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A review of the diatom research in the Gulf of Gdańsk and Vistula Lagoon (southern Baltic Sea)

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[1] Abelmann, A. (1985). Palökologische und ökostratigraphische Untersuchungen von Diatomeenassoziationen an holozänen Sedimenten der zentralen Ostsee. Berichte -Reports. Geologisch-Paläontologisches Institut der Universität Kiel, 9, 200 pp, (in German). Search in Google Scholar

[2] Anderson, N.J (2000). Miniview: Diatoms, temperature and climatic change. European Journal of Phycology, 35, 307–314. 10.1080/09670260010001735911 Search in Google Scholar

[3] Anderson, N.J. & Vos P. (1992). Learning from the past: diatoms as paleoecological indicators of changes in marine environments. Netherlands Journal of Aquatic Ecology, 26(1), 19–30. http://dx.doi.org/10.1007/BF0229802510.1007/BF02298025 Search in Google Scholar

[4] Battarbee, R.W. (1986). Diatom analysis. In B.E. Berglund (Ed.), Handbook of Holocene paleoecology and paleohydrology (pp. 527–570). London: John Wiley & Sons Ltd. Search in Google Scholar

[5] Battarbee, R.W. (2000). Palaeolimnological approaches to climate change, with special regard to the biological record. Quaternary Science Reviews, 19, 107–124. http://dx.doi.org/10.1016/S0277-3791(99)00057-810.1016/S0277-3791(99)00057-8 Search in Google Scholar

[6] Bogaczewicz-Adamczak, B. (1982). Novyi diatomovyi analiz osadotchnoy tolshtchi Gelskogo Poluostrova. Peribalticum, 2, 185–93, (in Russian). Search in Google Scholar

[7] Bogaczewicz-Adamczak, B. & Dziengo M., 2003, Using benthic diatom communities and diatom indices to assess water pollution in the Puck Bay (southern Baltic Sea) littoral zone. Oceanological and Hydrobiological Studies, 32(4), 131–157. Search in Google Scholar

[8] Bogaczewicz-Adamczak, B., Kłosińska D. & Zgrundo A. (2001). Diatoms as indicators of water pollution in the coastal zone of the Gulf of Gdańsk (southern Baltic Sea). Oceanological Studies, 30(3–4), 59–75. Search in Google Scholar

[9] Bogaczewicz-Adamczak, B. & Koźlarska I. (1999). The evaluation of water quality in the Swelinia stream on the basis of diatom analysis. Oceanological Studies, 27(1–2), 59–71. Search in Google Scholar

[10] Bogaczewicz-Adamczak, B. & Miotk G. (1985). Z biostratygrafii osadów Zalewu Wiślanego. Peribalticum, 3, 79–96, (in Polish). Search in Google Scholar

[11] Bogaczewicz-Adamczak, B. & Żukowska A. (1990). Okrzemki kopalne z osadów w Juracie. Przewodnik 61 Zjazdu PTG, 71–74, (in Polish). Search in Google Scholar

[12] Bohr, R. & Sokół M. (1972). The fossil diatom flora from the sediments of the Hel Peninsula. International Conference in Poland, 22–26 September 1972, (pp. 20–23). Sopot: Wydawnictwa Geologiczna, Warszawa Search in Google Scholar

[13] Brockmann, C. (1954). Die Diatomeen in den Ablagerungen der Ostpreussischen Haffe. Meyniana, 3, 1–95, (in German). Search in Google Scholar

[14] Davydova, N.N., Dzsinoridze R.N., Kvasov D.D., Masicka G. & Spiridonova E.A. (1970). Novyie dannyie po stratigrafii donnykh otlozhenyi Yuzhnoj Baltiki. Baltica, 4, 33–43, (in Russian). Search in Google Scholar

[15] Denys, L. & De Wolf H. (1999). Diatoms as indicators of coastal paleoenvironments and relative sea-level change. In E.F. Stoermer & J.P. Smol (Eds), The diatoms. Application for the Environmental and Earth Sciences, (pp. 277–298), Cambridge: Cambridge University Press. Search in Google Scholar

[16] Dziengo-Czaja, M., (2006). Ubytek informacji biologicznej w osadach Zatoki Gdańskiej w świetle badań współczesnej i kopalnej flory okrzemkowej. PhD Thesis; University of Gdańsk: 1–125, (in Polish). Search in Google Scholar

[17] Dziengo-Czaja, M., Koss J. & Matuszak A., (2008). Teratological forms of diatoms (Bacillariophyceae) as indicators of water pollution in the western part of Puck Bay (southern Baltic Sea). Oceanological and Hydrobiological Studies, 37(2), 119–132. http://dx.doi.org/10.2478/v10009-007-0042-110.2478/v10009-007-0042-1 Search in Google Scholar

[18] Fritz, S.C., Cumming B.F., Gasse F. & Laird K.R. (1999). Diatoms as indicators of hydrological and climatic change in saline lakes. Applications and uses of diatoms: prologue. In E.F. Stoermer & J.P. Smol (Eds), The diatoms. Application for the Environmental and Earth Sciences, (pp. 41–72), Cambridge: Cambridge University Press. Search in Google Scholar

[19] Fronczak, M. & Pliński M. (1982). Ecological characteristic of fouling microflora in Puck Bay. Zeszyty Naukowe UG. Oceanografia, 9, 49–64, (in Polish). Search in Google Scholar

[20] Gross, H. (1941). Beitrag zur Entwicklungsgeschichte des Frischen Haffs. Geologie das Meere und Binnengewässer, 5(1), 1–38. Search in Google Scholar

[21] Hall, R.I. & Smol J.P. 1999. Diatoms as indicators of lake eutrophication. In E.F. Stoermer & J.P. Smol (Eds), The diatoms. Application for the Environmental and Earth Sciences, (pp. 128–168), Cambridge: Cambridge University Press. 10.1017/CBO9780511613005.007 Search in Google Scholar

[22] Ignatius, H. & Tynni R. (1978). Itämeren vaiheet ja piilevätutkimus. Turun yliopiston maaperägeologian osaston julkaisuja, 36, 1–26. Search in Google Scholar

[23] Jankowska, D., Witak M. & Huszczo D. (2005) Paleoecological changes of the Vistula Lagoon in the last 7000 y BP based on the diatom flora. Oceanological and Hydrobiological Studies, 34(4), 109–29. Search in Google Scholar

[24] Kasprzycka, M. (1999). Tło paleogeograficzne osadnictwa Żuław Elbląskich w pierwszym tysiącleciu naszej ery. ADALBERTUS 5, 1–194, (in Polish). Search in Google Scholar

[25] Korhola, A., Weckström J., Holmström L. & Erästö P. (2000). A quantitative Holocene climatic record from diatoms in northern Fennoscandia. Quaternary Research, 54, 284–294. http://dx.doi.org/10.1006/qres.2000.215310.1006/qres.2000.2153 Search in Google Scholar

[26] Lakowitz, K. (1907). Die Algenflora der Danziger Bucht. Ein Beitrag zur Kenntnis der Ostseeflora. Danzig. (in German). Search in Google Scholar

[27] Lange-Bertalot, H., Witkowski A., & Bogaczewicz-Adamczak B. (2003). Rare and new so-called taxa of Navicula s. str. in the Gulf of Gdańsk and its freshwater effluents. Limnologica, 33, 258–270. http://dx.doi.org/10.1016/S0075-9511(03)80021-X10.1016/S0075-9511(03)80021-X Search in Google Scholar

[28] Leśniewska, M. & Witak M. (2008). Holocene diatom biostratigraphy of the SW Gulf of Gdańsk, southern Baltic Sea (part III). Oceanological and Hydrobiological Studies, 37(4), 35–52. 10.2478/v10009-008-0017-x Search in Google Scholar

[29] Niemkiewicz, E. & Wrzołek L. (1998). Phytoplankton as eutrophication indicators in the Gulf of Gdańsk water. Oceanological Studies, 27(4), 77–92. Search in Google Scholar

[30] Pieczka F.B. & Zaborowska K. (1989). Litologia i stratygrafia rdzenia 6/HI/67 z Basenu Gdańskiego, Studia i Materiały Oceanologiczne, 56, 323–330, (in Polish). Search in Google Scholar

[31] Pliński, M. (1973). Badania nad glonami południowego Bałtyku oraz Zalewu Szczecińskiego i Zalewu Wiślanego, Zeszyty Naukowe Wydz. BiNoZ UG, Oceanografia, 1, 59–72, (in Polish). Search in Google Scholar

[32] Pliński, M. (1975). The algae in the surface water of the Bay of Puck (Baltic) in the vegetation period of 1972. Botanica Marina, 18, 183–186. 10.1515/botm.1975.18.3.183 Search in Google Scholar

[33] Pliński, M. (1979). Kierunki zmian strukturalnych w fitoplanktonie estuariów Bałtyku Południowego, Rozprawy i Monografie UG, 15, 1–136, (in Polish). Search in Google Scholar

[34] Pliński, M. (1982). Rozmieszczenie i biomasa fitobentosu Zatoki Puckiej wewnętrznej, Studia i Materiały Oceanologiczne, 39, 53–68, (in Polish). Search in Google Scholar

[35] Pliński, M. (1987). Roślinność. In B. Augustowski (Ed.), Bałtyk Południowy (pp. 321–346), Wrocław, Warszawa, Kraków, Gdańsk, Łódź: Wydawnictwo PAN, (in Polish). Search in Google Scholar

[36] Pliński, M. (1988). Glony Zatoki Gdańskiej. Część IV. Okrzemki, Gdańsk: Wydawnictwo UG, (in Polish). Search in Google Scholar

[37] Pliński, M. (1990). Important ecological features of the Polish coastal zone of the Baltic Sea. Limnologica, 20, 39–45. Search in Google Scholar

[38] Pliński, M. (1992). Vegetation. Studia i Materiały Oceanologiczne, 61, 181–190, (in Polish). Search in Google Scholar

[39] Pliński, M. (1995). Phytoplankton of the Gulf of Gdańsk in 1992 and 1993. Oceanologia, 37, 123–135. Search in Google Scholar

[40] Pliński, M. & Florczyk I. (1984). Changes in the phytoplankton resulting from the eutrophication of the Puck Bay. Limnologia, 15, 325–327. Search in Google Scholar

[41] Pliński, M. Florczyk I. & Picińska J. (1985). Skład i liczebność fitoplanktonu Zatoki Gdańskiej Właściwej. Studia i Materiały Oceanologiczne, 46, 23–64, (in Polish with English summary). Search in Google Scholar

[42] Pliński, M., Janik J. & Gliczyński T. (1994). Biomasa fitoplanktonu Zatoki Gdańskiej w latach 1986 i 1987, Zeszyty Naukowe UG Oceanografia, 13, 61–68, (in Polish). Search in Google Scholar

[43] Pliński, M & Kwiatkowski J. (1996). Microphytobenthos of the shallow littoral of the southern Baltic. Oceanological Studies, 4, 65–77. Search in Google Scholar

[44] Pliński, M. & Picińska J. (1986). The dynamics of seasonal change of the phytoplankton biomass in the Gulf of Gdańsk. Oceanologia, 23, 77–83. Search in Google Scholar

[45] Pliński, M., Sobolewska B. & Mielczarek M. (1982). Skład i liczebność fitoplanktonu zachodniej części Zatoki Gdańskiej. Studia i Materiały Oceanologiczne, 39, 35–75, (in Polish with English Summary). Search in Google Scholar

[46] Pliński, M. & Witkowski A. (2009). Diatoms — Bacillariophyta. Part one: centric diatoms, In M. Pliński (Ed.), Flora of the Gulf of Gdańsk and adjacent waters (southern Baltic), 4/1, Gdańsk: Wydawnictwo Uniwersytetu Gdańskiego, pp. 223, (in Polish with the English key for identification to the genus) Search in Google Scholar

[47] Przybyłowska-Lange, W. (1974). Rozwój Zalewu Wiślanego w świetle analizy okrzemkowej. Prace IMGW, 2, 129–162, (in Polish). Search in Google Scholar

[48] Przybyłowska-Lange, W. (1976). Diatoms of lake deposits from the Polish, Baltic Coast. I. Lake Druzno. Acta Palaeobotonica, 17, 35–74. Search in Google Scholar

[49] Ringer, Z. (1970). Skład fitoplanktonu południowego Bałtyku w latach 1967–68. Studia i Materiały MIR, Gdynia, 7(A), 1–31, (in Polish). Search in Google Scholar

[50] Ringer, Z. (1973). Fitoplankton południowego Bałtyku na tle warunków hydrologicznych. Studia i Materiały MIR, Gdynia, 11(A), 1–89, (in Polish). Search in Google Scholar

[51] Ringer, Z. (1990). Roślinność. In A. Majewski (Ed.), Zatoka Gdańska (pp. 361–373) Warszawa: Wydawnictwa Geologiczne, (in Polish). Search in Google Scholar

[52] Round, F.E. Crawford R.M. & Mann D.G. (1990). The diatoms. Biology and morphology of the genera. Cambridge: Cambridge University Press. Search in Google Scholar

[53] Rumek, A. (1948). Lista gatunków fitoplantonu powierzchniowego Zatoki Gdańskiej. Biuletyn Morskiego Laboratorium Rybackiego, 4, 139–141, (in Polish). Search in Google Scholar

[54] Rumek, A. (1950). Sezonowe występowanie gatunków w fitoplanktonie Zatoki Gdańskiej. Biuletyn Morskiego Laboratorium Rybackiego, 5, 145–149, (in Polish). Search in Google Scholar

[55] Sancetta, C. (1982). Distribution of diatom species in surface sediments of the Bering and Okhotsk seas. Micropaleontology, 28,3, 221–257. http://dx.doi.org/10.2307/148518110.2307/1485181 Search in Google Scholar

[56] Sandegren, R. (1935). O kopalnej mikroflorze z wiercenia na Helu i o zmianach postglacjalnych poziomu Bałtyku. Sprawozdania PIG, 8(3), 51–63, (in Polish). Search in Google Scholar

[57] Sandegren, R. (1938). Über die fossilen Mikroflora aus den Bohrungen bei Bad Hel und Jurata auf der Halbinsel Hel. Geologiska Föreningen i Stockholm Förhandlingar, 60(4), 601–611, (in German). http://dx.doi.org/10.1080/1103589380944460210.1080/11035893809444602 Search in Google Scholar

[58] Schulz, P. (1926). Die Kieselalgen der Danziger Bucht mit Einschluss derjenigen aus glazialen und postglazialen Sedimenten. Botanischer Archive Königsberg, 13(3–4), 149–327, (in German). Search in Google Scholar

[59] Snoeijs, P. (1993). Intercalibration and distribution of diatom species in the Baltic Sea, Volume 1, The Baltic Marine Biologist Publication, 16a. Uppsala: Opulus Press. Search in Google Scholar

[60] Snoeijs, P. (1999). Diatoms and environmental changes in brackish waters. In E.F. Stoermer & J.P. Smol (Eds), The Diatoms: Applications for the Environmental and Earth Science (pp. 298–333). Cambridge: Cambridge University Press. Search in Google Scholar

[61] Snoeijs, P. & Balashova N. (1998). Intercalibration and distribution of diatom species in the Baltic Sea, Volume 5, The Baltic Marine Biologist Publication, 16e. Uppsala: Opulus Press. Search in Google Scholar

[62] Snoeijs, P. & Kasperoviciene J. (1996). Intercalibration and distribution of diatom species in the Baltic Sea, Volume 4, The Baltic Marine Biologist Publication, 16d. Uppsala: Opulus Press. Search in Google Scholar

[63] Snoeijs, P. & Potapova M. (1995). Intercalibration and distribution of diatom species in the Baltic Sea, Volume 3, The Baltic Marine Biologist Publication, 16c. Uppsala: Opulus Press. Search in Google Scholar

[64] Snoeijs, P. & Vilbaste S. (1994). Intercalibration and distribution of diatom species in the Baltic Sea, Volume 2, The Baltic Marine Biologist Publication, 16b. Uppsala: Opulus Press. Search in Google Scholar

[65] Stachura, K. & Witkowski A. (1997). Response of the Gulf of Gdańsk diatom flora to the sewage run-off from the Vistula river. Fragmenta Floristica Geobotanica 42(2), 517–545. Search in Google Scholar

[66] Stachura-Suchoples, K. (1998). The last 200 years as revealed by diatom analysis — preliminary results. Proceedings of the 15th International Diatom Symposium, 209–226. Search in Google Scholar

[67] Stachura-Suchoples, K., (1999). Diatoms as indicators of Vistula river influence on the paleoecology of the Gulf of Gdańsk. PhD thesis, University of Gdańsk, pp.172, (in Polish) Search in Google Scholar

[68] Stachura-Suchoples, K., (2001). Bioindicative values of dominant diatom species from the Gulf of Gdańsk, Southern Baltic Sea, Poland, In R. Jahn, J.P. Kociolek, A. Witkowski & Compére P. (Eds), Lange-Bertalot-Festschrift (pp. 477–490). Ruggell, Lichtenstein: Gantner Verlag. Search in Google Scholar

[69] Stachura-Suchoples, K. (2006). Diatoms as indicators of the influence of the Vistula River inflow on the Gulf of Gdańsk during the Holocene. In Ognjanova-Rumenova N. & Manoylov K., (Eds.), Advances in phycological studies, Festschrift in Honour of Prof. Dobrina Temniskova-Topalov (pp. 283–291), Sofia-Moscow: PENSOFT Publishers & University Publishing House. Search in Google Scholar

[70] Stachura-Suchoples, K., Zgrundo A. & Witkowski A. (1998). Occurrence and significance of Chaetoceros (Bacillariophycae) resting spores in the Holocene sediments of the Baltic Sea. Oceanological Studies, 2, 87–92. Search in Google Scholar

[71] Stachura, K. & Witkowski A. (1997). Response of the Gulf of Gdańsk diatom flora to the sewage run-off from the Vistula river. Fragmenta Floristica Geobotanica 42(2), 517–545. Search in Google Scholar

[72] Uścinowicz, S., Zachowicz J., Miotk-Szpiganowicz G. & Witkowski A. (2007). Southern Baltic sea-level oscillations: New radiocarbon pollen and diatom proof of the Puck Lagoon (Poland). The Geological Society of America, Special Paper, 426, 143–158. Search in Google Scholar

[73] Witak, M. (2000). A diatom record of Late Holocene environmental changes in the Gulf of Gdańsk. Oceanological Studies, 29(2), 57–74. Search in Google Scholar

[74] Witak, M. (2002). Postglacial history of the development of the Puck Lagoon (the Gulf of Gdańsk, Southern Baltic Sea) based on the diatom flora. Diatom Monographs 2. Ruggell, Lichtenstein: Gantner Verlag. Search in Google Scholar

[75] Witak, M. (2010). Application of diatom biofacies in reconstructing sedimentary basins evolution. The records from the southern Baltic Sea differentiated by the extent of the Holocene marine transgressions and human impact. Diatom Monographs 12. Ruggell, Lichtenstein: Gantner Verlag. Search in Google Scholar

[76] Witak M. (2013). Diatom biofacies in the SW Gulf of Gdańsk and the Vistula Lagoon (the southern Baltic Sea) as indicators of the basin evolution in the Middle and Late Holocene. Oceanological and Hydrobiological Studies, 42(1), 70–88 http://dx.doi.org/10.2478/s13545-013-0052-410.2478/s13545-013-0052-4 Search in Google Scholar

[77] Witak M., Bogaczewicz-Adamczak B., 2006, Diatoms as indicators of the Littorina and Post-Littorina transgressions in the Polish coastal zone, Proceedings of the 18th International Diatom Symposium (pp. 479–497). Bristol: Biopress Limited. Search in Google Scholar

[78] Witak, M. & Dunder J. (2007). Holocene diatom biostratygraphy of the SW Gulf of Gdańsk, Southern Baltic Sea (part II). Oceanological and Hydrobiological Studies, 36(3), 3–20 http://dx.doi.org/10.2478/v10009-007-0021-610.2478/v10009-007-0021-6 Search in Google Scholar

[79] Witak, M. & Jankowska D. (2005). The Vistula Lagoon evolution based on diatom records. BALTICA, 18(2), 68–76. Search in Google Scholar

[80] Witak, M., Boryń K. & Mayer A. (2005). Holocene environment changes recorded by diatom stratigraphy in the Vistula Lagoon. Oceanological and Hydrobiological Studies, 34(2), 111–33. Search in Google Scholar

[81] Witak, M., Jankowska D. & Piekarek-Jankowska H. (2006). Holocene diatom biostratigraphy of the SW Gulf of Gdańsk, Southern Baltic Sea (part I). Oceanological and Hydrobiological Studies, 35(4), 307–329. Search in Google Scholar

[82] Witak, M. & Jankowska D. (in print). Ancylus Lake stage in the Gulf of Gdańsk (southern Baltic Sea) based on the diatom taphocoenoses, In P. Kociolek, M. Kulikovsky, D.M. Harwood & J. Witkowski (Eds.), Strelnikova — Festschrift. Ruggell, Lichtenstein: Gantner Verlag. Search in Google Scholar

[83] Witkowski, A. (1990). Fossilization processes of the microbial mat developing in clastic sediments of the Puck Bay (Southern Baltic Sea). Acta Geologica Polonica, 40(1–2), 1–27. Search in Google Scholar

[84] Witkowski, A. (1991a). Diatoms of the Puck Bay coastal shallows (Poland, Southern Baltic). Nordic Journal of Botany, 11, 689–701. http://dx.doi.org/10.1111/j.1756-1051.1991.tb01280.x10.1111/j.1756-1051.1991.tb01280.x Search in Google Scholar

[85] Witkowski, A. (1991b). Fallacia cassubiae sp. nov., a new brackish-water diatom from the Puck Bay (Southern Baltic Sea), Poland. Diatom Research, 6, 401–409. http://dx.doi.org/10.1080/0269249X.1991.970518410.1080/0269249X.1991.9705184 Search in Google Scholar

[86] Witkowski, A. (1993a). Fragilaria gedanensis sp. nov. (Bacillariophyceae), a new epipsammic diatom species from the Baltic Sea. Nova Hedwigia, 56, 497–503. Search in Google Scholar

[87] Witkowski, A. (1993b). Cocconeis hauniensis sp. nov., a new epipsammic diatom species from Puck Bay (Southern Baltic Sea), Poland. Nordic Journal of Botany, 13, 467–471. http://dx.doi.org/10.1111/j.1756-1051.1993.tb00083.x10.1111/j.1756-1051.1993.tb00083.x Search in Google Scholar

[88] Witkowski, A. (1993c). Fallacia florinae (Moeller) com. nov., a marine, epipsammic diatom. Diatom Research, 8, 215–218. http://dx.doi.org/10.1080/0269249X.1993.970525410.1080/0269249X.1993.9705254 Search in Google Scholar

[89] Witkowski, A. (1994). Recent and fossil diatom flora of the Gulf of Gdańsk, Southern Baltic Sea. Biblioteca Diatomologica, 28, 1–313. Search in Google Scholar

[90] Witkowski, A. & Lange-Bertalot, H. (1993). Established and new diatom taxa related to Fragilaria schulzii Brockmann. Limnologica, 23, 59–70. Search in Google Scholar

[91] Witkowski, A., Pempkowiak J. (1995). Reconstructing the development of human impact from diatoms and 210Pb sediment dating (The Gulf of Gdańsk — Southern Baltic Sea). Geographia Polonica, 65, 63–78. Search in Google Scholar

[92] Witkowski, A., Lange-Bertalot H., & Metzeltin D. (2000). Diatom flora of marine coasts I. Iconographica Diatomologica, 7, 1–925. Search in Google Scholar

[93] Witkowski, A., Lange-Bertalot H., Witak M. (1995). Diatom taxa of unusual structure belonging to the genus Fragilaria, Fragmenta Floristica Geobotanica 40(2), 729–741. Search in Google Scholar

[94] Witkowski, A., Lange-Bertalot H. & Stachura K. (1998). New and confused species in the genus Navicula (Bacillariophyceae) and the cosequences of restrictive generic circumscription. Cryptogamie Algologie, 19(1–2), 83–108. Search in Google Scholar

[95] Witkowski, A., Metzeltin D., Lange-Bertalot H., & Bafana G. (1997). Fogedia gen. nov. (Bacillariophyceae) a new naviculoid genus from the marine littoral. Nova Hedwigia, 65(1–4), 79–98. Search in Google Scholar

[96] Witkowski, A., & Witak M. (1993). Budowa geologiczna dna zatoki. In K. Korzeniewski (Ed.), Zatoka Pucka. (pp. 309–315). Gdańsk: Instytut Oceanografii UG, (in Polish). Search in Google Scholar

[97] Yuspina, L. & Savukyniene N. (2003). Biostratigraphy of bottom sediments of the Gdańsk Basin. In E.M. Emelyanov (Ed.), Geology of the Gdańsk Basin, Baltic Sea (pp. 118–134). Kaliningrad: Yantarny Skaz. Search in Google Scholar

[98] Zaborowska, K. & Zachowicz J. (1982). Voprosy biostratigrafii donnykh otlozhenyi Gdanskoy Buchty. Peribalticum, 2, 195–201, (in Russian). Search in Google Scholar

[99] Zgrundo, A. (2004). Ocena wpływu potoków na stan środowiska w przybrzeżnej strefie Zatoki Gdańskiej na podstawie analizy okrzemkowej. PhD Thesis; University of Gdańsk: 1–163. (in Polish). Search in Google Scholar

[100] Zgrundo, A., & Bogaczewicz-Adamczak B. (2004). Applicability of diatom indices for monitoring water quality in coastal streams in the Gulf of Gdańsk region, northern Poland. Oceanological and Hydrobiological Studies, 33(3), 31–46. Search in Google Scholar

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