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Pattern of spatial fish distribution in the sulejow reservoir monitored by horizontally beaming echosounder and by gill netting

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Sulejów reservoir situated on the Pilica River in Central Poland serves as an important source of drinking water for the Lodz Agglomeration. Precise knowledge on fish abundance, community structure as well as spatial and temporal changeability is crucial for proper fishery management (biomanipulation) in order to slow down the reservoir eutrophication and prevent toxic algal blooms. As the reservoir is very shallow (average depth is 3.3 m) it was necessary for fish distribution monitoring to apply, first time in Poland, horizontally looking split beam echosounder (Simrad EY-500 with elliptic transducer ES 120-4x10). Simultaneously, to collect fish for verification of acoustic data and determination of fish species composition, multimesh gill nets were used in representative parts of the reservoir. Prepared maps showing both spatial fish distribution and their density suggest that used methods were suitable for identification of specific areas characterized by different quality of environmental conditions.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
37--45
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
  • Department of Applied Ecology, University of Lodz, Banacha 12/16, 90-237 Lodz, Poland
  • Inland Fisheries Institute, Oczapowskiego 10, 10-719 Olsztyn, Poland
Bibliografia
  • [1] A. Flesch, G. Masson, J-C. Moreteau, Temporal distribution of perch (Perca fluviatilis L.) in a lake-reservoir (Moselle, France): analysis of catches with vertical gill nets, Hydrobiologia Vol. 300/301, 335-343, 1995.
  • [2] P. Frankiewicz, Mechanizmy regulacyjne w obrębie zespołu ryb i ich wpływ, poprzez efekt kaskadowy, na jakość wody w nizinnym zbiorniku zaporowym, Folia limnologica, Uniwersytet Łódzki, 1-127, 1998.
  • [3] P. Frankiewicz, K. Dabrowski, M. Zalewski, Mechanism of establishing bimodality in a size distribution of age-0 pikeperch, Stizostedion lucioperca (L.) in the Sulejów Reservoir, Annalles Zoologici Fennici, Vol. 33, 321-327, 1996.
  • [4] F.R. Knudsen, H. Saegrov, Benefits from horizontal beaming during acoustic survey: application to three Norwegian lakes,Fisheries Research, Vol. 56, 205-211, 2002.
  • [5] J. Kubecka, A. Duncan, Acoustic size vs. real size relationships for common species of riverine fish, Fisheries Research, Vol. 35, 115-125, 1998.
  • [6] J. Kubecka, M. Wittingerova, Horizontal beaming as a crucial component of acoustic fish stock assessment in freshwater reservoirs, Fisheries Research, Vol. 35, 99-106, 1998.
  • [7] J. Kubecka, J. Seda, A. Duncan, J. Matena, H.A.M. Ketelaars, P. Visser, Composition and biomass of the fish stocks in various European reservoirs and ecological consequences, International Revue Gesamten Hydrobiology, Vol. 83, 559-568, 1998.
  • [8] D.N. MacLennan, E.J. Simmonds, Fisheries Acoustics, Chapman & Hall, London, 1- 323, 1992.
  • [9] T. Malinen, H. Peltonen, Optimal sampling and traditional versus model-based data analysis in acoustic fish stock assessment in Lake Vesijarvi, Fisheries Research, Vol. 26, 295-308, 1996.
  • [10] J. Mastyński, Z. Wajdowicz, Fishery in reservoirs, Agricultural Academy Press, Poznań, 1-220 pp, 1994 (in polish).
  • [11] J. Shapiro, V. Lamarra, M. Lynch, Biomanipulation: an ecosystem approach to lake restoration [In:] Proceedings of a Symposium on Water Quality Management Through Biological Control. [Eds] P.L. Brezonik, J.L. Fox, University of Florida, 85-96, 1975.
  • [12] Simrad, EP 500 Echo Processing System. Subsea A/S Horten, Norway 1999.
  • [13] A. Stepnowski, Systems for the acoustic monitoring of the marine environment, Gdańskie Towarzystwo Naukowe, 1-283, 2001.
  • [14] A. Świerzowski, The variability of distribiution and density of pelagic fishes in the Rożnowski dam reservoir, Arch. Pol. Fish. Vol. 11, (2), 245-263, 2003.
  • [15] A. Świerzowski, M. Godlewska, T. Półtorak, The relationship between the spatial distribution of fish,zooplankton and other environmental parameters in the Solina reservoir, Poland – Aquat. Living Resour Vol. 13, 373-377, 2000.
  • [16] M. Tarczyńska, M. Zalewski, Toksyczność zakwitów sinicowych jako wynik eutrofizacji zbiorników wodnych, Gospodarka Wodna, Vol. 556, 83-87, 1995.
  • [17] M. Zalewski, Minimizing the risk and amplifying the opportunities for restoration of shallow reservoirs, Hydrobiologia Vol. 395/396, 107-114, 1999.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWM8-0033-0006
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