of Vascular Plant Macroremains from the Pleistocene of Central and Eastern Europe part 1e - Pteriodophytes and Manocotyledons. W. Szafer Institute of Botany Polish Academy of Sciences Cracow.
- 103. Velichkevich, F.YU., Zastawniak, E., 2008. Atlas of Vascular Plant Macroremains from the Pleistocene of Central and Eastern Europe Part 1e - Herbaceous Dicotyledones. W. Szafer Institute of Botany Polish Academy of Sciences, Kraków.
- 104. Velichko, A.A., Novenko, E.Y., Pisareva, V.V., Zelikson, E.M., Boettger, T., Junge, F.W., 2005. Vegetation and climate changes during the Eemian interglacial in Central and Eastern Europe: comparative analysis of pollen data. Boreas, 34: 207-219; https://doi.org/10.1111/j.1502-3885.2005.tb01016.x
- 105. Winter, H., Dobracka, E., Ciszek, D., 2008. Multiproxy studies of Eemian and Early Vistulian Sediments at Rzecino site (Łobez Upland, Western Pomerania Lakeland) (in Polish with English SUMMARY). Biuletyn Pastwowego Instytutu Geologicznego, 428: 93-110.
- 106. Wachecka-Kotkowska, L., Krzyszkowski, D., Malkiewicz, M.,Mirosław-Grabowska, J., Niska, M., Krzymińska, J., Myśkow, E., Raczyk, J., Wieczorek, D., Stoiński, A., Rzodkiewicz, M., 2018. An attempt to reconstruct the late Saalian to Plenivistulian (MIS6-MIS3) natural lake environment from the “Parchliny 2014” section, central Poland. Quaternary International, 467: 5-15; https://doi.org/10.1016/j.quaint.2016.06.013
- 107. Zagwijn, W.H., 1983. Sea-level changes in the Netherlands during the Eemian. Geologie en Mijnbouw, 62: 437-450 https://doi.org/10.1017/njg.2018.7
- 108. Zagwijn, W.H., 1989. Vegetation and climate during warmer intervals in the Late Pleistocene of western and central Europe. QuaTERNARY INTERNATIONAL, 3-4: 57-67; https://doi.org/10.1016/1040-6182(89)90074-8
- 109. Zagwijn, W.H., 1996. An analysis of Eemian climate in western and central Europe. Quaternary Science Reviews, 15: 451-469.
- 110. Zarzycki, K., Trzcińska-Tacik, H., Różański, W., Szeląg, Z.,Wołek, J., Korzeniak U., 2002. Ecological indicator values of vascular plants of Poland. W. Szafer Institute of Botany, Polish Academy of Science, Kraków.
- 111. Żarski, M., 2020. Objaśnienia do szczegółowej mapy geologicznej Polski, arkusz Garwolin (599). PIG-PIB, Warszawa.
- 112. Żarski, M., Winter, H., Kucharska, M., 2018. Palaeoenvironmental and climate changes recorded in the lacustrine sediments of the Eemian Interglacial (MIS 5e) in the Radom Plain (Central Poland). Quaternary International, 467: 147-160; https://doi.org/10.1016/j.quaint.2016.12.001
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