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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Mitigating against the loss of species by adding artificial intertidal pools to existing seawalls Based on: Browne M.A. & Chapman M.G. (2014). Study Link |
2014 | 2 | |
Enhancing the biodiversity of coastal defence structures: transplantation of nursery-reared reef biota onto intertidal seawalls Based on: Ng C.S.L., Lim S.C., Ong J.Y., Teo L.M.S., Chou L.M., Chua K.E. & Tan K.S. (2015). Study Link |
2015 | 1 | |
Can transplanting enhance mobile marine invertebrates in ecologically engineered rock pools? Based on: Morris R.L., Martinez A.S., Firth L.B. & Coleman R.A. (2018). Study Link |
2018 | 2 | |
Increasing microhabitat complexity on seawalls can reduce fish predation on native oysters Based on: Strain E.M.A., Morris R.L., Coleman R.A., Figueira W.F., Steinberg P.D., Johnston E.L. & Bishop M.J. (2018). Study Link |
2018 | 2 | |
Eco-engineering increases habitat availability and utilisation of seawalls by fish Based on: Ushiama S., Mayer-Pinto M., Bugnot A.B., Johnston E.L. & Dafforn K.A. (2019). Study Link |
2019 | 2 | |
Evaluating seaweed farming as an eco-engineering strategy for ‘blue’ shoreline infrastructure Based on: Heery E.C., Lian K.Y., Loke L.H.L., Tan H.T.W. & Todd P.A. (2020). Study Link |
2020 | 1 | |
Making seawalls multifunctional: the positive effects of seeded bivalves and habitat structure on species diversity and filtration rates Based on: Vozzo M.L., Mayer-Pinto M., Bishop M.J., Cumbo V.R., Bugnot A.B., Dafforn K.A., Johnston E.L., Steinberg P.D. & Strain E.M.A. (2021). Study Link |
2021 | 2 | |
Estuarine and coastal structures: environmental effects, a focus on shore and nearshore structures Based on: Dugan J.E., Airoldi L., Chapman M.G., Walker S.J. & Schlacher T. (2011) Academic Press, 8, 17-41. Study Link |
2011 | 1 | |
Ecological enhancement techniques to improve habitat heterogeneity on coastal defence structures Based on: Hall A.E., Herbert R.J.H., Britton J.R. & Hull S.L. (2018). Study Link |
2018 | 4 | |
Effects of habitat area and spatial configuration on biodiversity in an experimental intertidal community Based on: Loke L.H.L., Chisholm R.A. & Todd P.A. (2019). Study Link |
2019 | 2 | |
Ecological engineering across organismal scales: trophic-mediated positive effects of microhabitat enhancement on fishes Based on: Taira D., Heery E.C., Loke L.H.L., Teo A., Bauman A.G. & Todd P.A. (2020). Study Link |
2020 | 2 | |
Succession of seawall algal communities on artificial substrates Based on: Loke L.H.L., Liao L.M., Bouma T.J. & Todd P.A. (2016). Study Link |
2016 | 2 | |
The effects of manipulating microhabitat size and variability on tropical seawall biodiversity: field and flume experiments Based on: Loke L.H.L., Bouma T.J. & Todd P.A. (2017). Study Link |
2017 | 2 | |
Area-independent effects of water-retaining features on intertidal biodiversity on eco-engineered seawalls in the tropics Based on: Loke L.H.L., Heery E.C., Lai S., Bouma T.J. & Todd P.A. (2019). Study Link |
2019 | 1 | |
A global analysis of complexity-biodiversity relationships on marine artificial structures Based on: Strain E.M.A., Steinberg P.D., Vozzo M., Johnston E.L., Abbiati M., Aguilera M.A., Airoldi L., Aguirre J.D., Ashton G., Bernardi M., Brooks P., Chan B.K.K., Cheah C.B., Chee S.Y., Coutinho R., Crowe T.P., Davey A., Firth L.B., Fraser C., Hanley M.E., Hawkins S.J., Knick K.E., Lau E.T.C., Leung K.M.Y., McKenzie C., Macleod C., Mafanya S., Mancuso F.P., Messano L.V.R., Naval-Xavier L.P.D., Ng T.P.T., O'Shaughnessy K.A., Pattrick P., Perkins M.J., Perkol-Finkel S., Porri F. & et al. (2021). Study Link |
2021 | 1 | |
Low-crested coastal defence structures as artificial habitats for marine life: using ecological criteria in design Based on: Moschella P.S., Abbiati M., Åberg P., Airoldi L., Anderson J.M., Bacchiocchi F., Bulleri F., Dinesen G.E., Frost M., Gacia E., Granhag L., Jonsson P.R., Satta M.P., Sundelöf A., Thompson R.C. & Hawkins S.J. (2005). Study Link |
2005 | 1 | |
Enhancing stocks of the exploited limpet Patella candei d’Orbigny via modifications in coastal engineering Based on: Martins G.M., Thompson R.C., Neto A.I., Hawkins S.J. & Jenkins S.R. (2010). Study Link |
2010 | 1 | |
Patchiness in resource distribution mitigates habitat loss: insights from high‐shore grazers Based on: Skov M.W., Hawkins S.J., Volkelt-Igoe M., Pike J., Thompson R.C. & Doncaster C.P. (2011). Study Link |
2011 | 1 | |
Long-term modifications of coastal defences enhance marine biodiversity Based on: Martins G.M., Jenkins S.R., Neto A.I., Hawkins S.J. & Thompson R.C. (2016). Study Link |
2016 | 1 | |
Patchiness in habitat distribution can enhance biological diversity of coastal engineering structures Based on: Cacabelos E., Thompson R.C., Prestes A.C.L., Azevedo J.M.N., Neto A.I. & Martins G.M. (2019). Study Link |
2019 | 1 | |
Ecologically informed engineering reduces loss of intertidal biodiversity on artificial shorelines Based on: Browne M.A. & Chapman M.G. (2011). Study Link |
2011 | 1 | |
Drill-cored rock pools: an effective method of ecological enhancement on artificial structures Based on: Evans A.J., Firth L.B., Hawkins S.J., Morris E.S., Goudge H. & Moore P.J. (2016). Study Link |
2016 | 1 | |
Eco-engineered rock pools: a concrete solution to biodiversity loss and urban sprawl in the marine environment Based on: Firth L.B., Browne K.A., Knights A.M., Hawkins S.J. & Nash R. (2016). Study Link |
2016 | 1 | |
Increasing habitat complexity on seawalls: investigating large- and small-scale effects on fish assemblages Based on: Morris R.L., Chapman M.G., Firth L.B. & Coleman R.A. (2017). Study Link |
2017 | 1 | |
Creation of microhabitats (tidepools) in ripraps with climax communities as a way to mitigate negative effects of artificial substrate on marine biodiversity Based on: Ostalé-Valriberas E., Sempere-Valverde J., Coppa S., García-Gómez J.C. & Espinosa F. (2018). Study Link |
2018 | 1 |
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