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Article

Origin of the Baltic Sea basin by Pleistocene glacial erosion

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Pages 237-252 | Received 26 Mar 2020, Accepted 03 Jun 2020, Published online: 29 Jul 2020

References

  • Ahlberg, A., Olsson, I. & Simkevicius, P. 2003: Triassic-Jurassic weathering and clay mineral dispersal in basement areas and sedimentary basins of southern Sweden. Sedimentary Geology 161, 15–29. doi:10.1016/S0037-0738(02)00381-0.
  • Al Hseinat, M. & Hübscher, C., 2014: Ice-load induced tectonics controlled tunnel valley evolution–instances from the southwestern Baltic Sea. Quaternary Science Reviews 97, 121–135. doi:10.1016/j.quascirev.2014.05.011.
  • Al Hseinat, M. & Hübscher, C., 2017: Late Cretaceous to recent tectonic evolution of the North German Basin and the transition zone to the Baltic Shield/southwest Baltic Sea. Tectonophysics 708, 28–55. doi:10.1016/j.tecto.2017.04.021.
  • Aleksa, P. & Bitinas, A., 2000: Glaciotectonic features in Lithuania. Geological Quarterly 44, 9–14.
  • Amantov, A., 1995: Plio Pleistocene Erosion of Fennoscandia and its Implications for Baltic Area. Proceedings of the Third Marine Geological Coonference “The Baltic”. Prace Panstwowego Instytutu Geologicznego, Warsaw.
  • Amantov, A., Fjeldskaar, W. & Cathles, L., 2011: Glacial Erosion/Sedimentation of the Baltic Region and the Effect on the Postglacial Uplift. In J. Harff, S. Björck, & P. Hoth (eds.): The Baltic Sea Basin, 53–71. Springer, Berlin Heidelberg.
  • Beckholmen, M. & Tirén, S.A., 2009: The geological history of the Baltic Sea, a review of the literature and investigation tools. SSM report. 2009: 17. Swedish Radiation Safety Authority Report, Stockholm.
  • Ber, A., 1989: Stratigraphy of the Quaternary of the Suwałki Lakeland and its substrate based on recent data. Geological Quarterly 33, 463–478.
  • Ber, A., 2006: Pleistocene interglacials and glaciations of northeastern Poland compared to neighbouring areas. Quaternary International 149, 12–23. doi:10.1016/j.quaint.2005.11.014.
  • Bijlsma, S., 1981: Fluvial sedimentation from the Fennoscandian area into the north-west European Basin during the Late Cenozoic. Geologie En Mijnbouw 60, 337–345.
  • Buntin, S., Malehmir, A., Koyi, H., Hogdahl, K., Malinowski, M., Larsson, S.A., Thybo, H., Juhlin, C., Korja, A. & Gorszczyk, A., 2019: Emplacement and 3D geometry of crustal-scale saucer-shaped intrusions in the Fennoscandian Shield. Scientific Reports 9, 10498. doi:10.1038/s41598-019-46837-x.
  • Carcione, J.M., Marcak, H., Seriani, G. & Padoan, G., 2000: GPR modeling study in a contaminated area of Krzywa Air Base (Poland). Geophysics 65, 521–525. doi:10.1190/1.1444746.
  • Catt, J.A., 1991: The Quaternary history and glacial deposits of East Yorkshore. In J. Ehlers, P. Gibbard, & J. Rose (eds.): Glacial deposits of Great Britain and Ireland, 185–191 p. Balkema, Rotterdam.
  • Clark, P.U., Archer, D., Pollard, D., Blum, J.D., Rial, J.A., Brovkin, V., Mix, A.C., Pisias, N.G. & Roy, M., 2006: The middle Pleistocene transition: characteristics, mechanisms, and implications for long-term changes in atmospheric CO2. Quaternary Science Reviews 25, 3150–3184. doi:10.1016/j.quascirev.2006.07.008.
  • Czubla, P., Forysiak, J. & Petera-Zganiacz, J., 2010: Lithological and petrographic features of tills in the Koźmin region and their value for stratigraphical interpretation of glacial Lake Koźmin deposits, Central Poland. Geologija 52, 1–8. doi:10.2478/v10056-010-0001-5.
  • Czubla, P., Terpiłowski, S., Orłowska, A., Zieliński, P., Zieliński, T. & Pidek, I.A., 2017: Petrographic features of tills as a tool in solving stratigraphical and palaeogeographical problems–a case study from Central-Eastern Poland. Quaternary International 501, 45–58. doi:10.1016/j.quaint.2017.08.028.
  • Dobrowolski, R., 2009: Glaciotectonic deformations of the Upper Cretaceous rocks: evidence from the chalk quarry in Chełm (Lublin region, Eastern Poland). Geologija 51, 70–75.
  • Donner, J., 2005: The Quaternary History of Scandinavia. Cambridge University Press, Cambridge.
  • Dowdeswell, J.A., Ottesen, D. & Rise, L., 2010: Rates of sediment delivery from the Fennoscandian Ice Sheet through an ice age. Geology 38, 3–6. doi:10.1130/G25523.1.
  • Ebert, K., Hättestrand, C., Hall, A.M. & Alm, G., 2011: DEM identification of macro-scale stepped relief in arctic northern Sweden. Geomorphology 132, 339–350. doi:10.1016/j.geomorph.2011.05.021.
  • Ehlers, J., 1981: Some aspects of glacial erosion and deposition in north Germany. Annals of Glaciology 2, 143–146. doi:10.3189/172756481794352513.
  • Ehlers, J., Gibbard, P.L. & Hughes, P.D., 2018: Chapter 4 - Quaternary glaciations and chronology. In J. Menzies & J.J.M. van der Meer (eds.): Past Glacial Environments (Second Edition), 77–101. Elsevier, Amsterdam. ISBN 9780081005248. https://doi.org/10.1016/B978-0-08-100524-8.00003-8.
  • Ehlers, J., Grube, A., Stephan, H.J. & Wansa, S., 2011: Chapter 13 - Pleistocene Glaciations of North Germany—New Results. In J. Ehlers, P.L. Gibbard, & P.D. Hughes (eds.): Developments in Quaternary Sciences, 149–162. Elsevier, Amsterdam.
  • Eyles, N., Boyce, J. & Mohajer, A., 1993: The bedrock surface of the western Lake Ontario region: evidence of reactivated basement structures? Géographie physique et Quaternaire 47, 269–283. doi:10.7202/032957ar.
  • Eyles, N., Clark, B.M., Kaye, B.G., Howard, K.W.F. & Eyles, C.H., 1985: The application of basin analysis techniques to glaciated terrains: an example from the Lake Ontario Basin, Canada. Geoscience Canada 12, 22–32.
  • Fairchild, I.J., Bradby, L. & Spiro, B., 1994: Reactive carbonate in glacial systems: a preliminary synthesis of its creation, dissolution and reincarnation. In M. Deynoux, J. Miller, E. Domack, N. EYLES, I. Fairchild, & G. Young (eds.): Earth’s Glacial Record, 176–192. Cambridge University Press, Cambridge.
  • Flodén, T., 1977: Tectonic lineaments in the Baltic from Gävle to Simrishamn. KBS Technical Report. 59. Kärnbränslesäkerhet, Stockholm.
  • Flodén, T., Bjerkéus, M., Endler, R. & Lemke, W., 1996: Cretaceous sedimentary bedrock of the Darss Sill area, southern Baltic Sea. GFF 118, 80–80. doi:10.1080/11035899609546381.
  • Flodén, T., Bjerkéus, M., Sturkell, E., Gelumbauskaitė, Ž., Grigelis, A., Endler, R., Lemke, W., Flodén, T., Bjerkéus, M. & Sturkell, E., 1997: Distribution and seismic stratigraphy of glacially incised valleys in the southern part of the Baltic. Proceedings of the Fourth Marine Geological Conference–the Baltic, Sveriges Geologiska Undersökning, Ser. Ca, 43–49.
  • Fredén, C. (ed), 1994: Geology. National Atlas of Sweden. Geological Survey of Sweden, Stockholm, PN Publishing. 208.
  • Funder, S., Demidov, I. & Yelovicheva, Y., 2002: Hydrography and mollusc faunas of the Baltic and the White Sea–North Sea seaway in the Eemian. Palaeogeography, Palaeoclimatology, Palaeoecology 184, 275–304. doi:10.1016/S0031-0182(02)00256-0.
  • Gibbard, P. & Lewin, J., 2016: Filling the North Sea Basin: Cenozoic sediment sources and river styles. Geologica Belgica 19, 201–217. doi:10.20341/gb.2015.017.
  • Glückert, G., 1974: Map of glacial striation of the Scandinavian ice sheet during the last (Weichsel) glaciation in northern Europe. Bulletin of the Geological Society of Finland 46, 1–8. doi:10.17741/bgsf/46.1.001.
  • Gorlach, A., Kalm, V. & Hang, T., 2015: Thickness distribution of Quaternary deposits in the formerly glaciated part of the East European plain. Journal of Maps 11, 625–635. doi:10.1080/17445647.2014.954646.
  • Górska, M., 2003: Nowe znaleziska narzutniaków porfiru rombowego z Oslo na terenie północno-zachodniej Polski. Przeglad Geologiczny 51, 580–585.
  • Gozhik, P., Lindner, L. & Marks, L., 2012: Late Early and early Middle Pleistocene limits of Scandinavian glaciations in Poland and Ukraine. Quaternary International 271, 31–37. doi:10.1016/j.quaint.2010.07.027.
  • Greenwood, S.L., Clason, C.C., Nyberg, J., Jakobsson, M. & Holmlund, P., 2017: The Bothnian Sea ice stream: early Holocene retreat dynamics of the south-central Fennoscandian Ice Sheet. Boreas 46, 346–362. doi:10.1111/bor.12217.
  • Gupta, S., Collier, J.S., Garcia-Moreno, D., Oggioni, F., Trentesaux, A., Vanneste, K., De Batist, M., Camelbeeck, T., Potter, G. & Van Vliet-Lanoë, B., 2017: Two-stage opening of the Dover Strait and the origin of island Britain. Nature Communications 8, 1–12. doi:10.1038/ncomms15101.
  • Hall, A.M., Ebert, K., Goodfellow, B.W., Hättestrand, C., Heyman, J., Krabbendam, M., Moon, S. & Stroeven, A.P., 2019a: Past and future impact of glacial erosion in Forsmark and Uppland. SKB TR-19-07. Svensk Kärnbränslehantering AB, Stockholm.
  • Hall, A.M., Krabbendam, M., Goodfellow, B.W., Hätttestrand, C., Heyman, J., Palamakumbura, R.N., Stroeven, A. & Näslund, J.-O., in Press: Glacial ripping: geomorphological evidence from Sweden for a new process of glacial erosion. Geografiska Annaler. https://doi.org/10.1080/04353676.2020.1774244
  • Hall, A.M., Krabbendam, M., Van Boeckel, M., Ebert, K., Hättestrand, C. & Heyman, J., 2019b: The sub-Cambrian unconformity in Västergötland: reference surface for glacial erosion of basement. Technical Report. SKB TR-19-21. Svensk Kärnbränslehantering AB, Stockholm.
  • Hall, A.M., Riding, J. & Brown, J.F., 2016: The last glaciation in Orkney, Scotland: glacial stratigraphy, event sequence and flow paths. Scottish Journal of Geology 52, 90–102. doi:10.1144/sjg2016-002.
  • Hansen, A. M., 1894: The glacial succession in Norway. The Journal of Geology, 2, 123–144.
  • Heyman, J., Goodfellow, B.W., Stroeven, A.P., Hall, A.M., Caffee, M., Hättestrand, C., Ebert, K., Näslund, J.O., Hippe, K., Martel, S.J., Moon, S., Perron, J.T. & Stuart, A.J., 2019: Erosion of low-relief basement by the Fennoscandian ice sheet based on bedrock 10Be and 26Al. INQUA, Dublin.
  • Hoffmann, K. & Meyer, K.-D., 1999: Indicator stone counts on Elsterian and Saalian sediments from eastern Germany. Geological Quarterly 43, 233–240.
  • Hoffmann, K. & Piotrowski, J.A., 2001: Till mélange at Amsdorf, central Germany: sediment erosion, transport and deposition in a complex, soft-bedded subglacial system. Sedimentary Geology 140, 215–234. doi:10.1016/S0037-0738(00)00184-6.
  • Houmark-Nielsen, M., 2004: The Pleistocene of Denmark: areview of stratigraphy and glaciation history. In J. Ehlers & P.L. Gibbard (eds.): Developments in Quaternary Sciences, 35–46, Volume 2, Part 1. Elsevier. ISBN 9780444514622, https://doi.org/10.1016/S1571-0866(04)80055-1.
  • Houmark-Nielsen, M., 2007: Extent and age of Middle and Late Pleistocene glaciations and periglacial episodes in southern Jylland, Denmark. Bulletin of the Geological Society of Denmark 55, 9–35.
  • Ignatius, H., Axberg, S., Niemistö, L. & Winterhalter, B., 1981: Quaternary geology of the Baltic Sea. In A. Voipio (ed.): The Baltic Sea, (54–121. Elsevier Oceanography, Amsterdam.
  • Jakobsen, P.R., 1996: Distribution and intensity of glaciotectonic deformation in Denmark. Bulletin of the Geological Society of Denmark 42, 175–185.
  • Kalm, V. & Gorlach, A., 2014: Impact of bedrock surface topography on spatial distribution of Quaternary sediments and on the flow pattern of late Weichselian glaciers on the East European Craton (Russian Plain). Geomorphology 207, 1–9. doi:10.1016/j.geomorph.2013.10.022.
  • Karabanov, A.K., 2000: Glaciotectonics of Belarus. Geological Quarterly 44, 1–7.
  • Karabanov, A.K. & Matveyev, A.V., 2011: Chapter 3 - The Pleistocene Glaciations in Belarus. In J. Ehlers, P.L. Gibbard, & P.D. Hughes (eds.): Quaternary Glaciations Extent and Chronology, 29–35. Elsevier, Amsterdam.
  • Kirsimae, K., Jørgensen, P. & Kalm, V., 1999: Low-temperature diagenetic illite-smectite in Lower Cambrian clays in North Estonia. Clay Minerals 34, 151–163. doi:10.1180/000985599546000.
  • Kleman, J., Hättestrand, C., Borgström, I. & Stroeven, A., 1997: Fennoscandian palaeoglaciology reconstructed using a glacial geological inversion model. Journal of Glaciology 43, 283–299. doi:10.1017/S0022143000003233.
  • Kleman, J., Stroeven, A.P. & Lundqvist, J., 2008: Patterns of Quaternary ice sheet erosion and deposition in Fennoscandia and a theoretical framework for explanation. Geomorphology 97, 73–90. doi:10.1016/j.geomorph.2007.02.049.
  • Knutsen, Å.R., 2018: Quantitative Comparison of Offshore Sediment Volumes and Onshore Erosion Potential in Norway in the Neogene and Quaternary. The University of Bergen, 65 p.
  • Kramarska, R., 2006: Paleogen i neogen południowego Bałtyku i jego wybrzeża. Thesis, Central Geological Archives of the Polish Geological Institute, Warszawa. 139 p.
  • Krzyszkowski, D., 1991: Saalian sediments of the Belchatow outcrop, central Poland. Boreas 20, 29–46. doi:10.1111/j.1502-3885.1991.tb00457.x.
  • Krzyszkowski, D. & Ibek, M., 1996: Middle Pleistocene sedimentation and palaeogeography of the Dzierżoniów Basin, Sudetic Foreland, Southwestern Poland. Annales Societatis Geologorum Poloniae 66, 35–58.
  • Lagerlund, E., Persson, K.M., Krzyszkowski, D., Johansson, P., Dobracka, E., Dobracki, R. & Panzig, W.-A., 1995: Unexpected ice flow directions during the Late Weichselian deglaciation of the South Baltic area indicated by a new lithostratigraphy in NW Poland and NE Germany. Quaternary International 28, 127–144. doi:10.1016/1040-6182(95)00028-H.
  • Larson, G. & Schaetzl, R., 2001: Origin and evolution of the Great Lakes. Journal of Great Lakes Research 27, 518–546. doi:10.1016/S0380-1330(01)70665-X.
  • Larson, S.-A., Tullborg, E.-L., Cederbom, C. & Stiberg, J.-P., 1999: Sveconorwegian and Caledonian foreland basins in the Baltic Shield revealed by fission-track thermochronology. Terra Nova-Oxford 11, 210–215. doi:10.1046/j.1365-3121.1999.00249.x.
  • Lemke, W., Kuijpers, A., Hoffmann, G., Milkert, D. & Atzler, R., 1994: The Darss Sill, hydrographic threshold in the southwestern Baltic: late Quaternary geology and recent sediment dynamics. Continental Shelf Research 14, 847–870. doi:10.1016/0278-4343(94)90076-0.
  • Lewandowski, J., 1988: Plejstocen środkowy w strefie doliny górnej Odry: brama Morawska-Kotlina Raciborska (próba syntezy). Przeglad Geologiczny 36, 465–474.
  • Lidmar-Bergström, K., 1995: Relief and saprolites through time on the Baltic Shield. Geomorphology 12, 45–61. doi:10.1016/0169-555X(94)00076-4.
  • Lidmar-Bergström, K., 1996: Long term morphotectonic evolution in Sweden. Geomorphology 16, 33–59. doi:10.1016/0169-555X(95)00083-H.
  • Lidmar-Bergström, K., Bonow, J.M. & Japsen, P., 2012: Stratigraphic Landscape Analysis and geomorphological paradigms: scandinavia as an example of Phanerozoic uplift and subsidence. Global and Planetary Change 100, 153–171. doi:10.1016/j.gloplacha.2012.10.015.
  • Lidmar-Bergström, K. & Olvmo, M., 2015: Plains, steps, hilly relief and valleys in northern Sweden – review, interpretations and implications for conclusions on Phanerozoic tectonics. SGU Research Paper, C 838, 1–42.
  • Liivamägi, S., Somelar, P., Mahaney, W.C., Kirs, J., Vircava, I. & Kirsimäe, K., 2014: Late Neoproterozoic Baltic paleosol: intense weathering at high latitude? Geology 42, 323–326. doi:10.1130/G35209.1.
  • Lindner, L. & Astapova, S.D., 2000: The age and geological setting of Pleistocene glacigenic beds around the border between Poland and Belarus. Geological Quarterly 44, 187–198.
  • Lindner, L., Bogutsky, A., Gozhik, P., Marks, L., Łanczont, M. & Wojtanowicz, J., 2006: Correlation of Pleistocene deposits in the area between the Baltic and Black Sea, Central Europe. Geological Quarterly 50, 195–210.
  • Lindner, L., Gozhik, P., Marciniak, B., Marks, L. & Yelovicheva, Y., 2004: Main climatic changes in the Quaternary of Poland, Belarus and Ukraine. Geological Quarterly 48, 97–114.
  • Lindner, L. & Marks, L., 2008: Pleistocene stratigraphy of Poland and its correlation with stratotype sections in the Volhynian Upland (Ukraine). Geochronometria 31, 31–37. doi:10.2478/v10003-008-0014-9.
  • Lindner, L. & Marks, L., 2015: Early and Middle Pleistocene fluvial series in northern foreland of the Carpathians (Poland and Ukraine) and their relation to Dnistr River terraces. Quaternary International 357, 22–32. doi:10.1016/j.quaint.2014.09.053.
  • Lindner, L., Marks, L. & Nita, M., 2013: Climatostratigraphy of interglacials in Poland: middle and Upper Pleistocene lower boundaries from a Polish perspective. Quaternary International 292, 113–123. doi:10.1016/j.quaint.2012.11.018.
  • Mark, D.F., Lindgren, P. & Fallick, A.E., 2014: A high-precision 40Ar/39Ar age for hydrated impact glass from the Dellen impact, Sweden. Geological Society, London, Special Publications 378, 349–366. doi:10.1144/SP378.22.
  • Marks, L., Dzierżek, J., Janiszewski, R., Kaczorowski, J., Lindner, L., Majecka, A., Makos, M., Szymanek, M., Tołoczko-Pasek, A. & Woronko, B., 2016: Quaternary stratigraphy and palaeogeography of Poland. Acta Geologica Polonica 66, 410–434. doi:10.1515/agp-2016-0018.
  • Marks, L., Gałązka, D., Krzymińska, J., Nita, M., Stachowicz-Rybka, R., Witkowski, A., Woronko, B. & Dobosz, S., 2014: Marine transgressions during Eemian in northern Poland: A high resolution record from the type section at Cierpięta. Quaternary International 328, 45–59. doi:10.1016/j.quaint.2013.12.007.
  • Marks, L., Karabanov, A., Nitychoruk, J., Bahdasarau, M., Krzywicki, T., Majecka, A., Pochocka-Szwarc, K., Rychel, J., Woronko, B., Zbucki, Ł., Hradunova, A., Hrychanik, M., Mamchyk, S., Rylova, T., Nowacki, Ł. & Pielach, M., 2018: Revised limit of the Saalian ice sheet in central Europe. Quaternary International 478, 59–74. doi:10.1016/j.quaint.2016.07.043.
  • Marks, L. & Pavlovskaya, I.E., 2003: The Holsteinian Interglacial river network of mid‐eastern Poland and western Belarus. Boreas 32, 337–346. doi:10.1080/03009480310001975.
  • Miettinen, A., Rinne, K., Haila, H., Hyvarinen, H., Eronen, M., Delusina, I., Kadastik, E., Kalm, V. & Gibbard, P., 2002: The marine Eemian of the Baltic: new pollen and diatom data from Peski, Russia, and Pohja-Uhtju, Estonia. Journal of Quaternary Science 17, 445–458. doi:10.1002/jqs.706.
  • Morawski, W., 2009: Differences in the regional stratigraphy of NE Poland caused by vertical movements due to glacioisostasy. Geologos 15, 235–250. doi:10.2478/v10118-009-0006-x.
  • Moreau, J., Huuse, M., Janszen, A., Van Der Vegt, P., Gibbard, P.L. & Moscariello, A., 2012: The glaciogenic unconformity of the southern North Sea. Geological Society, London, Special Publications 368, 99–110. doi:10.1144/SP368.5.
  • Näslund, J.O., 2006: Climate and climate-related issues for the safety assessment SR-Can. SKB TR-06-23. Svensk Kärnbränslehantering AB, Stockholm.
  • Nawrocki, J. & Becker, A., 2019: Geological Atlas of Poland. Polish Geological Institute – National Research Institute, Warszawa.
  • Nielsen, A.T. & Schovsbo, N.H., 2006: Cambrian to basal Ordovician lithostratigraphy in southern Scandinavia. Bulletin of the Geological Society of Denmark 53, 47–92.
  • Noormets, R. & Flodén, T., 2002: Glacial deposits and ice-sheet dynamics in the north-central Baltic Sea during the last deglaciation. Boreas 31, 362–377. doi:10.1080/030094802320942572.
  • Obst, K., Nachtweide, C. & Müller, U., 2017: Late Saalian and Weichselian glaciations in the German Baltic Sea documented by Pleistocene successions at the southeastern margin of the Arkona Basin. Boreas 46, 18–33. doi:10.1111/bor.12212.
  • Ottesen, D., Dowdeswell, J.A. & Bugge, T., 2014: Morphology, sedimentary infill and depositional environments of the Early Quaternary North Sea Basin (56°–62°N). Marine and Petroleum Geology 56, 123–146. doi:10.1016/j.marpetgeo.2014.04.007.
  • Overeem, I., Weltje, G., Bishop-Kay, C. & Kroonenberg, S., 2001: The Late Cenozoic Eridanos delta system in the Southern North Sea Basin: a climate signal in sediment supply? Basin Research 13, 293–312. doi:10.1046/j.1365-2117.2001.00151.x.
  • Overweel, C.J., 1977: Distribution and transport of Fennoscandinavian indicators: A synthesis of data from the literature leading to a reconstruction of a pattern of flowlines and ice margins of the Scandinavian ice sheets. Scripta Geologica 43, 1–117.
  • Påsse, T., 2004: The amount of glacial erosion of the bedrock. SKB TR-04-25. Svensk kärnbränslehantering AB, Stockholm.
  • Patruno, S., Scisciani, V., Helland-Hansen, W., D’intino, N., Reid, W. & Pellegrini, C., 2020: Upslope‐climbing shelf‐edge clinoforms and the stepwise evolution of the northern European glaciation (lower Pleistocene Eridanos Delta system, U.K. North Sea): when sediment supply overwhelms accommodation. Basin Research 32, 224–239. doi:10.1111/bre.12379.
  • Patton, H., Hubbard, A., Andreassen, K., Winsborrow, M. & Stroeven, A.P., 2016: The build-up, configuration, and dynamical sensitivity of the Eurasian ice-sheet complex to Late Weichselian climatic and oceanic forcing. Quaternary Science Reviews 153, 97–121. doi:10.1016/j.quascirev.2016.10.009.
  • Pedersen, S.A.S. & Gravesen, P., 2009: Structural development of Maglevandsfald: a key to understanding the glaciotectonic architecture of Møns Klint, SE Denmark. Geological Survey of Denmark and Greenland Bulletin 17, 29–32. doi:10.34194/geusb.v17.5007.
  • Phemister, J., 1926: The distribution of Scandinavian boulders in Britain. Geological Magazine 63, 433–454. doi:10.1017/S0016756800085393.
  • Piotrowski, J.A., 1994: Tunnel-valley formation in northwest Germany—geology, mechanisms of formation and subglacial bed conditions for the Bornhöved tunnel valley. Sedimentary Geology 89, 107–141. doi:10.1016/0037-0738(94)90086-8.
  • Pitkäranta, R., 2013: Lithostratigraphy and Age of Pre-Late Weichselian Sediments in the Suupohja Area, Western Finland. Ph.D. thesis. University of Turku, Turku. 66 p.
  • Puura, V., Flodén, T. & Mokrik, R., 2003: The Baltic Sea basin in the geology of Fennoscandia and Baltic region. Litosfera 7, 134–137.
  • Rasmussen, E.S., 2018: Discussion of “Eocene to mid-Pliocene landscape evolution in Scandinavia inferred from offshore sediment volumes and pre-glacial topography using inverse modelling”(Pedersen et al. 2018. Geomorphology, 303: 467–485). Geomorphology 328, 222–224. doi:10.1016/j.geomorph.2018.06.022.
  • Rasmussen, E.S., Dybkjær, K. & Piasecki, S., 2010: Lithostratigraphy of the upper Oligocene–Miocene succession of Denmark. Geological Survey of Denmark and Greenland Bulletin 22, 1–92. doi:10.34194/geusb.v22.4733.
  • Rasser, M.W., Harzhauser, M., Anistratenko, O.Y., Anistratenko, V.V., Bassi, D., Belak, M., Berger, J.P., Bianchini, G., Čičić, S. & Ćosović, V., 2008: Palaeogene and Neogene. The Geology of Central Europe 2, 1031–1139.
  • Rattas, M. & Kalm, V., 2004: Glaciotectonic deformation patterns in Estonia. Geological Quarterly 48, 15–22.
  • Rosentau, A., Bennike, O., Uscinowicz, S. & Miotk-Szpiganowicz, G., 2017: The Baltic Sea Basin. In N.C. Flemming, J. Harff, D. Moura, A. Burgess, & G.N. Bailey (eds.): Submerged Landscapes of the European Continental Shelf: Quaternary Paleoenvironments, 103–134. John Wiley & Sons, Chichester.
  • Ruszczyńska-Szenajch, H., 1985: Origin and age of the large-scale glaciotectonic structures in central and eastern Poland. Annales Societatis Geologorum Poloniae 55, 307–332.
  • Ruszczyńska-Szenajch, H., 1987: The origin of glacial rafts: detachment, transport, deposition. Boreas 16, 101–112. doi:10.1111/j.1502-3885.1987.tb00761.x.
  • Sadowski, E.-M., 2017: Towards a New Picture of the ’Baltic Amber Forest’-Flora, Habitat Types, and Palaeoecology. Georg-August-Universität Göttingen.
  • Salamon, T., 2009: Origin of Pleistocene outwash plains in various topographic settings, southern Poland. Boreas 38, 362–378. doi:10.1111/j.1502-3885.2008.00049.x.
  • Salonen, V.-P. & Glückert, G., 1992: Late-Weichselian glacial activity and sediments in southwestern Finland. Sveriges Geologiska Undersökning Ca Research Paper 81, 313–318.
  • Schuddebeurs, A., 1987: De verspreiding over Europa van gidsgesteenten uit het Oslogebied en begeleidende zwerfstenen. Grondboor & Hamer 41, 114–144.
  • Sejrup, H.P., Aarseth, I., Haflidason, H., Løvlie, R., Bratten, Å., Tjøstheim, G., Forsberg, C.F. & Ellingsen, K.L., 1995: Quaternary of the Norwegian Channel: glaciation history and palaeoceanography. Norsk Geologisk Tidsskrift 75, 65–87.
  • Šliaupa, S. & Hoth, P., 2011: Geological Evolution and Resources of the Baltic Sea Area from the Precambrian to the Quaternary. In J. Harff, S. Björck, & P. Hoth (eds.): The Baltic Sea Basin, 13–51. Springer, Berlin Heidelberg.
  • Słodkowska, B. & Gałązka, D., 2015: Osady paleogenu i neogenu w wielkoskalowych strukturach glacitektonicznych Wzgórz Dylewskich. Biuletyn Panstwowego Instytutu Geologicznego 461, 251–293. doi:10.5604/08676143.1142101.
  • Smed, P., 2016: Sten i det danske landskab, 271 p. Højers Forlag, Aalborg.
  • Smed, P. & Ehlers, J., 2002: Steine aus dem Norden: geschiebe als Zeugen der Eiszeit in Norddeutschland. Borntraeger, Berlin. 198 p.
  • Sømme, T.O., Skogseid, J., Embry, P. & Løseth, H., 2019: Manifestation of Tectonic and Climatic Perturbations in Deep-Time Stratigraphy – an Example From the Paleocene Succession Offshore Western Norway. Frontiers in Earth Science 7, 303. doi:10.3389/feart.2019.00303.
  • Tuuling, I., 2017: Paleozoic rocks structure versus Cenozoic cuesta relief along the Baltic Shield–East European Platform transect. Geological Quarterly 61, 396–412. doi:10.7306/gq.1342.
  • Tuuling, I. & Flodén, T., 2001: The structure and relief of the bedrock sequence in the Gotland-Hiiumaa area, northern Baltic Sea. GFF 123, 35–49. doi:10.1080/11035890101231035.
  • Tuuling, I. & Flodén, T., 2016: The Baltic Klint beneath the central Baltic Sea and its comparison with the North Estonian Klint. Geomorphology 263, 1–18. doi:10.1016/j.geomorph.2016.03.030.
  • Uscinowicz, S., 2003: Relative sea level changes, glacio-isostatic rebound and shoreline displacement in the Southern Baltic. Polish Geological Institute Special Papers 10, 1–79.
  • Uutela, S.A., 1991: Age and dispersal of sedimentary erratics on the coast of southwestern Finland. Bulletin of the Geological Society of Finland 349, 1–100.
  • Van Balen, R.T. & Heeremans, M., 1998: Middle Proterozoic-early Palaeozoic evolution of central Baltoscandian intracratonic basins: evidence for asthenospheric diapirs. Tectonophysics 300, 131–142. doi:10.1016/S0040-1951(98)00237-6.
  • Van Der Wateren, F.M., 1999: Structural geology and sedimentology of the Heiligenhafen till section, Northern Germany. Quaternary Science Reviews 18, 1625–1639. doi:10.1016/S0277-3791(98)00120-6.
  • Widera, M., 2000: Stratigraphy and lithology of Quaternary sediments in the Kleczew region and in key sections of the eastern Wielkopolska Lowland, central Poland. Geological Quarterly 44, 211–220.
  • Woźniak, P.P. & Czubla, P., 2015: The Late Weichselian glacial record in northern Poland: A new look at debris transport routes by the Fennoscandian Ice Sheet. Quaternary International 386, 3–17. doi:10.1016/j.quaint.2015.01.014.
  • Woźniak, P.P., Czubla, P., Wysiecka, G. & Drapella, M., 2009: Petrographic composition and directional properties of tills on the NW surroundings of Gdańsk Bay, Northern Poland. Geologija 51, 59–67. doi:10.2478/v10056-009-0007-z.
  • Zandstra, J.G., 1971: Geologisch onderzoek in de stuwwal van de oostelijke Veluwe bij Hattem en Wapenveld. Mededelingen Rijks Geologische Dienst, NS 22, 215–260.
  • Zandstra, J.G., 1983: Fine gravel, heavy mineral and grain-size analyses of Pleistocene, mainly glacigenic deposits in the Netherlands. In J. Ehlers (ed.): Glacial Deposits in North-West Europe, 361–377 p. Balkema, Rotterdam.