Mee, L. (2006). Complementary benefits of alternative energy: Suitability of offshore wind farms
as aquaculture sites. In Inshore fisheries and aquaculture technology innovation and
development, SEAFISH—Project Ref: 10517. Plymouth, UK: Marine Institute – University
of Plymouth.
MEIL (Ministerium für Energie, Infrastruktur und Landesentwicklung M-V). (2014). Entwurf
mv.de/Landesregierung/em/Raumordnung/Landesraumentwicklungsprogramm/aktuellesProgramm/.
Nunes, J. P., Ferreira, J. G., Bricker, S. B., O’Loan, B., Dabrowski, T., Dallaghan, B., et al. (2011).
Towards an ecosystem approach to aquaculture: Assessment of sustainable shellfish cultivation
at different scales of space, time and complexity. Aquaculture, 315, 369–383.
Olofsson, E., & Andersson, J. (2014). Spatial planning guidelines for baltic sea region
aquaculture. (AQUABEST report 3/2014). Helsinki: FI: Finnish Game and Fisheries Research
Institute
Olsen, E., Fluharty, D., Hoel, A. H., Hostens, K., Maes, F., & Pecceu, E. (2014). Integration at the
round table: Marine spatial planning in multi-stakeholder settings. PLoS ONE. 9(10), e109964.
doi 10.1371/journal.pone.0109964
Ouma, Y., & Tateishi, R. (2014). Urban flood vulnerability and risk mapping using integrated
multi-parametric AHP and GIS: Methodological overview and case study assessment. Water,
6, 1515–1545.
Perez, O. M., Telfer, T. C., & Ross, L. G. (2005). Geographical information systems-based models
for offshore floating marine fish cage aquaculture site selection in Tenerife, Canary Islands.
Aquaculture Research, 36, 946–961.
Petruny, L. M., Wright, A. J., & Smith, C. E. (2014). Getting it right for the North Atlantic right
whale (Eubalaena glacialis): A last opportunity for effective marine spatial planning? Marine
Pollution Bulletin, 85, 24–32.
Power, D. (2003). Categorizing decision support systems: A multidimensional approach. Decision
Making Support Systems: Achievements, Trends and Challenges for the New Decade: 20–27
project P (2013) Summary report of the workshop on aquaculture/new uses of marine
resources. Retrieved January 9, 2015, from http://www.partiseapate.eu/dialogue/aquaculturenew-uses/
Schmiedel, J., & Lamp, J. (2012). Case study: Site selection of fisheries areas for maritime spatial
planning with the help of tool “Marxan with Zone” in the pilot area pomeranian bight.
BaltSeaPlan Report 30, Rostock, January 2012. Retrieved January 12, 2015, from www.
baltseaplan.eu
Schultz-Zehden, A., & Gee, K. (2013). BaltSeaPlan findings—Experiences and lessons from
BaltSeaPlan. Retrieved June 18, 2016, from http://www.baltseaplan.eu/index.php/Reportsand-Publications;809/1
Schultz-Zehden, A., & Matczak, M. (Eds.). (2012). SUBMARINER compendium. An assessment of
innovative and sustainable uses of Baltic marine resources. Gdansk, PL: Maritime Institute in
Gdansk.
Shucksmith, R., Gray, L., Kelly, C., & Tweddle, J. F. (2014). Regional marine spatial planning—
The data collection and mapping process. Marine Policy, 50, 1–9.
Silva, C., Ferreira, J. G., Bricker, S. B., DelValls, T. A., Martín-Díaz, M. L., & Yáñez, E. (2011).
Site selection for shellfish aquaculture by means of GIS and farm-scale models, with an
emphasis on data-poor environments. Aquaculture, 318, 444–457.
Stelzenmüller, V., Breen, P., Stamford, T., Thomsen, F., Badalamenti, F., Borja, T., et al. (2013a).
Monitoring and evaluation of spatially managed areas: A generic framework for implementation of ecosystem based marine management and its application. Marine Policy, 37,
149–164.
Stelzenmüller, V., Fock, H. O., Gimpel, A., Rambo, H., DIekmann, R., Probst, W. N., et al.
(2014). Quantitative environmental risk assessments in the context of marine spatial
management: Current approaches and some perspectives. ICES Journal of Marine Science.
doi:10.1093/icesjms/fsu206
6 Aquaculture Site-Selection and Marine Spatial Planning …
147
as aquaculture sites. In Inshore fisheries and aquaculture technology innovation and
development, SEAFISH—Project Ref: 10517. Plymouth, UK: Marine Institute – University
of Plymouth.
MEIL (Ministerium für Energie, Infrastruktur und Landesentwicklung M-V). (2014). Entwurf
mv.de/Landesregierung/em/Raumordnung/Landesraumentwicklungsprogramm/aktuellesProgramm/.
Nunes, J. P., Ferreira, J. G., Bricker, S. B., O’Loan, B., Dabrowski, T., Dallaghan, B., et al. (2011).
Towards an ecosystem approach to aquaculture: Assessment of sustainable shellfish cultivation
at different scales of space, time and complexity. Aquaculture, 315, 369–383.
Olofsson, E., & Andersson, J. (2014). Spatial planning guidelines for baltic sea region
aquaculture. (AQUABEST report 3/2014). Helsinki: FI: Finnish Game and Fisheries Research
Institute
Olsen, E., Fluharty, D., Hoel, A. H., Hostens, K., Maes, F., & Pecceu, E. (2014). Integration at the
round table: Marine spatial planning in multi-stakeholder settings. PLoS ONE. 9(10), e109964.
doi 10.1371/journal.pone.0109964
Ouma, Y., & Tateishi, R. (2014). Urban flood vulnerability and risk mapping using integrated
multi-parametric AHP and GIS: Methodological overview and case study assessment. Water,
6, 1515–1545.
Perez, O. M., Telfer, T. C., & Ross, L. G. (2005). Geographical information systems-based models
for offshore floating marine fish cage aquaculture site selection in Tenerife, Canary Islands.
Aquaculture Research, 36, 946–961.
Petruny, L. M., Wright, A. J., & Smith, C. E. (2014). Getting it right for the North Atlantic right
whale (Eubalaena glacialis): A last opportunity for effective marine spatial planning? Marine
Pollution Bulletin, 85, 24–32.
Power, D. (2003). Categorizing decision support systems: A multidimensional approach. Decision
Making Support Systems: Achievements, Trends and Challenges for the New Decade: 20–27
project P (2013) Summary report of the workshop on aquaculture/new uses of marine
resources. Retrieved January 9, 2015, from http://www.partiseapate.eu/dialogue/aquaculturenew-uses/
Schmiedel, J., & Lamp, J. (2012). Case study: Site selection of fisheries areas for maritime spatial
planning with the help of tool “Marxan with Zone” in the pilot area pomeranian bight.
BaltSeaPlan Report 30, Rostock, January 2012. Retrieved January 12, 2015, from www.
baltseaplan.eu
Schultz-Zehden, A., & Gee, K. (2013). BaltSeaPlan findings—Experiences and lessons from
BaltSeaPlan. Retrieved June 18, 2016, from http://www.baltseaplan.eu/index.php/Reportsand-Publications;809/1
Schultz-Zehden, A., & Matczak, M. (Eds.). (2012). SUBMARINER compendium. An assessment of
innovative and sustainable uses of Baltic marine resources. Gdansk, PL: Maritime Institute in
Gdansk.
Shucksmith, R., Gray, L., Kelly, C., & Tweddle, J. F. (2014). Regional marine spatial planning—
The data collection and mapping process. Marine Policy, 50, 1–9.
Silva, C., Ferreira, J. G., Bricker, S. B., DelValls, T. A., Martín-Díaz, M. L., & Yáñez, E. (2011).
Site selection for shellfish aquaculture by means of GIS and farm-scale models, with an
emphasis on data-poor environments. Aquaculture, 318, 444–457.
Stelzenmüller, V., Breen, P., Stamford, T., Thomsen, F., Badalamenti, F., Borja, T., et al. (2013a).
Monitoring and evaluation of spatially managed areas: A generic framework for implementation of ecosystem based marine management and its application. Marine Policy, 37,
149–164.
Stelzenmüller, V., Fock, H. O., Gimpel, A., Rambo, H., DIekmann, R., Probst, W. N., et al.
(2014). Quantitative environmental risk assessments in the context of marine spatial
management: Current approaches and some perspectives. ICES Journal of Marine Science.
doi:10.1093/icesjms/fsu206
6 Aquaculture Site-Selection and Marine Spatial Planning …
147
