Development of fouling communities on vertical structures in the Baltic Sea
暂无分享,去创建一个
[1] H. Hasegawa,et al. Management-free techniques for restoration of Eisenia and Ecklonia beds along the central Pacific coast of Japan , 2001, Journal of Applied Phycology.
[2] T. Malm,et al. Density dependent grazing effects of the isopod Idotea baltica Pallas on Fucus vesiculosus L in the Baltic Sea , 2000, Aquatic Ecology.
[3] P. Dayton. Competition, Disturbance, and Community Organization: The Provision and Subsequent Utilization of Space in a Rocky Intertidal Community , 1971 .
[4] Tim M. Glasby,et al. Do urban structures influence local abundance and diversity of subtidal epibiota? A case study from Sydney Harbour, Australia , 1999 .
[5] H. Kautsky,et al. Studies on the Fucus vesiculosus community in the Baltic Sea , 1992 .
[6] D. Mook. Effects of Disturbance and Initial Settlement on Fouling Community Structure , 1981 .
[7] N. Kautsky,et al. QUANTITATIVE SURVEY OF HARD BOTTOM COMMUNITIES IN A BALTIC ARCHIPELAGO , 1977 .
[8] L. Kautsky,et al. Grazing effects of two freshwater snails on juvenile Fucus vesiculosus in the Baltic Sea , 1999 .
[9] G. Young. Byssus-thread production by the mussel Mytilus edulis : effects of environmental factors , 1985 .
[10] N. Kautsky. Growth and size structure in a baltic Mytilus edulis population , 1982 .
[11] A. Underwood,et al. Habitat structure and the nature of communities on intertidal boulders. , 1986 .
[12] L. McCook,et al. Community succession following massive ice-scour on an exposed rocky shore: effects of Fucus canopy algae and of mussels during late succession , 1991 .
[13] L. Magaard. Wasserstandsschwankungen und Seegang , 1974 .
[14] M. Ribes,et al. Seasonality in coastal benthic ecosystems. , 2000, Trends in ecology & evolution.
[15] A. Hoffmann. The Arrival of Seaweed Propagules at the Shore: A Review , 1987 .
[16] L. Kautsky,et al. Two reproductive strategies in Baltic Fucus vesiculosus (Phaeophyceae) , 2001 .
[17] M. Kiirikki,et al. Life Strategies of Filamentous Algae in the Northern Baltic Proper , 1997 .
[18] S. Distefano,et al. Biological Consequences of Topography on Wave-swept Rocky Shores: I. Enhancement of External Fertilization. , 1992, The Biological bulletin.
[19] L. McCook,et al. Community succession following massive ice-scour on a rocky intertidal shore: recruitment, competition and predation during early, primary succession , 1993 .
[20] R. J. Anderson,et al. Correlation between Intertidal Seaweed Community Composition and Sea Water Temperature Patterns on a Geographical Scale , 1990 .
[21] M. Chapman,et al. Paucity of mobile species on constructed seawalls: effects of urbanization on biodiversity , 2003 .
[22] M. Kilpi,et al. Blue mussels, Mytilusedulis, at the edge of the range: population structure, growth and biomass along a salinity gradient in the north-eastern Baltic Sea , 2002 .
[23] P. N. Chalmer. Settlement patterns of species in a marine fouling community and some mechanisms of succession , 1982 .
[24] T. Wennberg. Colonization and succession of macroalgae on a breakwater in Laholm Bay, a eutrophicated brackish water area (SW Sweden) , 1992 .
[25] E. Maarel,et al. Multivariate approaches to the variation in phytobenthic communities and environmental vectors in the Baltic Sea , 1990 .
[26] M. Gilek,et al. A photographic study of the recolonization of cleared patches in a dense population of Mytilus edulis in the northern Baltic proper , 1999, Hydrobiologia.
[27] T. Dean,et al. Development in an estuarine fouling community: The influence of early colonists on later arrivals , 1980, Oecologia.
[28] J. K. Spelt,et al. ATTACHMENT STRENGTH OF ZEBRA MUSSELS ON NATURAL, POLYMERIC, AND METALLIC MATERIALS , 1996 .
[29] H. Jenner,et al. Seasonal settlement and succession of fouling communities in Kalpakkam, east coast of India , 1997, Netherland Journal of Aquatic Ecology.
[30] M. Anderson,et al. Seasonal and temporal aspects of recruitment and succession in an intertidal estuarine fouling assemblage , 1994, Journal of the Marine Biological Association of the United Kingdom.
[31] Marti J. Anderson,et al. Effects of substratum on the recruitment and development of an intertidal estuarine fouling assemblage , 1994 .
[32] M. Harlin,et al. Selection of substrata by seaweeds: Optimal surface relief , 1977 .
[33] Lorenz Magaard,et al. Meereskunde der Ostsee , 1974 .
[34] M. Ohno,et al. Development of seaweed communities on suspended substrata with three slope angles , 2001, Journal of Applied Phycology.