Social & behavioral sciences, psychology: Multidisciplinary, general & others
Author, co-author :
Sean, Chanmony ; Université de Liège - ULiège > TERRA Research Centre
Peeters, Amaury
Blundo-Canto, Genowefa
Antoine-Moussiaux, Nicolas ✱; Université de Liège - ULiège > Département de gestion vétérinaire des Ressources Animales (DRA) > Biostatistique, économie, sélection animale ; Université de Liège - ULiège > Fundamental and Applied Research for Animals and Health (FARAH) > FARAH: Productions animales durables
Alexander P. Rounsevell M. D. A. Dislich C. Dodson J. R. Engström K. Moran D. (2015). Drivers for global agricultural land use change: the nexus of diet, population, yield and bioenergy. Glob. Environ. Chang. 35, 138–147. doi: 10.1016/j.gloenvcha.2015.08.011
Altieri M. A. (2009). Agroecology, small farms, and food sovereignty. Mon. Rev. 61, 102–113. doi: 10.14452/MR-061-03-2009-07_8
Anderson C. R. Bruil J. Chappell M. J. Kiss C. Pimbert M. P. (2019). From transition to domains of transformation: getting to sustainable and just food systems through agroecology. Sustainability 11:5272. doi: 10.3390/su11195272
Arango D. Morel D. Mees M. (2019). Autodiagnostic des Pratiques Agroécologiques en Milieu Paysan: Guide Méthodologique. Brussels: SOS Faim.
Argyris C. (1977). Double loop learning in organizations. Harv. Bus. Rev. 55, 115–125.
Arnstein S. R. (1969). A ladder of citizen participation. J. Am. Inst. Plann. 35, 216–224. doi: 10.1080/01944366908977225
Astier M. García-Barrios L. Galván-Miyoshi Y. González-Esquivel C. E. Masera O. R. (2012). Assessing the sustainability of small farmer natural resource management systems. A critical analysis of the MESMIS program (1995-2010). Ecol. Soc. 17:25. doi: 10.5751/ES-04910-170325
Baccar M. Bouaziz A. Dugué P. Gafsi M. Le Gal P.-Y. (2019). The determining factors of farm sustainability in a context of growing agricultural intensification. Agroecol. Sustain. Food Syst. 43, 386–408. doi: 10.1080/21683565.2018.1489934
Barrios Latorre S. A. Sadovska V. Chongtham I. R. (2023). Perspectives on agroecological transition: the case of Guachetá municipality, Colombia. Agroecol. Sustain. Food Syst. 47, 382–412. doi: 10.1080/21683565.2022.2163449
Bergez J. É. Audouin E. (2023). Tata-box: A methodological approach to foresight the agroecological transition of local agriculture. New York: SSRN.
Bicksler Abram Jared Mottet Anne Lucantoni Dario De Rosa Fabrizia (2021). FAO’s tool for agroecology performance evaluation (Tape): a multi-dimensional assessment tool for the performance of agroecology for better decision making in the transition to sustainable food systems. Available online at: https://orgprints.org/42286/ (Accessed January 14, 2024)
Blockeel J. Schader C. Heidenreich A. Grovermann C. Kadzere I. Egyir I. S. et al. (2023). Do organic farming initiatives in sub-Saharan Africa improve the sustainability of smallholder farmers? Evidence from five case studies in Ghana and Kenya. J. Rural. Stud. 98, 34–58. doi: 10.1016/j.jrurstud.2023.01.010
Busscher N. Parra C. Vanclay F. (2020). Environmental justice implications of land grabbing for industrial agriculture and forestry in Argentina. J. Environ. Plan. Manag. 63, 500–522. doi: 10.1080/09640568.2019.1595546
Ciftcioglu G. C. (2017). Assessment of the resilience of socio-ecological production landscapes and seascapes: a case study from Lefke region of North Cyprus. Ecol. Indic. 73, 128–138. doi: 10.1016/j.ecolind.2016.09.036
CIRAD, ESCAP, FAO, & DALaM (2024). Policy guidelines on agroecological transitions in ASEAN. Montpellier: CIRAD.
Darmaun M. Chevallier T. Hossard L. Lairez J. Scopel E. Chotte J.-L. et al. (2023). Multidimensional and multiscale assessment of agroecological transitions. A review. Int. J. Agric. Sustain. 21:2193028. doi: 10.1080/14735903.2023.2193028
De Mey K. D’Haene K. Marchand F. Meul M. Lauwers L. (2011). Learning through stakeholder involvement in the implementation of MOTIFS: an integrated assessment model for sustainable farming in Flanders. Int. J. Agric. Sustain. 9, 350–363. doi: 10.1080/14735903.2011.582355
De Olde E. M. Oudshoorn F. W. Sørensen C. A. G. Bokkers E. A. M. De Boer I. J. M. (2016). Assessing sustainability at farm-level: lessons learned from a comparison of tools in practice. Ecol. Indic. 66, 391–404. doi: 10.1016/j.ecolind.2016.01.047
den Herder Michael Smith Laurence Arguile Lisa (2022). “Incorporating ecosystem Services in Evaluating the sustainability of innovative organic farming systems using the public goods tool.” EURAF 2022-Book of Abstracts. Available online at: https://orgprints.org/45361/ (Accessed January 14, 2024)
Dendoncker N. Boeraeve F. Crouzat E. Dufrêne M. König A. Barnaud C. (2018). How can integrated valuation of ecosystem services help understanding and steering agroecological transitions? Ecol. Soc. 23:112. doi: 10.5751/ES-09843-230112
Dunbar W. Subramanian S. M. Matsumoto I. Natori Y. Dublin D. Bergamini N. et al. (2020). “Lessons learned from application of the ‘indicators of resilience in socio-ecological production landscapes and seascapes (SEPLS)’ under the Satoyama initiative” in Managing socio-ecological production landscapes and seascapes for sustainable communities in Asia: Mapping and navigating stakeholders, policy and action (Singapore: Springer Singapore), 93–116.
Duru M. Therond O. Fares M.’h. (2015). Designing agroecological transitions; a review. Agron. Sustain. Dev. 35, 1237–1257. doi: 10.1007/s13593-015-0318-x
El Mujtar V. A. Zamor R. Salmerón F. Guerrero A. d. S. Laborda L. Tittonell P. et al. (2023). Lexical analysis improves the identification of contextual drivers and farm typologies in the assessment of transitions to agroecology through TAPE–a case study from rural Nicaragua. Agric. Syst. 209:103686. doi: 10.1016/j.agsy.2023.103686
Elzen B. Barbier M. Cerf M. Grin J. (2012). “Stimulating transitions towards sustainable farming systems” in Farming systems research into the 21st century: The new dynamic (Netherlands: Springer).
Engeström Y. (2001). Expansive learning at work: toward an activity theoretical reconceptualization. J. Educ. Work. 14, 133–156. doi: 10.1080/13639080020028747
Fallah-Alipour S. Mehrabi Boshrabadi H. Zare Mehrjerdi M. R. Hayati D. (2018). A framework for empirical assessment of agricultural sustainability: the case of Iran. Sustainability 10:4823. doi: 10.3390/su10124823
FAO (2018). The 10 elements of agroecology: Guiding the transition to sustainable food and agricultural systems. Rome: Food and Agriculture Organization. Available online at: https://openknowledge.fao.org/server/api/core/bitstreams/3d7778b3-8fba-4a32-8d13-f21dd5ef31cf/content (Accessed January 14, 2024).
FAO (2019). TAPE tool for agroecology performance evaluation: Process of development and guidelines for application test version. Rome: Food and Agriculture Organization. Available online at: http://www.fao.org/3/ca7407en/ca7407en.pdf (Accessed January 14, 2024).
Gara A. Aounallah M. K. Ajabi D. (2021). Evaluation of farms’ sustainability according to land tenure in Mornag. Tunisia. Caraka Tani J. Sustain. Agric. 36, 45–57. doi: 10.20961/carakatani.v36i1.43726
Gayatri S. Gassó-Tortajada V. Vaarst M. (2016). Assessing sustainability of smallholder beef cattle farming in Indonesia: a case study using the FAO SAFA framework. J. Sustainable Dev. 9, 236–247. doi: 10.5539/jsd.v9n3p236
Geck M. S. Crossland M. Lamanna C. (2023). Measuring agroecology and its performance: an overview and critical discussion of existing tools and approaches. Outlook Agric. 52, 349–359. doi: 10.1177/00307270231196309
Geels F. W. (2019). Socio-technical transitions to sustainability: a review of criticisms and elaborations of the multi-level perspective. Curr. Opin. Environ. Sustain. 39, 187–201. doi: 10.1016/j.cosust.2019.06.009
Gerrard C. L. Smith L. G. Pearce B. Padel S. Hitchings R. Measures M. et al. (2012). “Public goods and farming. In farming for food and water security” in Sustainable agriculture reviews. ed. Lichtfouse E., vol. 10 (Dordrecht, Netherlands: Springer).
Giraldo O. F. Rosset P. M. (2018). Agroecology as a territory in dispute: between institutionality and social movements. J. Peasant Stud. 45, 545–564. doi: 10.1080/03066150.2017.1353496
Gliessman S. (2016). Transforming food systems with agroecology. Agroecol. Sustain. Food Syst. 40, 187–189. doi: 10.1080/21683565.2015.1130765
González-Esquivel C. E. Camacho-Moreno E. Larrondo-Posadas L. Sum-Rojas C. de León-Cifuentes W. E. Vital-Peralta E. et al. (2020). Sustainability of agroecological interventions in small scale farming systems in the western highlands of Guatemala. Int. J. Agric. Sustain. 18, 285–299. doi: 10.1080/14735903.2020.1770152
Hakimi F. Hamdoun F. Z. (2023). A multi-criteria sustainability assessment of Mediterranean rainfed farming systems using the IDEA method: a Moroccan case study. Caraka Tani J. Sustain. Agric. 38, 339–358. doi: 10.20961/carakatani.v38i2.75853
Häni F. Braga F. Stämpfli A. Keller T. Fischer M. Porsche H. (2003). RISE, a tool for holistic sustainability assessment at farm level. Int. Food Agribus. Manag. Rev. 6, 1–13. doi: 10.22004/ag.econ.34379
Hendrickson M. K. James H. S. (2005). The ethics of constrained choice: how the industrialization of agriculture impacts farming and farmer behavior. J. Agric. Environ. Ethics 18, 269–291. doi: 10.1007/s10806-005-0631-5
Heredia-R M. Torres B. Cayambe J. Ramos N. Luna M. Diaz-Ambrona C. G. H. (2020). Sustainability assessment of smallholder agroforestry indigenous farming in the Amazon: a case study of Ecuadorian Kichwas. Agronomy 10:1973. doi: 10.3390/agronomy10121973
HLPE (2019). Agroecological and other innovative approaches for sustainable agriculture and food systems that enhance food security and nutrition. FAO. Available online at: http://www.fao.org/3/ca5602en/ca5602en.pdf (Accessed January 14, 2024).
Horrigan L. Lawrence R. S. Walker P. (2002). How sustainable agriculture can address the environmental and human health harms of industrial agriculture. Environ. Health Perspect. 110, 445–456. doi: 10.1289/ehp.02110445, 12003747
Iocola I. Angevin F. Bockstaller C. Catarino R. Curran M. Messéan A. et al. (2020). An actor-oriented multi-criteria assessment framework to support a transition towards sustainable agricultural systems based on crop diversification. Sustainability 12:5434. doi: 10.3390/su12135434
Kerr R. B. Madsen S. Stüber M. Liebert J. Enloe S. Borghino N. et al. (2021). Can agroecology improve food security and nutrition? A review. Glob. Food Secur. 29:100540. doi: 10.1016/j.gfs.2021.100540
Klerkx L. Van Mierlo B. Leeuwis C. (2012). “Evolution of systems approaches to agricultural innovation: concepts, analysis and interventions” in Farming systems research into the 21st century: The new dynamic. eds. Darnhofer I. Gibbon D. Dedieu B. (Netherlands: Springer).
Landert J. Christian Schader H. M. Stolze M. (2017). A holistic sustainability assessment method for urban food system governance. Sustainability 9:490. doi: 10.3390/su9040490
Leach M. Nicholas Nisbett L. C. Jody Harris N. H. John Thompson (2020). Food politics and development. World Dev. 134:105024. doi: 10.1016/j.worlddev.2020.105024
Leach Melissa Stirling Andrew Charles Scoones Ian (2010). Dynamic Sustainabilities: Technology, environment, social justice. Taylor & Francis. Available online at: https://library.oapen.org/handle/20.500.12657/52748 (Accessed January 16, 2024).
Lefroy R. D. B. Hans-Dieter Bechstedt M. R. (2000). Indicators for sustainable land management based on farmer surveys in Vietnam, Indonesia, and Thailand. Agric. Ecosyst. Environ. 81, 137–146. doi: 10.1016/S0167-8809(00)00187-0
Leighton P. (2021). “The harms of industrial food production: how modern agriculture, livestock rearing and food processing contribute to disease, environmental degradation and worker exploitation” in The Palgrave handbook of social harm, Palgrave studies in victims and victimology. eds. Davies P. Leighton P. Wyatt T. (Cham: Springer International Publishing).
Levard L. Mathieu B. Masse P. (2019). Handbook for the evaluation of agroecology: A method to evaluate its effects and the conditions for its development. Nogent-sur-Marne: GTAE–AgroParisTech–CIRAD–IRD.
Levidow L. Pimbert M. Vanloqueren G. (2014). Agroecological research: conforming—or transforming the dominant agro-food regime? Agroecol. Sustain. Food Syst. 38, 1127–1155. doi: 10.1080/21683565.2014.951459
Li S. Gong Q. Yang S. (2019). A sustainable, regional agricultural development measurement system based on dissipative structure theory and the entropy weight method: a case study in Chengdu, China. Sustainability 11:5313. doi: 10.3390/su11195313
Liu Q. Sun X. Wu W. Liu Z. Fang G. Yang P. (2022). Agroecosystem services: a review of concepts, indicators, assessment methods and future research perspectives. Ecol. Indic. 142:109218. doi: 10.1016/j.ecolind.2022.109218
López-Ridaura S. Masera O. Astier M. (2002). Evaluating the sustainability of complex socio-environmental systems. The MESMIS framework. Ecol. Indic. 2, 135–148. doi: 10.1016/S1470-160X(02)00043-2
López-Ridaura S. Van Keulen H. Van Ittersum M. K. Leffelaar P. A. (2005). Multiscale methodological framework to derive criteria and indicators for sustainability evaluation of peasant natural resource management systems. Environ. Dev. Sustain. 7, 51–69. doi: 10.1007/s10668-003-6976-x
Magrini M.-B. Martin G. Magne M.-A. Duru M. Couix N. Hazard L. et al. (2019). “Agroecological transition from farms to territorialised Agri-food systems: issues and drivers” in Agroecological transitions: From theory to practice in local participatory design (Cham: Springer International Publishing), 69–98.
Marshall G. R. (2015). A social-ecological systems framework for food systems research: accommodating transformation systems and their products. Int. J. Commons 9, 881–908. doi: 10.18352/ijc.587
Meinzen-Dick R. Quisumbing A. Behrman J. Biermayr-Jenzano P. Wilde V. Noordeloos M. et al. (2011). Engendering agricultural research, development and extension. Washington, DC: International Food Policy Research Institute (IFPRI).
Meul M. Van Passel S. Nevens F. Passel S. Dessein J. Rogge E. et al. (2008). MOTIFS: a monitoring tool for integrated farm sustainability. Agron. Sustain. Dev. 28, 321–332. doi: 10.1051/agro:2008001
Meuwissen M. F. Peter H. Spiegel A. (2022). SURE-farm approach to assess the resilience of European farming systems. Available online at: https://eprints.glos.ac.uk/11061 (Accessed January 15, 2024).
Mezirow J. (2000). Learning as transformation: Critical perspectives on a theory in Progress. The Jossey-Bass Higher and Adult Education Series. ERIC. Available online at: https://eric.ed.gov/?id=ED448301 (Accessed November 20, 2025).
Morton J. F. (2007). The impact of climate change on smallholder and subsistence agriculture. Proc. Natl. Acad. Sci. 104, 19680–19685. doi: 10.1073/pnas.0701855104, 18077400
Mottet A. Bicksler A. Lucantoni D. De Rosa F. Scherf B. Scopel E. et al. (2020). Assessing transitions to sustainable agricultural and food systems: a tool for agroecology performance evaluation (TAPE). Front. Sustain. Food Syst. 4:579154. doi: 10.3389/fsufs.2020.579154
Munoz-Araya M. Williams S. R. Geoghan P. Ortiz-Gonzalo D. Marshall K. N. Brewer K. M. et al. (2024). A knowledge creation framework for academia toward agroecological transformations of food systems. Front. Sustain. Food Syst. 8:1336632. doi: 10.3389/fsufs.2024.1336632
Muthuprakash K. M. S. Om Damani (2019). Design of farm assessment index (FAI) for a holistic comparison of farming practices: case of organic and conventional farming systems from two Indian states. Agroecol. Sustain. Food Syst. 43, 329–357. doi: 10.1080/21683565.2018.1547941
Nowell L. S. Norris J. M. White D. E. Moules N. J. (2017). Thematic analysis: striving to meet the trustworthiness criteria. Int J Qual Methods 16. doi: 10.1177/1609406917733847
Oldeman L. R. (1992). Global extent of soil degradation Bi-Annual Report 1991-1992/ISRIC ISRIC. Available online at: https://library.wur.nl/WebQuery/wurpubs/fulltext/299739 (Accessed January 15, 2024).
Oteros-Rozas E. Ravera F. García-Llorente M. (2019). How does agroecology contribute to the transitions towards social-ecological sustainability? Sustainability 11:4372. doi: 10.3390/su11164372
Paas W. H. Accatino F. Appel F. (2020). FoPIA-SURE-farm 2 assessment.” In D5. 5 impacts of future scenarios on the resilience of farming systems across the EU assessed with quantitative and qualitative methods. SURE Farm. Available online at: https://edepot.wur.nl/534836 (Accessed January 14, 2024).
Paas W. H. Coopmans I. Severini S. Van Ittersum M. K. Meuwissen M. P. M. Reidsma P. (2021). Participatory assessment of sustainability and resilience of three specialized farming systems. Ecol. Soc. 26:202. doi: 10.5751/ES-12200-260202
Pahl-Wostl C. (2009). A conceptual framework for analysing adaptive capacity and multi-level learning processes in resource governance regimes. Glob. Environ. Change 19, 354–365. doi: 10.1016/j.gloenvcha.2009.06.001
Peano C. Migliorini P. Sottile F. (2014). A methodology for the sustainability assessment of Agri-food systems: an application to the slow food presidia project. Ecol. Soc. 19:424. doi: 10.5751/ES-06972-190424
Peano C. Tecco N. Dansero E. Girgenti V. Sottile F. (2015). Evaluating the sustainability in complex Agri-food systems: the SAEMETH framework. Sustainability 7, 6721–6741. doi: 10.3390/su7066721
Peeters A. Semenova T. Diusheev E. Wezel A. Migliorini P. (2018). “Identification of agroecological farming and other agroecology-related activities in Kyrgyzstan” in Agroecol (Europe, Brussels: Belgium. Available online at: https://www.agroecology-europe.org/wp-content/uploads/2023/02/FINAL-REPORT-KYRGYZSTAN.pdf) (Accessed January 14, 2024).
Pereira L. Frantzeskaki N. Hebinck A. Charli-Joseph L. Drimie S. Dyer M. et al. (2020). Transformative spaces in the making: key lessons from nine cases in the global south. Sustain. Sci. 15, 161–178. doi: 10.1007/s11625-019-00749-x
Perfecto I. Vandermeer J. Wright A. (2019). Nature’s matrix: Linking agriculture, biodiversity conservation and food sovereignty. 2nd Edn. London: Routledge.
Petersen P. Silveira L. Fernandes G. B. de Almeida S. G. (2020). Lume: a method for the economic-ecological analysis of agroecosystems. The Centre for Agroecology, Water and Resilience (CAWR). Available online at: https://aspta.org.br/files/2015/05/Lume-a-method-for-the-economic-ecological-analysis-of-agroecosystems.pdf (Accessed January 14, 2024).
Pimbert M. (2015). Food sovereignty and autonomous local systems: RCC perspectives, no., 37–44. Munich, Germany: Rachel Carson Center for Environment and Society.
Pretty J. (2008). Agricultural sustainability: concepts, principles and evidence. Philos Trans R Soc B Biol Sci 363, 447–465. doi: 10.1098/rstb.2007.2163, 17652074
Rais M. Sharma D. C. (2008). Characterising indicators of sustainable land management in Indian Himalayan sloping lands. J. Environ. Assess. Policy Manag. 10, 431–460. doi: 10.1142/s1464333208003111
Resare Sahlin K. Carolus J. Von Greyerz K. Ekqvist I. Röös E. (2022). Delivering ‘less but better’ meat in practice—a case study of a farm in agroecological transition. Agron. Sustain. Dev. 42:24. doi: 10.1007/s13593-021-00737-5
Rodrigues G. S. Constantino A. D’Angelcola E. (2014). “APOIA-NovoRural-integrated sustainability Indicators with Emphasis on Intensive Periurban Agriculture.” Available online at: https://core.ac.uk/download/pdf/45531389.pdf (Accessed January 20, 2024).
Rodrigues G. S. Rodrigues I. A. Buschinelli C. C. d. A. De Barros I. (2010). Integrated farm sustainability assessment for the environmental management of rural activities. Environ. Impact Assess. Rev. 30, 229–239. doi: 10.1016/j.eiar.2009.10.002
Sauvenier X. Valckx J. Van C. N. (2005). Framework for assessing sustainability levels in Belgium agricultural systems-SAFE. Available online at: https://mpra.ub.uni-muenchen.de/id/eprint/99616. (Accessed January 20, 2024).
Schader C. Baumgart L. Landert J. Muller A. Ssebunya B. Blockeel J. et al. (2016). Using the sustainability monitoring and assessment routine (SMART) for the systematic analysis of trade-offs and synergies between sustainability dimensions and themes at farm level. Sustainability 8:274. doi: 10.3390/su8030274
Schader C. Curran M. Heidenreich A. Landert J. Blockeel J. Baumgart L. et al. (2019). Accounting for uncertainty in multi-criteria sustainability assessments at the farm level: improving the robustness of the SMART-farm tool. Ecol. Indic. 106:105503. doi: 10.1016/j.ecolind.2019.105503
Schneider F. Buser T. (2018). Promising degrees of stakeholder interaction in research for sustainable development. Sustain. Sci. 13, 129–142. doi: 10.1007/s11625-017-0507-4, 30147775
Schneider S. Niederle P. A. (2010). Resistance strategies and diversification of rural livelihoods: the construction of autonomy among Brazilian family farmers. J. Peasant Stud. 37, 379–405. doi: 10.1080/03066151003595168
Schut M. Klerkx L. Sartas M. Schut M. A. R. C. Lamers D. I. E. U. W. K. E. Campbell M. A. R. I. E. T. T. E. M. C. et al. (2016). Innovation platforms: experiences with their institutional embedding in agricultural research for development. Exp. Agric. 52, 537–561. doi: 10.1017/S001447971500023X
Smith L. G. Westaway S. Mullender S. Ghaley B. B. Xu Y. Lehmann L. M. et al. (2022). Assessing the multidimensional elements of sustainability in European agroforestry systems. Agric. Syst. 197:103357. doi: 10.1016/j.agsy.2021.103357
Smyth A. J. Dumanski J. (1995). A framework for evaluating sustainable land management. Can. J. Soil Sci. 75, 401–406. doi: 10.4141/cjss95-059
Soini Coe E. Coe R. (2023). Agroecological transitions in the mind. Elementa Sci. Anthropocene 11:00026. doi: 10.1525/elementa.2022.00026
Soldi A. Meza M. J. A. Guareschi M. Donati M. Ortiz A. I. (2019). Sustainability assessment of agricultural systems in Paraguay: a comparative study using FAO’S SAFA framework. Sustainability 11:3745. doi: 10.3390/su11133745
Soulé E. Charbonnier R. Schlosser L. Michonneau P. Michel N. Bockstaller C. (2023). A new method to assess sustainability of agricultural systems by integrating ecosystem services and environmental impacts. J. Clean. Prod. 415:137784. doi: 10.1016/j.jclepro.2023.137784
Sterling E. Ticktin T. Morgan T. K. K. Kipa Kepa Morgan T. Cullman G. Alvira D. et al. (2017). Culturally grounded indicators of resilience in social-ecological systems. Environ. Soc. 8, 63–95. doi: 10.3167/ares.2017.080104
Stirling A. (2014). Transforming power: social science and the politics of energy choices. Energy Res. Soc. Sci. 1, 83–95. doi: 10.1016/j.erss.2014.02.001
Sumberg J. Giller K. E. (2022). What is ‘conventional’agriculture? Glob. Food Secur. 32:100617. doi: 10.1016/j.gfs.2022.100617
Sutherland L.-A. Darnhofer I. Wilson G. Zagata L. (2014). Transition pathways towards sustainability in agriculture: Case studies from Europe. London, UK: CABI.
Talukder B. Hipel K. W. (2018). The PROMETHEE framework for comparing the sustainability of agricultural systems. Resources 7:74. doi: 10.3390/resources7040074
Thomas D. R. (2006). A general inductive approach for analyzing qualitative evaluation data. Am. J. Eval. 27, 237–246. doi: 10.1177/1098214005283748
Tilman D. Balzer C. Hill J. Befort B. L. (2011). Global food demand and the sustainable intensification of agriculture. Proc. Natl. Acad. Sci. 108, 20260–20264. doi: 10.1073/pnas.1116437108, 22106295
Tittonell P. (2023a). A systems approach to agroecology. Switzerland: Springer Nature.
Tittonell P. (2023b). “Trade-offs around production and livelihood decisions.” A systems approach to agroecology Tittonell Pablo Switzerland: Springer Nature.
Trabelsi M. Mandart E. Le Grusse P. Bord J.-P. (2016). How to measure the Agroecological performance of farming in order to assist with the transition process. Environ. Sci. Pollut. Res. 23, 139–156. doi: 10.1007/s11356-015-5680-3, 26527345
Trabelsi M. Mandart E. Le Grusse P. Bord J.-P. (2019). ESSIMAGE: a tool for the assessment of the Agroecological performance of agricultural production systems. Environ. Sci. Pollut. Res. 26, 9257–9280. doi: 10.1007/s11356-019-04387-9, 30721436
Tricco A. C. Lillie E. Zarin W. O’Brien K. K. Colquhoun H. Levac D. et al. (2018). PRISMA extension for scoping reviews (PRISMA-ScR): checklist and explanation. Ann. Intern. Med. 169, 467–473. doi: 10.7326/M18-0850
Uzun B. Almasri A. Uzun Ozsahin D. (2021). “Preference ranking organization method for enrichment evaluation (Promethee)” in Application of multi-criteria decision analysis in environmental and civil engineering. Professional practice in earth sciences. eds. Uzun Ozsahin D. Gökçekuş H. Uzun B. LaMoreaux J. (Cham, Switzerland: Springer International Publishing).
Van Cauwenbergh N. Biala K. Bielders C. Brouckaert V. Franchois L. Garcia Cidad V. et al. (2007). SAFE—A hierarchical framework for assessing the sustainability of agricultural systems. Agric. Ecosyst. Environ. 120, 229–242. doi: 10.1016/j.agee.2006.09.006
Van Passel S. Meul M. (2012). Multilevel and multi-user sustainability assessment of farming systems. Environ. Impact Assess. Rev. 32, 170–180. doi: 10.1016/j.eiar.2011.08.005
Wezel A. Bellon S. Doré T. Francis C. Vallod D. David C. (2009). Agroecology as a science, a movement and a practice. A review. Agron. Sustain. Dev. 29, 503–515. doi: 10.1051/agro/2009004
Wezel A. David C. (2012). “Agroecology and the food system” in Agroecology and strategies for climate change. ed. Lichtfouse E. (Netherlands: Springer).
Wezel A. Gemmill Herren B. Bezner Kerr R. Barrios E. Rodrigues Gonçalves A. L. Sinclair F. (2020). Agroecological principles and elements and their implications for transitioning to sustainable food systems. A review. Agron. Sustain. Dev. 40:40. doi: 10.1007/s13593-020-00646-z
Wiget M. Muller A. Hilbeck A. (2020). Main challenges and key features of Indicator-based Agroecological assessment frameworks in the context of international cooperation. Ecol. Soc. 25:3. doi: 10.5751/ES-11774-250325, 30174746
Yang Y. Bai K. Li G. Jarvis D. I. Long C. (2020). Assessment of the resilience in SEPLS (socio-ecological production landscapes and seascapes) in Yanuo Village, Xishuangbanna, Southwest China. Sustainability 12:3774. doi: 10.3390/su12093774
Zahm F. Viaux P. Vilain L. Girardin P. Mouchet C. (2008). Assessing farm sustainability with the IDEA method – from the concept of agriculture sustainability to case studies on farms. Sustain. Dev. 16, 271–281. doi: 10.1002/sd.380
Zahm F. Viaux P. Vilain L. Girardin P. Mouchet C. Häni F. J. et al. (2006). “Farm sustainability assessment using the IDEA method. From the concept of farm sustainability to case studies on French farms.” 1. INFASA Symposium, np. Available online at: https://hal.science/hal-02278989/