Achard, F., Eva, H.D., Mayaux, P., Stibig, H.-J., Belward, A. (2004), “Improved estimates of net carbon emissions from land cover change in the tropics for the 1990s”, Global Biogeochemical Cycles, 18, GB2008, External Linkdoi:10.1029/2003GB002142.
Agarwal, C., Green, G.M., Grove, J.M., Evans, T.P., Schweik, C.M. (2002), “A review and assessment of land-use change models: dynamics of space, time, and human choice”, Gen. Tech. Rep., NE-297, Newton Square, PA (U.S. Department of Agriculture, Forest Service, Northeastern Research Station). URL (cited on 20 March 2008):
External Linkhttp://www.treesearch.fs.fed.us/pubs/5027.
Alcamo, J., Schaldach, R. (2006), “LandShift: Global Modelling to Assess Land Use Change”, in EnviroInfo 2006: Managing Environmental Knowledge, (Eds.) Tochtermann, K., Scharl, A., Proceedings of the 20th International Conference ‘Informatics for Environmental Protection’, Graz, Austria, 6 – 8 September 2006, pp. 223–230, Aachen (Shaker).
Alcamo, J., Leemans, R., Kreileman, E. (1998), Global Change Scenarios of the 21st Century - Results from the IMAGE 2.1, Oxford, U.K. (Elsevier Science).
Alcamo, J., Döll, P., Henrichs, T., Kaspar, F., Lehner, B., Rösch, T., Siebert, S. (2003), “Development and testing of the WaterGAP 2 global model of water use and availability”, Hydrological Sciences Journal, 48: 317–337, External Linkdoi:10.1623/hysj.48.3.317.45290.
Angelsen, A., Kaimowitz, D. (1999), “Rethinking the Causes of Deforestation: Lessons from Economic Models”, World Bank Research Observer, 14(1): 73–98. URL (cited on 20 March 2008):
External Linkhttp://ideas.repec.org/a/oup/wbrobs/v14y1999i1p73-98.html.
Arnold, J.C., Allen, P.M., Bemhardt, G. (1993), “A comprehensive surface-groundwater flow model”, Journal of Hydrology, 142: 47–69, External Linkdoi:10.1016/0022-1694(93)90004-S.
Balkhausen, O., Banse, M. (2004), “Modelling of Land Use and Land Markets in Partial and General Equilibrium Models: The Current State, Institute of Agricultural Economics”, Working Paper Series of the Joint Research Project, Lund (IDEMA/SLI). URL (cited on 20 March 2008):
External Linkhttp://www.sli.lu.se/IDEMA/WPs/IDEMA_deliverable_3.pdf.
Binder, C., Boumans, R.M.J., Costanza, R. (2003), “Applying the Patuxent Landscape Unit Model to human dominated ecosystems: the case of agriculture”, Ecological Modelling, 159: 161–177, External Linkdoi:10.1016/S0304-3800(02)00276-4.
Bockstael, N.E. (1996), “Modeling Economics and Ecology: The Importance of a Spatial Perspective”, American Journal of Agricultural Economics, 78: 1168–1180.
Borresch, R., Weinmann, B. (2006), “Modellierung und Bewertung der entkoppelten Direktzahlungen – eine Anwendung des Landnutzungsmodells ProLand sowie des Bewertungs- und Modellrahmens CHOICE”, in Good Governance in der Agrar- und Ernährungswirtschaft, Proceedings 46. Jahrestagung der Gesellschaft für Wirtschafts- und Sozialwissenschaften des Landbaus (GeWiSoLa), 04. – 06. Oktober 2006, Giessen, Germany, Gießen (Justus-Liebig-Universität Gießen). URL (cited on 20 March 2008):
External Linkhttp://www.uni-giessen.de/gewisola2006/pdf/Borresch_Weinmann_korri.pdf.
Clarke, K.C., Hoppen, S., Gaydos, L. (1997), “A self-modifying cellular automaton model of historical urbanization in the San Francisco Bay area”, Environment and Planning B: Planning and Design, 24: 247–261, External Linkdoi:10.1068/b240247. Related online version (cited on 20 March 2008):
External Linkhttp://www.geog.ucsb.edu/~kclarke/Papers/clarkehoppengaydos.pdf.
Costanza, R., Voinov, A.A., Boumans, R., Maxwell, T., Villa, F., Wainger, L., Voinov, H. (2002), “Integrated ecological economic modelling of the Patuxent River watershed, Maryland”, Ecological Monographs, 72(2): 203–231, External Link0.CO;2]doi:10.1890/0012-9615(2002)072[0203:IEEMOT]2.0.CO;2.
Couclelis, H. (1997), “From cellular automata to urban models: new principles for model development and implementation”, Environment and Planning B: Planning and Design, 24: 165–174, External Linkdoi:10.1068/b240165.
de Kock, J.-L., Engelen, G., White, R., Wind, H.G. (2001), “Modeling land-use change in a decision-support system for coastal-zone management”, Environmental Modeling & Assessment, 6: 123–132, External Linkdoi:10.1023/A:1011587222253.
de Vries, B.J.M., van Vuuren, D.P., Hoogwijk, M.M. (2007), “Renewable energy sources: Their global potential for the first half of the 21st century at the global level: An integrated approach”, Energy Policy, 35(4): 2590–2610, External Linkdoi:10.1016/j.enpol.2006.09.002.
Eastman, J.R., Weigen, J., Kyem, P.A.K., Toledano, J. (1995), “Raster Procedures for Multi-Criteria/Multi-Objective Decisions”, Photogrammetric Engineering & Remote Sensing, 61 (5): 539–547. Related online version (cited on 20 March 2008):
External Linkhttp://www.asprs.org/publications/pers/scans/1995journal/may/1995_may_539-547.pdf.
Eickhout, B., Bouwman, A.F., van Zeijts, H. (2006), “The role of nitrogen in world food production and environmental sustainability”, Agriculture, Ecosystems & Environment, 116: 4–14, External Linkdoi:10.1016/j.agee.2006.03.009.
Eickhout, B., van Meijl, H., Tabeau, A., van Rheenen, T. (2007), “Economic and ecological consequences of four European land use scenarios”, Land Use Policy, 24: 562–575, External Linkdoi:10.1016/j.landusepol.2006.01.004.
Engelen, G., White, R., Ulje, I. (1997), “Integrating constrained cellular automata models, GIS and decision support tools for urban planning and policy making”, in Decision Support Systems in Urban Planning, (Ed.) Timmons, H.P.J., pp. 125–155, London (E&FN Spon).
Fischer, G., van Velthuizen, H.T., Shah, M.M., Nachtergaele, F.O. (2002), “Global Agro-ecological Assessment for Agriculture in the 21st Century: Methodology and Results”, RR-02-02, Laxenburg, Austria (International Institute for Applied Systems Analysis (IIASA)). Related online version (cited on 20 March 2008):
External Linkhttp://www.iiasa.ac.at/Research/LUC/SAEZ/index.html.
Fitz, H.C., DeBellevue, E.B., Costanza, R., Boumans, R., Maxwell, T., Wainger, L., Sklar, F.H. (1996), “Development of a general ecosystem model for a range of scales and ecosystems”, Ecological Modelling, 88: 263–295, External Linkdoi:10.1016/0304-3800(95)00112-3.
Fohrer, N., Eckhard, K., Haverkamp, S., Frede, H.-G. (2001), “Applying the SWAT Model as a Decision Support Tool for Land Use Concepts in Peripheral Regions in Germany”, in Sustaining the Global Farm, (Eds.) Stott, D.E., Mehtar, R.H., Steinhardt, G.C., Selected papers from the 10th International Soil Conservation Organization meeting held May 24 – 29, 1999, West Lafayette, IN, pp. 994–999, West Lafayette, IN (ISCO/USDA/Purdue University).
Fohrer, N., Möller, D., Steiner, N. (2002), “An interdisciplinary modelling approach to evaluate the effects of land use systems”, Physics and Chemistry of the Earth, 27: 655–662, External Linkdoi:10.1016/S1474-7065(02)00050-5.
Foley, J.A., DeFries, R., Asner, G.P., Barford, C., Bonan, G., Carpenter, S.R., Chapin, F.S., Coe, M.T., Daily, G.C., Gibbs, H.K., Helkowski, J.H., Holloway, T., Howard, E.A., Kucharik, C.J., Monfreda, C., Patz, J.A., Prentice, I.C., Ramankutty, N., Snyder, P.K. (2005), “Global Consequences of Land Use”, Science, 309: 570–574, External Linkdoi:10.1126/science.1111772.
Frede, H.-G., Bach, M., Fohrer, N., Breuer, L. (2002), “Interdisciplinary modeling of the significance of soil functions”, Journal of Plant Nutrition and Soil Science, 165: 460–467, External Linkdoi:10.1002/1522-2624(200208)165:4¡460::AID-JPLN460¿3.0.CO;2-B.
Geist, H.J., Lambin, E.F. (2002), “Proximate causes and underlying driving forces of tropical deforestation”, BioScience, 52(2): 143–150, External Link0.CO;2]doi:10.1641/0006-3568(2002)052[0143:PCAUDF]2.0.CO;2. Related online version (cited on 20 March 2008):
External Linkhttp://www.geo.ucl.ac.be/LUCC/pdf/02_February_Article_Geist_.pdf.
GEO (2002), “Global Environment Outlook 3 (GEO-3)”, Nairobi, Kenya (UNEP). Related online version (cited on 20 March 2008):
External Linkhttp://www.unep.org/GEO/geo3/.
GLP (2005), “Science Plan and Implementation Strategy”, IHDP Report No. 53 / IHDP Report No. 19, Stockholm (IGBP Secretariat). URL (cited on 20 March 2008):
External Linkhttp://www.igbp.kva.se/documents/resources/report-53.pdf.
Gottschalk, T.K., Diekötter, T., Ekschmitt, K., Weinmann, B., Kuhlmann, F., Purtauf, T., Dauber, J., Wolters, V. (2007), “Impact of agricultural subsidies on biodiversity at the landscape level”, Landscape Ecology, 22: 643–656, External Linkdoi:10.1007/s10980-006-9060-8.
Gregersen, J.B., Gijsbers, P.J.A., , Westen, S.J.P. (2007), “OpenMI: Open Modelling Interface”, Journal of Hydroinformatics, 9(3): 175–191, External Linkdoi:10.2166/hydro.2007.023.
Grimm, N.B., Faeth, S.H., Golubiewski, N.E., Redman, C.L., Wu, J., Bai, X., Briggs, J.M. (2008), “Global Change and the Ecology of Cities”, Science, 319: 756–760, External Linkdoi:10.1126/science.1150195.
Heistermann, M. (2006), “Modelling the Global Dynamics of Rain-fed and Irrigated Croplands. Thesis”, Reports on Earth System Science, Hamburg (Planck-Institute for Meteorology). URL (cited on 20 March 2008):
External Linkhttp://www.mpimet.mpg.de/fileadmin/publikationen/Reports/WEB_BzE_37.pdf.
Heistermann, M., Müller, C., Ronneberger, K. (2006), “Land in Sight? Achievements, deficits and potentials of continental to global scale land use modeling”, Agriculture, Ecosystems & Environment, 114(2-4): 141–158, External Linkdoi:10.1016/j.agee.2005.11.015.
Hoogwijk, M.M., Faaij, A.P.C., Eickhout, B., de Vries, B., Turkenburg, W. (2005), “Potential of biomass energy out to 2100, for four IPCC SRES land-use scenarios”, Biomass & Bioenergy, 29: 225–227.
IPCC (1997), “Revised 1996 IPCC Guidelines for National Greenhouse Gas Inventories, Vol. 2: Workbook”, Houghton, J.T., Meira Filho, L.G., Lim, B., Treanton, K., Mamaty, I., Bonduki, Y., Griggs, D.J., Callender, B.A. (Eds.), Bracknell (IPCC/OECD/IEA; UK Meteorological Office). Related online version (cited on 20 March 2008):
External Linkhttp://www.ipcc-nggip.iges.or.jp/public/gl/invs5.htm.
Klein, A.-M., Steffan-Dewenter, I., Tscharntke, T. (2003), “Fruit set of highland coffee increases with the diversity of pollinating bees”, Proceedings of the Royal Society of London, Series B: Biological Sciences, 270: 955–961, External Linkdoi:10.1098/rspb.2002.2306. Related online version (cited on 20 March 2008):
External Linkhttp://www.gwdg.de/~uaoe/pdf/paper/ProcRoyalSoc2003,270_955-961.pdf.
Kuhlmann, F., Möller, D., Weinmann, B. (2002), “Modellierung der Landnutzung: Regionshöfe oder Rasterlandschaft?”, Berichte über Landwirtschaft, 80(3): 351–392.
Lambin, E.F., Geist, H. (Eds.) (2006), Land-Use and Land-Cover Change: Local Processes, Global Impacts, Global Change - The IGBP Series, Berlin (Springer).
Lambin, E.F., Rounsevell, M.D.A., Geist, H.J. (2000), “Are agricultural land-use models able to predict changes in land-use intensity?”, Agriculture, Ecosystems & Environment, 82(1-3): 321–331, External Linkdoi:10.1016/S0167-8809(00)00235-8.
Leemans, R., Eickhout, B. (2004), “Another reason for concern: regional and global impacts on ecosystems for different levels of climate change”, Global Environmental Change, 14(3): 219–228, External Linkdoi:10.1016/j.gloenvcha.2004.04.009.
Manson, S.M. (2005), “Agent-based modelling and genetic programming for modelling land change in the Southern Yucatán Peninsular Region of Mexico”, Agriculture, Ecosystems & Environment, 111: 47–62, External Linkdoi:10.1016/j.agee.2005.04.024. Related online version (cited on 20 March 2008):
External Linkhttp://earth.clarku.edu/lcluc/pubs/Modeling/II-10_Manson_2005_.pdf.
Manson, S.M. (2006), “Land use in the southern Yucatán peninsular region of Mexico: Scenarios of population and institutional change”, Computers, Environment and Urban Systems, 30: 230–253, External Linkdoi:10.1016/j.compenvurbsys.2005.01.009.
Mather, M. (2006), “Land-Use System”, in Our Earth’s Changing Land: An Encyclopedia of Land-Use and Land-Cover Change, Vol. 2, (Eds.) Geist, H., Lambin, E.F., pp. 379–386, Westport (Greenwood).
Mimler, M., Priess, J.A. (2008), “Automated rule set calibration for a regional land use change model”, Environmental Modelling & Software, submitted.
MNP (2006), “Integrated modelling of global environmental change? An overview of IMAGE 2.4”, Bouwman, A.F., Kram, T., Klein Goldewijk, K. (Eds.), Bilthoven (Netherlands Environmental Assessment Agency (MNP)). Related online version (cited on 20 March 2008):
External Linkhttp://www.mnp.nl/bibliotheek/rapporten/500110002.pdf.
MODULUS (2000), “MODULUS: A Spatial Modelling Tool for Integrated Environmental Decision-Making. Final Report, 2 vols.”, Engelen, G., van der Meulen, M., Hahn, B., Uljee, I. (Eds.), Maastricht (RIKS). URL (cited on 20 March 2008):
External Linkhttp://www.riks.nl/projects/modulus. Contract ENV4-CT97-0685. Submitted to the Commission of the European Union, Directorate General XII, Environment (IV) Framework, Climatology and Natural Hazards Programme, Brussels, Belgium.
Möller, D., Weinmann, B., Kirschner, M., , Kuhlmann, F. (1999), “Auswirkungen von Politik- und Strukturmaßnahmen auf räumliche Verteilung und Erfolgskennzahlen der Landnutzung: GIS-basierte Simulation mit ProLand”, Zeitschrift für Kulturtechnik und Landentwicklung, 40 (5/6): 197–201. In German [“Effects of Political and Structural Changes on the Spatial Distribution and Key Indicators of Land Use: GIS based Simulation with ProLand”].
Müller, C., Eickhout, B., Zaehle, S., Bondeau, A., Cramer, W., Lucht, W. (2007), “Effects of changes in CO2, climate, and land use on the carbon balance of the land biosphere during the 21st century”, Journal of Geophysical Research, 112, G02032, External Linkdoi:10.1029/2006JG000388.
Nellemann, C., Kullerud, L., Vistnes, I., Forbes, B.C., Husby, E., Kofinas, G.P., Kaltenborn, B.P., Rouaud, J., Magomedova, M., Bobiwash, R., Lambrechts, C., Schei, P.J., Tveitdal, S., Grøn, O., Larsen, T.S. (UNEP) (2001), “GLOBIO: Global methodology for mapping human impacts on the biosphere”, Environment Information and Assessment Technical Reports, UNEP/DEWA/TR.01-3, Nairobi, Kenya (United Nations Environment Programme). Related online version (cited on 20 March 2008):
External Linkhttp://www.globio.info/region/polar/.
Overmars, K.P., Verburg, P.H., Veldkamp, A. (2007), “Comparison of a deductive and an inductive approach to specify land suitability in a spatial explicit land use model”, Land Use Policy, 24(3): 584–599, External Linkdoi:10.1016/j.landusepol.2005.09.008.