Studies
An individual study is a summary of a specific scientific study, providing background context, the conservation action(s) taken and their consequences.
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Study | Published | Actions | |
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A cost-effective approach to enhance scleractinian diversity on artificial shorelines Based on: Toh T.C., Ng C.S.L., Loke H.X., Taira D., Toh K.B., Afiq-Rosli L., Du R.C.P., Cabaitan P., Sam S.Q., Kikuzawa Y.P., Chou L.M. & Song T. (2017). Study Link |
2017 | 1 | |
Artificial reefs as juvenile fish habitat in a marina Based on: Patranella A., Kilfoyle K., Pioch S. & Spieler R.E. (2017). Study Link |
2017 | 1 | |
Benthic community establishment on different concrete mixtures introduced to a German deep-water port Based on: Becker L.R., Kröncke I., Ehrenberg A., Feldrappe V. & Bischof K. (2021). Study Link |
2021 | 1 | |
Blue is the new green – ecological enhancement of concrete based coastal and marine infrastructure Based on: Sella I. & Perkol-Finkel S. (2015). Study Link |
2015 | 4 | |
Blue is the new green – harnessing urban coastal infrastructure for ecological enhancement Based on: Perkol-Finkel S. & Sella I. (2016) ICE Publishing, 139-149. Study Link |
2016 | 3 | |
Colonisation of wave power foundations by mobile mega- and macrofauna – a 12 year study Based on: Bender A., Langhamer O. & Sundberg J. (2020). Study Link |
2020 | 1 | |
Conservation challenges in urban seascapes: promoting the growth of threatened species on coastal infrastructures Based on: Perkol-Finkel S., Ferrario F., Nicotera V. & Airoldi L. (2012). Study Link |
2012 | 6 | |
Coral recruitment and early benthic community development on several materials used in the construction of artificial reefs and breakwaters Based on: Burt J., Bartholomew A., Bauman A., Saif A. & Sale P.F. (2009). Study Link |
2009 | 1 | |
Density and growth of Ecklonia cava that appeared around artificial reefs with seedlings off Usa in Tosa Bay, Japan Based on: Serisawa Y., Imoto Z., Imoto Y. & Matsuyama-Serisawa K. (2007). Study Link |
2007 | 1 | |
Ecological design of marine construction for socio-economic benefits: ecosystem integration of a pipeline in coral reef area Based on: Pioch S., Saussola P., Kilfoyle K. & Spieler R. (2011). Study Link |
2011 | 3 | |
Ecologically-active concrete for coastal and marine infrastructure: innovative matrices and designs Based on: Perkol-Finkel S. & Sella I. (2014) ICE Publishing, 1139-1149. Study Link |
2014 | 2 | |
Effects of enhancing pontoons on abundance of fish: initial experiments in estuaries Based on: Hair C.A. & Bell J.D. (1992). Study Link |
1992 | 1 | |
Evaluating the effects of protection on fish predators and sea urchins in shallow artificial rocky habitats: a case study in the northern Adriatic Sea Based on: Guidetti P., Bussotti S. & Boero F. (2005). Study Link |
2005 | 2 | |
Floating oyster, Crassostrea virginica Gmelin 1791, aquaculture as habitat for fishes and macroinvertebrates in Delaware Inland Bays: the comparative value of oyster clusters and lose shell Based on: Marenghi F.P. & Ozbay G. (2010). Study Link |
2010 | 2 | |
Floating pontoons create novel habitats for subtidal epibiota Based on: Connell S.D. (2000). Study Link |
2000 | 1 | |
Habitat formation prevails over predation in influencing fouling communities Based on: Leclerc J.-C. & Viard F. (2018). Study Link |
2018 | 1 | |
Harbour swimming nets: a novel habitat for seahorses Based on: Clynick B.G. (2008). Study Link |
2008 | 1 | |
Impact of recreational harvesting on assemblages in artificial rocky habitats Based on: Airoldi L., Bacchiocchi F., Cagliola C., Bulleri F. & Abbiati M. (2005). Study Link |
2005 | 2 | |
Local vs regional effects of substratum on early colonization stages of sessile assemblages. Based on: Guarnieri G., Terlizzi A., Bevilacqua S. & Fraschetti S. (2009). Study Link |
2009 | 2 | |
Manipulating artificial habitats to benefit seahorses in Sydney Harbour, Australia Based on: Hellyer C.B., Harasti D. & Poore A.G.B. (2011). Study Link |
2011 | 2 | |
Modified habitats influence kelp epibiota via direct and indirect effects Based on: Marzinelli E.M., Underwood A.J. & Coleman R.A. (2011). Study Link |
2011 | 1 | |
Optimisation of 3D printed concrete for artificial reefs: biofouling and mechanical analysis Based on: Ly O., Yoris-Nobile A.I., Sebaibi N., Blanco-Fernandez E., Boutouil M., Castro-Fresno D., Hall A.E., Herbert R.J.H., Deboucha W., Reis B., Franco J.N., Borges M.T., Sousa-Pinto I., van der Linden P. & Stafford R. (2021). Study Link |
2021 | 1 | |
Partial replacement of cement for waste aggregates in concrete coastal and marine infrastructure: a foundation for ecological enhancement? Based on: McManus R.S., Archibald N., Comber S., Knights A.M., Thompson R.C. & Firth L.B. (2018). Study Link |
2018 | 1 | |
Pole and pontoon hulas: an effective way of ecological engineering to increase productivity and biodiversity in the hard-substrate environment of the port of Rotterdam Based on: Paalvast P., van Wesenbeeck B.K., van der Velde G. & de Vries M.B. (2012). Study Link |
2012 | 3 | |
Potential use of marinas as nursery grounds by rocky fishes: insights from four Diplodus species in the Mediterranean Based on: Bouchoucha M., Darnaude A.M., Gudefin A., Neveu R., Verdoit-Jarraya M., Boissery P. & Lenfant P. (2016). Study Link |
2016 | 1 |
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