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    المصدر: Revista de Arquitectura (Bogotá); 2024: Aceptados en edición / Ahead of print ; Revista de Arquitectura; 2024: Aceptados en edición / Ahead of print ; 2357-626X ; 1657-0308

    العلاقة: Ángel, S., Parent, J., & Civco, D. L. (2012). The fragmentation of urban landscapes: Global evidence of a key attribute of the spatial structure of cities, 1990-2000. Environment and Urbanization, 24(1), 249-283. https://doi.org/10.1177/0956247811433536Test; Arroyo, M. T., Marquet, P. A., Marticorena, C., Simonetti, J., Cavieres, L. A., Squeo, F. A., Rozzi, R., & Massardo, F. (2006). El hotspot chileno, prioridad mundial para la conservación. Diversidad de ecosistemas, ecosistemas terrestres. En Biodiversidad de Chile, patrimonio y desafíos (pp. 90-93). Ocho Libro Editores. https://repositorio.uchile.cl/handle/2250/120068Test; Ayuntamiento de Vitoria-Gasteiz. (2020). Plan de movilidad sostenible y espacio público de Vitoria-Gasteiz (2021-2025). https://www.vitoria-gasteiz.org/docs/wb021/contenidosEstaticos/adjuntos/es/45/92/94592.pdfTest; Bakogiannis, E., Vassi, A., Siti, M., & Christodoulopoulou, G. (2016). Developing a sustainable mobility plan in piraeus with special emphasis on cycling. Journal of Traffic and Transportation Engineering, 4, 61-74. https://doi.org/10.17265/2328-2142/2016.02.001Test; Baldó, J. (2014). Ciudades saludables / ciudades enfermas Healthy cities / sick cities. Anales Venezolanos de Nutrición, 27(1), 193-201.; Blinge, M. (2014). Policy measures to realise green corridors - A stakeholder perspective. Research in Transportation Business and Management, 12, 55-62. https://doi.org/10.1016/j.rtbm.2014.06.007Test; Cansino, J. M., Moreno, R., Quintana, D., & Roman-Collado, R. (2019). Health and heating in the city of Temuco (Chile). Monetary savings of replacing biomass with PV system in the residential sector. Sustainability, 11(19), 5205. https://doi.org/10.3390/su11195205Test; Canto López, M. T. (2014). La ordenación de la Infraestructura Verde en el sudeste Ibérico (Comunidad Valenciana, España). Cuadernos de Biodiversidad, 45, 10-22. http://rua.ua.es/dspace/bitstream/10045/40005/1/CuadBio_45_03.pdfTest; Clausen, U., Geiger, C., & Behmer, C. (2012). Green corridors by means of ICT applications. Procedia - Social and Behavioral Sciences, 48, 1877-1886. https://doi.org/10.1016/j.sbspro.2012.06.1162Test; Diez Roux, A. V., Slesinski, S. C., Alazraqui, M., Caiaffa, W. T., Frenz, P., Jordán Fuchs, R., Miranda, J. J., Rodríguez, D. A., Dueñas, O. L. S., Siri, J., & Vergara, A. V. (2019). A novel international partnership for actionable evidence on urban health in Latin America: LAC‐Urban Health and Salurbal. Global Challenges, 3(4), 1800013. https://doi.org/10.1002/gch2.201800013Test; Duque, J. C., Lozano-Gracia, N., Patiño, J. E., Restrepo, P., & Velásquez, W. A. (2019). Spatiotemporal dynamics of urban growth in Latin American cities: An analysis using nighttime light imagery Juan. 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Adapting cities for climate change: The role of the green infrastructure. Built Environment, 33(1), 115-133. https://doi.org/10.2148/benv.33.1.115Test; Gurrutxaga, M. (2011). La gestión de la conectividad ecológica del territorio en España : iniciativas y retos. Boletín de la Asociación de Geógrafos Españoles, 56, 225-244.; Handley, J., Pauleit, S., Slinn, P., Barber, A., Baker, M., Jones, C., & Lindley, S. (2003). Accessible natural green space. Standards in towns and cities: a review and toolkit for their implementation. English Nature Research Reports, 526, 98. https://publications.naturalengland.org.uk/publication/65021Test; Hardoy, J. E., Mitlin, D., & Satterthwaite, D. (2013). Environmental problems in an urbanizing world: Finding solutions in cities in Africa, Asia and Latin America. En Substance abuse issues among families in diverse populations. Rutledge. https://doi.org/10.4324/9781315071732Test; Hansen, R., & Pauleit, S. (2014). From multifunctionality to multiple ecosystem services? A conceptual framework for multifunctionality in green infrastructure planning for Urban Areas. Ambio, 43(4), 516–529. https://doi.org/10.1007/s13280-014-0510-2Test; Hong, J., & Mcarthur, D. (2020). Did safe cycling infrastructure still matter during a COVID-19 lockdown? Sustainability, 12(20), 8672. https://doi.org/10.3390/su12208672Test; Huang, J., Fournier, N., & Skabardonis, A. (2021). Bicycle level of service: proposed updated pavement quality index. Transportation Research Record, 2675(11), 1346-1356. https://doi.org/10.1177/03611981211026661Test; Ikin, K., Le Roux, D. S., Rayner, L., Villaseñor, N. R., Eyles, K., Gibbons, P., Manning, A. D., & Lindenmayer, D. B. (2015). Key lessons for achieving biodiversity-sensitive cities and towns. Ecological Management and Restoration, 16(3), 206-214. https://doi.org/10.1111/emr.12180Test; İnançoğlu, S., Özden, Ö., & Kara, C. (2020). Green Corridors in urban landscapes, case study Nicosia Pedieos River. European Journal of Sustainable Development, 9(1), 1-8. https://doi.org/10.14207/ejsd.2020.v9n1p1Test; Jiang, Y., Huang, J., Shi, T., & Li, X. (2021). Cooling island effect of blue-green corridors: Quantitative comparison of morphological impacts. International Journal of Environmental Research and Public Health, 18(22), 1917. https://doi.org/10.3390/ijerph182211917Test; Jirón, P., & Mansilla, P. (2014). Las consecuencias del urbanismo fragmentador en la vida cotidiana de habitantes de la ciudad de Santiago de Chile. Eure, 40(121), 79-97. https://doi.org/10.4067/S0250-71612014000300001Test; Kim, K. (2011). A comparative institutional analysis of management in urban riparian greenways: the American River Parkway (Sacramento, California) and the Willamette River Greenway (Portland, Oregon). The California State University, Scholarwork. https://scholarworks.calstate.edu/concern/theses/fb494b74bTest; Lin, J. J., & Wei, Y. H. (2018). Assessing area-wide bikeability: A grey analytic network process. Transportation Research Part A: Policy and Practice, 113(1), 381-396. https://doi.org/10.1016/j.tra.2018.04.022Test; McNeil, N. (2011). Bikeability and the 20-min neighborhood: How infrastructure and destinations influence bicycle accessibility. Transportation Research Record, 2247. https://doi.org/10.3141/2247-07Test; Mell, I. (2018). Financing the future of green infrastructure planning: alternatives and opportunities in the UK. Landscape Research, 43(6), 751-768. https://doi.org/10.1080/01426397.2017.1390079Test; Moré, R., & Giret, M. (2013). Movilidad sostenible en Bogotá D.C. Caso metro Bogotá. Revista de Tecnología, 12(2), 52-99. https://doi.org/10.18270/rt.v12i2.769Test; Moreno, R., Ojeda, N., Azócar, J., Venegas, C., & Inostroza, L. (2020). Application of NDVI for identify potentiality of the urban forest for the design of a green corridors system in intermediary cities of Latin America: Case study, Temuco, Chile. Urban Forestry and Urban Greening, 55. https://doi.org/10.1016/j.ufug.2020.126821Test; Müller-Using, S., Rojas Ponce, Y., & Martin Stuven, M. (2021). Propuesta para la definición de un diámetro meta para los árboles futuro en renovales de roble (Nothofagus obliqua). Ciencia & Investigación Forestal, 27(3), 49-61. https://doi.org/10.52904/0718-4646.2021.553Test; Municipalidad de Temuco. (2010). Plan Regulador Comunal. Zonificación urbana. Municipalidad de Temuco, Región de la Araucanía, Chile.; Myers, N., Mittermeier, R., Fonseca, G., & Kent, J. (2000). Biodiversity hotspots for conservation priorities. Nature, 403(6772), 853-858. https://doi.org/10.1038/35002501Test; ONU-Habitat. (2022). World cities report 2022: Envisaging the future of cities. En World Cities Report 2022. https://onuhabitat.org.mx/WCRTest/; Pauleit, S., Slinn, P., Handley, J., & Lindley, S. (2003). Promoting the natural greenstructure of towns and cities: English nature’s accessible natural greenspace standards model. Built Environment, 29(2), 157-171. https://doi.org/10.2148/benv.29.2.157.54469Test; Peng, J., Zhao, H., & Liu, Y. (2017). Urban ecological corridors construction: A review. Shengtai Xuebao. Acta Ecológica Sínica, 37(1), 23-30. https://doi.org/10.1016/j.chnaes.2016.12.002Test; Penteado, H. M., & Alvarez, C. E. (2007). Corredores verdes urbanos: estudo da viabilidade de conexão Das Áreas Verdes De Vitória. Paisagem Ambiente: Ensaios, 57-68. https://www.revistas.usp.br/paam/issue/view/6555Test; Psaraftis, H. N., & Panagakos, G. (2012). Green Corridors in European Surface freight logistics and the Supergreen Project. Procedia - Social and Behavioral Sciences, 48, 1723-1732. https://doi.org/10.1016/j.sbspro.2012.06.1147Test; Romero, H. (2009). Ecología política del cambio climático en ciudades chilenas: Características y vulnerabilidades sociales. Seminario Internacional Impactos Sociales del Cambio Climático a Nivel Internacional. Universidad de Concepción, Facultad de Ciencias Sociales. https://repositorio.uchile.cl/bitstream/handle/2250/118159/EcologiaPolitica.pdf?sequence=1Test; Rueda, S. (2011). El urbanismo ecológico. Territorio, Urbanismo, Sostenibilidad, Paisaje, Diseño Urbano, p. 1–34. http://urban-e.aq.upm.es/articulos/ver/el-urbanismo-ecol-gico/completoTest; Schlegel, B., Gayoso, J., & Guerra, J. (2000). Manual de procedimientos. Muestreos de biomasa forestal. Universidad Austral de Chile. https://bibliotecadigital.ciren.cl/bitstream/handle/20.500.13082/26685/manmuesbio.PDF?sequence=1&isAllowed=yTest; Segovia Araníbar, E. L., Esenarro, D., Ascama, L., Rodríguez, C., & Julca, M. S. (2020). Design of green infrastructure for sustainable urban transportation in Lomas del Paraíso in Villa María del Triunfo. Journal of Green Engineering, 10(11), 11180-11192.; Tolegen, Z., Konbr, U., Karzhaubayeva, S., Sadvokasova, G., Nauryzbayeva, A., & Amandykova, D. (2023). Assessment of safe access to pedestrian infrastructure facilities in the city of Almaty, Kazakhstan. Civil Engineering and Architecture, 11(1), 351-371. https://doi.org/10.13189/cea.2023.110128Test; Vaccaro, L. (2011). Análisis de la accesibilidad desde la perspectiva de la movilidad. Universidad de Chile. https://repositorio.uchile.cl/bitstream/handle/2250/100412/0649_aq-vaccaro_l.pdfTest; Vásquez, A. (2016). Infraestructura verde, servicios ecosistémicos y sus aportes para enfrentar el cambio climático en ciudades : el caso del corredor ribereño del río Mapocho en Santiago de Chile 1. Revista de Geografía Norte Grande, 86, 63-86. http://dx.doi.org/10.4067/S0718-34022016000100005Test; Vásquez, A., Devoto, C., Giannotti, E., & Velásquez, P. (2016). Green infrastructure systems facing fragmented cities in Latin America - Case of Santiago, Chile. Procedia Engineering, 161, 1410-1416. https://doi.org/10.1016/j.proeng.2016.08.602Test; Vélez Restrepo, L. A. (2007). Paisajismo y ecología del paisaje en la gestión de la arborización de calles. Una referencia a la ciudad de Medellín, Colombia. Gestión y Ambiente, 10(4), 131-140. https://www.redalyc.org/articulo.oa?id=169419796011Test; Wang, Y. (2013). Sustainable development and green space system construction. 21st International Conference on Geoinformatics, 40971101, 1-5 https://ieeexplore.ieee.org/abstract/document/6626192Test; Whitford, V., Ennos, A. R., & Handley, J. F. (2001). City form and natural process. Indicators for the ecological performance of urban areas and their application to Merseyside, UK. Landscape and Urban Planning, 57(2), 91-103. https://doi.org/10.1016/S0169-2046Test(01)00192-X; Žlender, V., & Ward Thompson, C. (2017). Accessibility and use of peri-urban green space for inner-city dwellers: A comparative study. Landscape and Urban Planning, 165, 193-205. https://doi.org/10.1016/j.landurbplan.2016.06.011Test; https://revistadearquitectura.ucatolica.edu.co/article/view/5503Test

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