Effects of piers on assemblage composition, abundance, and taxa richness of small epibenthic invertebrates
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[1] Jason D. Toft,et al. Effects of shoreline armouring and overwater structures on coastal and estuarine fish: opportunities for habitat improvement , 2017 .
[2] Jason D. Toft,et al. Benches, Beaches, and Bumps : How Habitat Monitoring and Experimental Science Can Inform Urban Seawall Design , 2017 .
[3] S. Frenkel,et al. Feeding and food relationships of juvenile chum salmon (Oncorhynchus keta) and pink salmon (O. gorbuscha) in coastal waters of Prostor Bay (Iturup Island) , 2015, Journal of Ichthyology.
[4] Jeffery R. Cordell,et al. Effects of seawall armoring on juvenile Pacific salmon diets in an urban estuarine embayment , 2015 .
[5] K. Fukuoka,et al. Food habits of juvenile tuskfishes (Choerodon schoenleinii and C.anchorago) in relation to food availability in the shallow waters of Ishigaki Island, Southwestern Japan , 2015, Fisheries Science.
[6] Charles A. Simenstad,et al. Reducing the effect of overwater structures on migrating juvenile salmon: An experiment with light , 2014 .
[7] Jeffery R. Cordell,et al. Effects of Seawalls and Piers on Fish Assemblages and Juvenile Salmon Feeding Behavior , 2014 .
[8] Jeffery R. Cordell,et al. Ecological response and physical stability of habitat enhancements along an urban armored shoreline , 2013 .
[9] T. Sutherland,et al. Roberts Bank: Ecological crucible of the Fraser River estuary , 2013 .
[10] D. Bellwood,et al. The trophic importance of algal turfs for coral reef fishes: the crustacean link , 2013, Coral Reefs.
[11] P. J. Santos,et al. Species of Harpacticoida (Crustacea, Copepoda) from the phytal of Porto de Galinhas coral reefs, northeastern Brazil , 2012 .
[12] D. Bellwood,et al. Cryptofauna of the epilithic algal matrix on an inshore coral reef, Great Barrier Reef , 2012, Coral Reefs.
[13] P. Macreadie,et al. Feeding ecology of King George whiting Sillaginodes punctatus (Perciformes) recruits in seagrass and unvegetated habitats. Does diet reflect habitat utilization? , 2011, Journal of fish biology.
[14] B. Vasilas,et al. Environmental Impact of Long Piers on Tidal Marshes in Maryland-Vegetation, Soil, and Marsh Surface Effects , 2011, Wetlands.
[15] William N. Venables,et al. Modern Applied Statistics with S , 2010 .
[16] K. Ono,et al. Assessing and Mitigating Dock Shading Impacts on the Behavior of Juvenile Pacific Salmon (Oncorhynchus spp.): Can Artificial Light Mitigate the Effects? , 2010 .
[17] D. Beauchamp,et al. Ontogenetic Diet Shifts of Juvenile Chinook Salmon in Nearshore and Offshore Habitats of Puget Sound , 2010 .
[18] A. Zuur,et al. Mixed Effects Models and Extensions in Ecology with R , 2009 .
[19] Mollie E. Brooks,et al. Generalized linear mixed models: a practical guide for ecology and evolution. , 2009, Trends in ecology & evolution.
[20] P. Stoltz,et al. Light Requirements for Growth and Survival of Eelgrass (Zostera marina L.) in Pacific Northwest (USA) Estuaries , 2008 .
[21] V. Ivanenko,et al. Copepodid development of Tegastes falcatus (Norman, 1868) (Copepoda, Harpacticoida, Tegastidae) with a discussion of the male genital somite , 2008 .
[22] C. Buschbaum,et al. Native pipefish Entelurus aequoreus are promoted by the introduced seaweed Sargassum muticum in the northern Wadden Sea, North Sea , 2008 .
[23] T. Hothorn,et al. Simultaneous Inference in General Parametric Models , 2008, Biometrical journal. Biometrische Zeitschrift.
[24] H. Guha. The Light and Smith Manual: Intertidal Invertebrates from Central California to Oregon (4th ed.) , 2008 .
[25] D. Blockley. Effect of wharves on intertidal assemblages on seawalls in Sydney Harbour, Australia. , 2007, Marine environmental research.
[26] Jeffery R. Cordell,et al. Fish Distribution, Abundance, and Behavior along City Shoreline Types in Puget Sound , 2007 .
[27] M. SanClements,et al. Effects of Bridge Shading on Estuarine Marsh Benthic Invertebrate Community Structure and Function , 2004, Environmental management.
[28] E. Ólafsson,et al. Harpacticoid copepod communities of floating seaweed: controlling factors and implications for dispersal , 2001, Hydrobiologia.
[29] J. Duffy‐Anderson,et al. Effects of municipal piers on the growth of juvenile fishes in the Hudson River estuary: a study across a pier edge , 1999 .
[30] T. Glasby. Effects of shading on subtidal epibiotic assemblages , 1999 .
[31] Frederick T. Short,et al. The Effects of Boat Docks on Eelgrass Beds in Coastal Waters of Massachusetts , 1999, Environmental management.
[32] J. Manderson,et al. The distribution of shallow water juvenile fishes in an urban estuary: The effects of manmade structures in the lower Hudson River , 1998 .
[33] A. M. Olson,et al. MITIGATION BETWEEN REGIONAL TRANSPORTATION NEEDS AND PRESERVATION OF EELGRASS BEDS (VOLUME I) , 1997 .
[34] R. Warwick,et al. Meiobenthic communities associated with the seasonal cycle of growth and decay of Ulva rigida Agardh in the Palude Della Rosa, Lagoon of Venice , 1995 .
[35] J. P. Kurdziel,et al. Emergence and dispersal of phytal-dwelling meiobenthic copepods , 1992 .
[36] R. Williams. Spatial heterogeneity and niche differentiation in oceanic zooplankton , 1988, Hydrobiologia.
[37] M. Arunachalam,et al. Harpacticoid copepods associated with the seagrass Halophila ovalis in the Ashtamudi Estuary, south-west coast of India , 1988, Hydrobiologia.
[38] William G. Ambrose,et al. Effects of organic enrichment on meiofaunal abundance and community structure in sublittoral soft sediments , 1985 .
[39] A. G. Humes. Harpacticoid Copepods Associated with Cnidarians in the Tropical Pacific Ocean , 1984 .
[40] B. Marcotte. Behaviourally Defined Ecological Resources and Speciation in Tisbe (Copepoda: Harpacticoida) , 1984 .
[41] G. Lopez. Short-term population dynamics of Tisbe cucumariae (Copepoda: Harpacticoida) , 1982 .
[42] A. G. Humes. Harpacticoid Copepods Associated With Cnidaria in the Indo-west Pacific , 1981 .
[43] M. Healey. Detritus and juvenile salmon production in the Nanaimo Estuary : I. Production and feeding rates of juvenile chum salmon (Oncorhynchus keta) , 1979 .
[44] J. Sibert. Detritus and Juvenile Salmon Production in the Nanaimo Estuary: II. Meiofauna Available as Food to Juvenile Chum Salmon (Oncorhynchus keta) , 1979 .
[45] M. Binard,et al. Seasonal variability of meiofauna, especially harpacticoid copepods, in Posidonia oceanica macrophytodetritus accumulations , 2015 .
[46] Glenn Courtenay,et al. Impacts of docks on seagrass and effects of management practices to ameliorate these impacts , 2014 .
[47] R Core Team,et al. R: A language and environment for statistical computing. , 2014 .
[48] G.. Effect of predation by juvenile Pacific salmon on marine harpacticoid copepods . I . Comparisons of patterns of copepod mortality with patterns of salmon consumption , 2006 .
[49] J. Duffy‐Anderson,et al. A SYNTHESIS OF IMPACTS OF PIERS ON JUVENILE FISHES AND SELECTED INVERTEBRATES IN THE LOWER HUDSON RIVER , 2005 .
[50] H. Mayama. Japanese studies on the early ocean life of juvenile salmon , 2003 .
[51] Brian D. Ripley,et al. Modern applied statistics with S, 4th Edition , 2002, Statistics and computing.
[52] J. Duffy‐Anderson,et al. An assessment of the feeding success of young-of-the-year winter flounder (Pseudopleuronectes americanus) near a municipal pier in the Hudson River estuary, U.S.A. , 2001 .
[53] D. D'amours. Trophic phasing of juvenile chum salmon (Oncorhynchus keta Walbaum) and harpacticoid copepods in the Fraser River Estuary, British Columbia , 1987 .
[54] J. H. Zar,et al. Biostatistical Analysis (5th Edition) , 1984 .
[55] A. G. Humes. A new species of Tegastes (Copepoda: Harpacticoida) associated with a scleractinian coral at Enewetak Atoll , 1981 .
[56] G. Hicks. Structure of phytal harpacticoid copepod assemblages and the influence of habitat complexity and turbidity , 1980 .
[57] R. Hauspie,et al. Swimming Behaviour Patterns in Certain Benthic Harpacticoids (Copepoda) , 1973 .