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10 - Urban Health

from Part II - Urban Ecosystems and Human Services

Published online by Cambridge University Press:  12 April 2018

Cynthia Rosenzweig
Affiliation:
NASA Goddard Institute for Space Studies
William D. Solecki
Affiliation:
Hunter College, City University of New York
Patricia Romero-Lankao
Affiliation:
National Center for Atmospheric Research, Boulder, Colorado
Shagun Mehrotra
Affiliation:
New School University, New York
Shobhakar Dhakal
Affiliation:
Asian Institute of Technology, Pathumthani, Thailand
Somayya Ali Ibrahim
Affiliation:
Earth Institute at Columbia University/NASA GISS, New York
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Climate Change and Cities
Second Assessment Report of the Urban Climate Change Research Network
, pp. 363 - 398
Publisher: Cambridge University Press
Print publication year: 2018

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References

Primary Sources

Admassie, A., Adenew, B., and Tadege, A. (2008). Perceptions of stakeholders on climate change and adaptation strategies in Ethiopia. IFPRI Research Brief 15(6).Google Scholar
Aldrich, D. P. (2012). Building Resilience: Social Capital in Post-Disaster Recovery. University of Chicago Press.Google Scholar
Anderson, G. B., and Bell, M. L. (2012). Lights out: Impact of the August 2003 power outage on mortality in New York, NY. Epidemiology 23(2), 189.Google Scholar
Barata, M., Ligeti, E., de Simone, G., Dickinson, T., Jack, D., Penney, J., Rahman, M., and Zimmerman, R. (2011). Climate change and human health in cities. In Rosenzweig, C., Solecki, , Hammer, S. A. and Mehrotra, S. (eds.), Climate Change and Cities: First Assessment Report of the Urban Climate Change Research Network (183217). Cambridge University Press.Google Scholar
Basu, R., Malig, B., and Ostro, B. (2010). High ambient temperature and the risk of preterm delivery. American Journal of Epidemiology 172(10), 11081117. Accessed December 9, 2015: http://doi.org/10.1093/aje/kwq170Google Scholar
Batty, M. (2008). Cities as complex systems: Scaling, interactions, networks, dynamics and urban morphologies. In The Encyclopedia of Complexity & System Science. Springer.Google Scholar
Beatty, M. E., Phelps, S., Rohner, C., and Weisfuse, I. (2006). Blackout of 2003: Public health effects and emergency response. Public Health Reports 121(1), 3644.Google Scholar
Berry, H. L., Bowen, K., and Kjellstrom, T. (2010). Climate change and mental health: A causal pathways framework. International Journal of Public Health 55(2), 123132.Google Scholar
Bhatt, S., Gething, P. W., Brady, O. J., Messina, J. P., Farlow, A. W., Moyes, C. L., Drake, J. M., Brownstein, J. S., Hoen, A. G., Sankoh, O., Myers, M. F., George, D. B., Jaenisch, T., Wint, G. R. W., Simmons, C. P., Scott, T. W., Farrar, J. J., and Hay, S. I. (2013). The global distribution and burden of dengue. Nature 496(7446), 504507Google Scholar
Bierbaum, R., Smith, J. B., Lee, A., Blair, M., Carter, L., Chapin, F. F. III, Fleming, P., Rufio, S., Stults, M., McNeely, S., Wasley, E., and Verduzco, L. (2013). A comprehensive review of climate adaptation in the United States: More than before, but less than needed. Mitigation and Adaptation Strategies for Global Change 18(3), 361406.Google Scholar
Bouzid, M., Hooper, L., and Hunter, P. R. (2013). The effectiveness of public health interventions to reduce the health impact of climate change: A systematic review of systematic reviews. PLoS One 8(4). Accessed November 8, 2014: http://www.readcube.com/articles/10.1371/journal.pone.0062041Google Scholar
Bowen, K. J., Friel, S., Ebi, K., Butler, C. D., Miller, F., and McMichael, A. J. (2012). Governing for a healthy population: Towards an understanding of how decision-making will determine our global health in a changing climate. International Journal of Environmental Research and Public Health 9(1), 5572.CrossRefGoogle Scholar
Bulkeley, H. (2010). Cities and the governing of climate change. Annual Review of Environmental Resources 35, 229253.CrossRefGoogle Scholar
Cakmak, S., Dales, R. E., Burnett, R. T., Judek, S., Coates, F., and Brook, J. R. (2002). Effect of airborne allergens on emergency visits by children for conjunctivitis and rhinitis. Lancet 359(9310), 947948. Accessed May 23, 2014: http://doi.org/10.1016/S0140-6736(02)08045-5Google Scholar
CAP. (2007). Cities Preparing for Climate Change A Study of Six Urban Regions. Clean Air Partnership.Google Scholar
Carlsson-Kanyama, A., Carlsen, H., and Dreborg, K.H (2013). Barriers in municipal climate change adaptation: Results from case studies using backcasting. Futures 49, 921.Google Scholar
Carmin, J., Anguelovski, I., and Roberts, D. (2012). Urban climate adaptation in the Global South: Planning in an emerging policy domain. Journal of Planning, Education, and Research 32, 1832.Google Scholar
Carmin, J., Nadkarni, N., and Rhie, C. (2012). Progress and Challenges in Urban Climate Adaptation Planning: Results of a Global Survey. MIT Press.Google Scholar
Castán Broto, V., and Bulkeley, H. (2013). A survey of urban climate change experiments in 100 cities. Global Environmental Change 23, 92102.Google Scholar
CCSP. (2008). Weather and climate extremes in a changing climate: Regions of focus: North America, Hawaii, Caribbean and U.S. Pacific Islands. In Karl, T. R., Meehl, G. A., Miller, C. D., Hassol, S. J., Waple, A. M., and Murray, W. L. (eds.), Synthesis and Assessment Product 3.3, Report by the United States Climate Change Science Program (CCSP) and the Subcommittee on Global Change Research. Department of Commerce, NOAA’s National Climatic Data Center.Google Scholar
Centro Regional De Información Sobre Desastres (CRID). (2009). Casos de estudio. Accessed June 3, 2014: http://www.crid.or.cr/CD/CD_hospitales_Seguros/casos-estudio.htmlGoogle Scholar
Chamlee-Wright, E., and Storr, V. H. (2011). Social capital as collective narratives and post-disaster community recovery. Sociology Review 59, 266282. doi:10.1111/j.1467-954X.2011.02008.xGoogle Scholar
Cheng, D. S., Campbell, M., Li, Q., Li, G., Auld, H., Day, H., Pengelly, D., Gingrich, S., Klaassen, J., MacIver, D., Comer, N., Mao, Y., Thompson, W., and Lin, H. (2010). Differential and combined impacts of extreme temperatures and air pollution on human mortality in south-central Canada. Part II: Future estimates. Air Quality and Atmospheric Health 2008(1), 223235.Google Scholar
Chung, W. M., Buseman, C. M., Joyner, S. N., Hughes, S. M., Fomby, T. B., Luby, J. P., and Haley, R. W. (2013). The 2012 West Nile encephalitis epidemic in Dallas, Texas. JAMA 310(3), 297307.Google Scholar
City of Toronto. (2014). Resilient city: Preparing for a changing climate. Accessed January 14, 2015: http://www.toronto.ca/legdocs/mmis/2014/pe/bgrd/backgroundfile-70623.pdfGoogle Scholar
Colón-González, F. J., Fezzi, C., Lake, I. R., and Hunter, P. R. (2013). The effects of weather and climate change on dengue. PLoS Neglected Tropical Diseases 7(11), e2503. doi:10.1371/journal.pntd.0002503Google Scholar
Confalonieri, U., Barata, M. M. L., and Marinho, D. (2014). Vulnerabilidade Climática no Brasil. In Chang, M. et al. (eds.), Metodologias de Estudos de Vulnerabilidade à Mudança do Clima. Globais, Coletâneas Mudanças, Ed. Interciências. Volume 5. IVIG/COPPE-UFRJ.Google Scholar
Curriero, F. C., Patz, J. A., Rose, J. B., and Lele, S. (2001). The association between extreme precipitation and waterborne disease outbreaks in the United States, 1948–1994. American Journal of Public Health 91(8), 11941199.Google Scholar
De Sario, M., Katsouyanni, K., and Michelozzi, P. (2013). Climate change, extreme weather events, air pollution and respiratory health in Europe. European Respiratory Journal 42, 826843.Google Scholar
Delfino, R. J. (2002). Epidemiologic evidence for asthma and exposure to air toxics: Linkages between occupational, indoor, and community air pollution research. Environmental Health Perspectives 110(Suppl 4), 573589.CrossRefGoogle ScholarPubMed
Dennekamp, M., and Carey, M. (2010). Air quality and chronic disease: Why action on climate change is also good for health. New South Wales Public Health Bulletin 21(5–6), 115121. Accessed December 1, 2014: http://doi.org/10.1071/NB10026Google Scholar
Dodman, D., Mitlin, D., and. Rayos, C. J. (2010). Victims to victors, disasters to opportunities: Community driven response to climate change in the Philippines. International Development Planning Review 32(1), 126.Google Scholar
Ebi, K. (2011). Climate change and health risks: Assessing and responding to them through “adaptive management.” Health Affairs (Millwood) 30(5), 924930.Google Scholar
Ebi, K. L., Grambsch, A. E., Sussman, F. G., and Wilbanks, T. J. (2008). Effects of global change on human health. In Analyses of the Effects of Global Change on Human Health and Welfare and Human Systems. UNT Digital Library. Accessed November 30, 2014: http://digital.library.unt.edu/ark:/67531/metadc12033/citation/Google Scholar
Ebi, K. L., and McGregor, G. (2008). Climate change, tropospheric ozone and particulate matter, and health impacts. Environmental Health Perspectives 116(11), 14491455. Accessed June 8, 2015: http://doi.org/10.1289/ehp.11463Google Scholar
Ebi, K. L., and Rocklov, J. (2014). Climate change and health modelling: Horses for courses. Global Health Action 7, 24154. Accessed September 28, 2015: http://dx.doi.org/10.3402/gha.v7.24154Google Scholar
European Centre for Disease Prevention and Control (ECDC). (2011). Climate Change and Communicable Diseases in the EU Member States: A Handbook for National Vulnerability, Impact and Adaptation Assessments. ECDC.Google Scholar
English, P. B., Sinclair, A. H., Ross, Z., Anderson, H., Boothe, V., Davis, C., Ebi, K., Kagey, B., Malecki, K., Schultz, R., and Simms, E. (2009). Environmental health indicators of climate change for the United States: Findings from the State Environmental Health Indicator Collaborative. Environmental Health Perspective 117, 16731681.Google Scholar
FAO. (2011). Global food losses and food waste. Accessed December 1, 2014: http://www.fao.org/fileadmin/user_upload/sustainability/pdf/Global_Food_Losses_and_Food_Waste.pdfGoogle Scholar
FAO. (2014). Growing Greener Cities in Latin America and the Caribbean. A FAO Report on Urban and Peri-urban Agriculture in the Region.Google Scholar
Fleck, F. (2014). Bringing air pollution into the climate change equation. Bulletin of the World Health Organization 92, 553554.Google Scholar
Freitas, C. M., Silva, M. E., and Osorio-de-Castro, C. G. S. (2014). A redução dos riscos de desastres naturais como desafio para a saúde coletiva. Ciência e Saúde Coletiva (Impresso) V. 19, 36283628Google Scholar
Friel, S., Dangour, A. D., Garnett, T., Lock, K., Chalabi, Z., Roberts, I., and McMichael, A. J. (2009). Health and Climate Change 4 Public health benefits of strategies to reduce greenhouse-gas emissions: Food and agriculture. Nutrition. doi:10.1016/S0140-6736(09)61753-0Google Scholar
Frumkin, H., Hess, J., Luber, G., Malilay, J., and McGeehin, M. (2008). Climate change: The public health response. American Journal of Public Health 98(3), 435445.Google Scholar
Frumkin, H., McMichael, A. J., and Hess, J. J. (2008). Climate change and the health of the public. American Journal of Preventive Medicine 35(5), 401402. Accessed August 26, 2014: http://doi.org/10.1016/j.amepre.2008.08.031Google Scholar
Fussell, E., and Lowe, S. R. (2014). The impact of housing displacement on the mental health of low-income parents after Hurricane Katrina. Social Science and Medicine 113, 137144. doi:10.1016/j.socscimed.2014.05.025Google Scholar
Ghebreyesus, T. A., Tadesse, Z., Jima, D., Bekele, E., Mihretie, A., Yihdego, Y. Y., Dinku, T., Connor, S. J., and Rogers, D. P. (2009). Using climate information in the health sector. Field Actions Science Reports, Vol. 2. Accessed July 19, 2014: http://factsreports.revues.org/178Google Scholar
Greenwood, M. (2007). Stakeholder engagement: Beyond the myth of corporate responsibility. Journal of Business Ethics 74, 315327.Google Scholar
Haines, A., McMichael, A. J., Smith, K. R., Roberts, I., Woodcock, J., Markandya, A., and Wilkinson, P. (2009). Public health benefits of strategies to reduce greenhouse-gas emissions: Overview and implications for policy makers. The Lancet 374(9707), 21042114. doi:10.1016/S0140-6736(09)61759-1.Google Scholar
Harlan, S. L., and Ruddell, D. M. (2011). Climate change and health in cities: Impacts of heat and air pollution and potential co-benefits from mitigation and adaptation. Current Opinions in Environmental Sustainability 3, 126134.Google Scholar
Health Canada (2011). Adapting to Extreme Heat Events: Guidelines of Assessing Health Vulnerability. Health Canada. Accessed November 18, 2015: www.healthcanada.gc.caGoogle Scholar
Heltberg, R., Siegel, P. B., and Jorgensen, S. L. (2009). Addressing human vulnerability to climate change: Toward a ‘no-regrets’ approach. Global Environmental Change 19, 8999.Google Scholar
Hess, J. J., McDowell, J. Z., and Luber, G. (2012). Integrating climate change adaptation into public health practice: Using adaptive management to increase adaptive capacity and build resilience. Environmental Health Perspectives 120, 171179.Google Scholar
Hohnen, P. (2007). Corporate Social Responsibility: An Implementation Guide for Business. International Institute for Sustainable Development, Canada. Accessed January 9, 2016: http://www.iisd.org/pdf/2007/csr_guide.pdfGoogle Scholar
Humphreys, G. (2014). Reframing climate change as a health issue. Bulletin of the World Health Organization 92, 551552.Google Scholar
Intergovernmental Panel on Climate Change (IPCC). (2007). Climate Change 2007: 2.3.2 Stakeholder involvement in Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, Parry, M. L., Canziani, O. F., Palutikof, J. P., der Linden, P. J. and Hanson, C. E. (eds.). Cambridge University Press.Google Scholar
Intergovernmental Panel on Climate Change (IPCC). (2012). Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation. A Special Report of Working Groups I and II of the Intergovernmental Panel on Climate Change, Field, C. B., Barros, V., Stocker, T. F., Qin, D., Dokken, D. J., Ebi, K. L., Mastrandrea, M. D., Mach, K. J., Plattner, G. -K. Allen, S. K., Tignor, M., and Midgley, P. M. (eds.). Cambridge University Press.Google Scholar
Intergovernmental Panel on Climate Change (IPCC). (2014). Climate Change 2014: Impacts, Adaptation, and Vulnerability, Summaries, Frequently Asked Questions, and Cross-Chapter Boxes. A Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Field, C.B., Barros, V. R., Dokken, D. J., Mach, J. K., Mastrandrea, M. D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.). World Meteorological Organization (in Arabic, Chinese, English, French, Russian, and Spanish). Accessed January 21, 2016: http://ipcc-wg2.gov/AR5/images/uploads/WGIIAR5-IntegrationBrochure_FINAL.pdfGoogle Scholar
Jaakkola, J. J. K., Hwang, B. F., and Jaakkola, N. (2005). Home dampness and molds, parental atopy, and asthma in childhood: A six-year population-based cohort study. Environmental Health Perspectives 113(3), 357361.Google Scholar
Jacob, D. J., and Winner, D. A. (2009). Effect of climate change on air quality. Atmospheric Environment 43(1), 5163. Accessed March 2, 2016: http://doi.org/10.1016/j.atmosenv.2008.09.051CrossRefGoogle Scholar
Jacobson, L. da S. V., Hacon, S. de S., Castro, H. A., Ignotti, E., Artaxo, P., Saldiva, P. H. N., and de Leon, A. C. M. P. (2014). Acute effects of particulate matter and black carbon from seasonal fires on peak expiratory flow of schoolchildren in the Brazilian Amazon. PloS One 9 (8), e104177. Accessed February 9, 2015: http://doi.org/10.1371/journal.pone.0104177Google Scholar
Kampa, M., and Castanas, E. (2008). Human health effects of air pollution. Environmental Pollution (Barking, Essex: 1987) 151(2), 362367. Accessed November 30, 2014: http://doi.org/10.1016/j.envpol.2007.06.012Google Scholar
Kates, R. W., Travis, W. R., et al. (2012). Transformational adaptation when incremental adaptations to climate change are insufficient. Proceedings of the National Academy of Sciences 109(19), 71567161.Google Scholar
Kelly-Hope, L. A., Hemingway, J., and McKenzie, F. E. (2009). Environmental factors associated with the malaria vectors Anopheles gambiae and Anopheles funestus in Kenya. Malaria Journal 8(268), 18.Google Scholar
KEMA, Inc. (2012). A guide to developing a climate action plan using regionally integrated climate action plan suite. City/County Association of Governments of San Mateo County, California, USA. Accessed October 9, 2014: http://www.smcenergywatch.com/sites/default/files/RICAPS_Users%20Guide_v1.pdfGoogle Scholar
Kinney, P. L. (2008). Climate Change, Air Quality, and Human Health. American Journal of Preventive Medicine 35(5), 459467. Accessed October 18, 2014: http://doi.org/10.1016/j.amepre.2008.08.025Google Scholar
Kinney, P. L., Schwartz, J., Pascal, M., Petkova, E., Le Tertre, A., Medina, S., and Vautard, R. Winter seasons mortality: Will climate warming bring benefits? Environmental Research Letters 10(2015), 064016. doi:10.1088/1748-9326/10/6/064016.Google Scholar
Knowlton, K., Kulkarni, S. P., Azhar, G. S., Mavalankar, D., Jaiswal, A., Connolly, M., Nori, A. -Sarma, Rajiva, A., Dutta, P., Deol, B., Sanchez, L., Khosla, R., Webster, P. J., Toma, V. E., Sheffield, P., Hess, J. J., the Ahmedabad Heat and Climate Study Group (2014). Development and Implementation of South Asia’s First Heat-Health Action Plan in Ahmedabad (Gujarat, India). International Journal of Environmental Research and Public Health 11, 34733492. doi:10.3390/ijerph110403473Google Scholar
Knowlton, K., Rotkin, M. Ellman, King, G., Margolis, H. G., Smith, D., Solomon, G., English, P. (2009). The 2006 California heat wave: Impacts on hospitalizations and emergency department visits. Environmental Health Perspectives 117(1), 6167. Accessed February 9, 2015: http://doi.org/10.1289/ehp.11594Google Scholar
Lane, K., Charles-Guzman, K., Wheeler, K., Abid, Z., Graber, N., and Matte, T. (2013). Health effects of coastal storms and flooding in urban areas: A review and vulnerability assessment. Journal of Environmental and Public Health. Article ID 913064.Google Scholar
Lesnikowski, A. C., Ford, J. D., Berrang-Ford, L., Barrera, M., Berrz, P., Henderson, J., and Hezmann, S. J. (2013). National-level factors affecting planned, public adaptation to health impacts of climate change. Global Environmental Change 23(5), 11531163Google Scholar
Lim, S. S., Vos, T., Flaxman, A. D., Danaei, G., Shibuya, K., Adair-Rohani, H., and Andrews, K. G. (2012). A comparative risk assessment of burden of disease and injury attributable to 67 risk factors and risk factor clusters in 21 regions, 1990–2010: A systematic analysis for the Global Burden of Disease Study 2010. The Lancet 380(9859), 22242260. Accessed November 30, 2014: http://doi.org/10.1016/S0140-6736(12)61766-8Google Scholar
Lin, S., Fletcher, B. A., Luo, M., Chinery, R., and Hwang, S. -A. (2011). Health impact in New York City during the Northeastern blackout of 2003. Public Health Reports (Washington, D.C.: 1974) 126(3), 384393.Google Scholar
Lin, S., Luo, M., Walker, R. J., Liu, X., Hwang, S. -A., and Chinery, R. (2009). Extreme high temperatures and hospital admissions for respiratory and cardiovascular diseases. Epidemiology 20(5), 738746. Accessed October 9, 2014: http://doi.org/10.1097/EDE.0b013e3181ad5522Google Scholar
Littell, J. (2010). Engaging stakeholders in climate change adaptation. CAKE. Accessed October 18, 2014: http://www.cakex.org/virtual-library/engaging-stakeholders-climate-change-adaptationGoogle Scholar
Lo, E., and Levetin, E. (2007). Influence of meteorological conditions on early spring pollen in the Tulsa atmosphere from 1987–2006. Journal of Allergy and Clinical Immunology 119 (1), S101. Accessed June 15, 2015: http://doi.org/10.1016/j.jaci.2006.11.612Google Scholar
McMichael, A. J. (2001). Global environmental change as “risk factor”: Can epidemiology cope? American Journal of Public Health 91(8), 11721174.Google Scholar
McMichael, A. J., Wilkinson, P., Kovats, R. S., Pattenden, S., Hajat, S., Armstrong, B., and Nikiforov, B. (2008). International study of temperature, heat and urban mortality: The “ISOTHURM” project. International Journal of Epidemiology 37(5), 11211131. Accessed May 14, 2014: http://doi.org/10.1093/ije/dyn086Google Scholar
Medlock, J. M., and Vaux, A. G. C. (2011). Assessing the possible implications of wetland expansion and management on mosquitoes in Britain. European Mosquito Bulletin 29, 3865.Google Scholar
Minero, F. J. G., Candau, P., Morales, J., and Tomas, C. (1998). Forecasting olive crop production based on ten consecutive years of monitoring airborne pollen in Andalusia (southern Spain). Agriculture Ecosystems & Environment 69(3), 201215. http://doi.org/10.1016/S0167-8809(98)00105-4Google Scholar
Morrow, G., and Bowen, K. (2014). Accounting for health in climate change policies: A case study in Fiji. Global Health Action 7, 23550. Accessed June 25, 2015: http://dx.doi.org/10.3402/gha.v7.23550Google Scholar
Moser, S. C., and Ekstrom, J. A. (2010). A framework to diagnose barriers to climate change adaptation. Proceedings of the National Academy of Sciences 107(51), 2202622031.Google Scholar
Mueller, S. F., and Mallard, J. W. (2011). Contributions of natural emissions to ozone and PM2.5 as simulated by the Community Multiscale Air Quality (CMAQ) model. Environmental Science & Technology 45(11), 48174823. Accessed December 20, 2014: http://doi.org/10.1021/es103645 mGoogle Scholar
Murray, C. J. L., Rosenfeld, L. C., Lim, S. S., Andrews, K. G., Foreman, K. J., Haring, D., Fullman, N., Naghavi, M., Lozano, R., and Lopez, A. D. (2012). Global malaria mortality between 1980 and 2010: A systematic analysis. The Lancet 379, 413431Google Scholar
Mustelin, J., Kuruppu, N., Kramer, A. M., Daron, J., Bruin, K., and Noriega, A. G. (2013). Climate adaptation research for the next generation. Climate and Development 5(3), 189193.Google Scholar
National Research Council (NRC). (2012). Climate and Social Stress: Implications for Security Analysis. Committee on Assessing the Impacts of Climate Change on Social and Political Stresses, Steinbruner, J. D., Stern, P. C. and Husbands, J. L. (eds.), Board on Environmental Change and Society, Division of Behavioral and Social Sciences and Education (253). The National Academies Press.Google Scholar
Obermaier, M. (2013). City-Level Climate Change Adaptation Strategies: The Case of Quito, Ecuador. ELLA Case Study Brief. Practical Action Peru, Lima.Google Scholar
Ogden, N. H., St-Onge, L., Barker, I. K., Brazeau, S., Bigras, M. -Poulin, Charron, D. F., and Thompson, R. A. (2008). Risk maps for range expansion of the Lyme disease vector, Ixodes scapularis, in Canada now and with climate change. International Journal of Health Geographics 7, 24. Accessed January 23, 2016: http://doi.org/10.1186/1476-072X-7-24Google Scholar
Ogden, N. H., Bouchard, C., Kurtenbach, K., Margos, G., Lindsay, L. R., Trudel, L., and Milord, F. (2010). Active and passive surveillance and phylogenetic analysis of Borrelia burgdorferi elucidate the process of Lyme disease risk emergence in Canada. Environmental Health Perspectives 118(7), 909914. Accessed April 28, 2014: http://doi.org/10.1289/ehp.0901766Google Scholar
O’Haire, C., McPheeters, M., Nakamoto, E. K., LaBrant, L., Most, C., Lee, K., Graham, E., Cottrell, E., and Guise, J-M. (2011). Methods for engaging stakeholders to identify and prioritize future research needs. Methods Future Research Needs Report No. 4. AHRQ Publication No. 11-EHC044-EF. Agency for Healthcare Research and Quality. June 2011. Accessed January 27, 2016: www.effectivehealthcare.ahrq.gov/reports/final.cfm.Google Scholar
OMS. (2012). Atlas of Health and Climate. World Health Organization.Google Scholar
Omumbo, J., Lyon, B., Waweru, S., Connor, S., and Thomson, M. (2011). Raised temperatures over the Kericho tea estates: Revisiting the climate in the East African highlands malaria debate. Malaria Journal 10(12).CrossRefGoogle ScholarPubMed
O’Neill, M. S., Zanobetti, A., and Schwartz, J. (2005). Disparities by race in heat-related mortality in four U.S. cities: The role of air conditioning prevalence. Journal of Urban Health: Bulletin of the New York Academy of Medicine 82(2), 191197. Accessed December 11, 2014: http://doi.org/10.1093/jurban/jti043Google Scholar
Pan American Health Organization (PAHO). (2014). Plan of action for the prevention of obesity in children and adolescents. Pan American Health Organization and World Bank. Accessed August 10, 2015: http://www.paho.org/hq/index.php?option=com_docman&task=doc_view&Itemid=270&gid=28890&lang=enGoogle Scholar
Pan American Health Organization (PAHO). (2009). What is the Hospital Safety Index?. Accessed July 1, 2014: http://www1.paho.org/english/dd/ped/SafeHospitalsChecklist.htmGoogle Scholar
Panic, M., and Ford, J. D. (2013). A review of national-level adaptation planning with regards to the risks posed by climate change on infectious diseases in 14 OECD nations. International Journal of Environmental Research and Public Health 10, 70837109.Google Scholar
Paterson, J. A., and Ford, J. D., et al. (2012). Adaptation to climate change in the Ontario public health sector. BMC Public Health 12(1), 452.Google Scholar
Patz, J. A., Frumkin, H., Holloway, T., Vimont, D. J., and Haines, A. (2014). Climate change challenges and opportunities for global health. JAMA 312(15), 15651580. doi:10.1001/jama.2014.13186Google Scholar
Patz, J. A., Vavrus, S. J., Uejio, C. K., and McLellan, S. L. (2008). Climate change and waterborne disease risk in the Great Lakes region of the U.S. American Journal of Preventive Medicine 35(5), 451458. Accessed April 11, 2014: http://doi.org/10.1016/j.amepre.2008.08.026Google Scholar
Pereira, C. A. R., and Barata, M. M. L. (2014a). Organização dos serviços urbanos de saúde frente à mudança do clima e ao risco de desastres na América Latina. Saude em Debate 38, 624634.Google Scholar
Pereira, C. A. R., Barata, M. M. L., Hoelz, M. P. C., Medeiros, V. N. L. O., Marincola, F. C. V., Neto, C. C., Marinho, D. P., Oliveira, T. V. S., Trigo, A. M., and Medeiros, K. (2014b). Economic evaluation of cases of dengue fever attributed to the disaster of 2011 in Nova Friburgo, Brasil. Ciênc. saúde Coletiva 19(9), 36933704.Google Scholar
Pereira, C. A. R., Barata, M. M. L., and Trigo, A. M. (2014c). Social cost of leptospirosis cases attributed to the 2011 disaster striking Nova Friburgo, Brazil. International Journal of Environmental Research and Public Health 11, 41404157.Google Scholar
Pfister, G. G., Wiedinmyer, C., and Emmons, L. K. (2008). Impacts of the fall 2007 California wildfires on surface ozone: Integrating local observations with global model simulations. Geophysical Research Letters 35(19), L19814. Accessed October 17, 2014: http://doi.org/10.1029/2008GL034747Google Scholar
Prain, G., and Dubbeling, M. (2010). Case Studies of the Cities of Accra, Nairobi, Lima, and Bangalore Undertaken. RUAF Foundation.Google Scholar
Prain, G., and Dubbeling, M. (2010). Case Studies of the Cities of Accra, Nairobi, Lima, and Bangalore Undertaken. RUAF Foundation.Google Scholar
Pope, C. A. 3rd, Burnett., R. T., Thun, M. J., Calle, E. E., Krewski, D., Ito, K., and Thurston, G. D. (2002). Lung cancer, cardiopulmonary mortality, and long-term exposure to fine particulate air pollution. Journal of the American Medical Association 287(9), 11321141.Google Scholar
Porter, J. R., Xie, L., Challinor, A. J., Cochrane, K., Howden, S. M., Iqbal, M. M., Lobell, D. B., and Travasso, M. I. (2014). Food security and food production systems. In Field, C. B., Barros, V. R., Dokken, D. J., Mach, K. J., Mastrandrea, M. D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.), Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel of Climate Change (485533). Cambridge University Press.Google Scholar
Reid, C. E., O’Neill, M. S., Gronlund, C. J., Brines, S.J, Brown, D.G, Diey-Roux, A.V, and Schwarty, J. (2009). Mapping community determinants of heat vulnerability. Environmental Health Perspectives 117, 17301736.Google Scholar
Reiss, N. M., and Kostic, S. R. (1976). Pollen season severity and meteorologic parameters in central New Jersey. Journal of Allergy and Clinical Immunology 57(6), 609614.Google Scholar
Rekow, L. (2015). Fighting insecurity: Experiments in urban agriculture in the favelas of Rio de Janeiro. Field Actions Science Reports, 8.Google Scholar
Revi, A., Satterthwaite, D. E., Aragón-Durand, F., Corfee-Morlot, J., Kiunsi, R. B. R., Pelling, M., Roberts, D. C., and Solecki, W. (2014). Urban areas. In Field, C. B., Barros, V. R., Dokken, D. J., Mach, K. J., Mastrandrea, M. D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.), Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (535612). Cambridge University Press.Google Scholar
Rittmaster, R., Adamowicz, W. L., Amiro, B., and Pelletier, R. T. (2006). Economic analysis of health effects from forest fires. Canadian Journal of Forest Research 36(4), 868877. Accessed September 9, 2014: http://doi.org/10.1139/X05-293Google Scholar
Romero-Lankao, P., Hughes, S., Rosas, A. -Huerta, Borquez, R., and Gnatz, D. M. (2013a). Institutional capacity for climate change responses: An examination of construction and pathways in Mexico City and Santiago. Environmental Planning and Government Policy 31, 785805.Google Scholar
Romero-Lankao, P., Qin, H., and Borbor-Cordova, M. (2013). Exploration of health risks related to air pollution and temperature in three Latin American cities. Social Science and Medicine 83, 110118.Google Scholar
Romero-Lankao, P., Qin, H., and Dickinson, K. (2012). Urban vulnerability to temperature-related hazards: A meta-analysis and meta-knowledge approach. Global Environmental Change 12, 670683.Google Scholar
Rose, J. B., Epstein, P. R., Lipp, E. K., Sherman, B. H., Bernard, S. M., and Patz, J. A. (2001). Climate variability and change in the United States: Potential impacts on water- and foodborne diseases caused by microbiologic agents. Environmental Health Perspectives 109(Suppl 2), 211221.Google Scholar
Rosenzweig, C., Solecki, W., Hammer, S. A., and Mehrotra, S. (2010). Cities lead the way in climate-change action. Nature 467, 909911.Google Scholar
Rosenzweig, C., and Solecki, W. (2010). Introduction to climate change adaptation in New York City: Building a risk management response. Annals of the New York Academy of Sciences 1196(1), 1317.Google Scholar
Rosenzweig, C., Solecki, W. D., and Slosberg, R. B. (2006). Mitigating New York City’s Heat Island with Urban Forestry, Living Roofs, and Light Surfaces. New York City Regional Heat Island Initiative, Final Report 06–06. New York State Energy Research and Development Authority.Google Scholar
Ruckart, P. Z., Orr, M. F., Lanier, K., and Koehler, A. (2008). Hazardous substances releases associated with Hurricanes Katrina and Rita in industrial settings, Louisiana and Texas. Journal of Hazardous Materials 159(1), 5357.Google Scholar
Rydin, Y., Bleahu, A., Davies, M., Dávila, J. D., Friel, S., Grandis, G., Groce, N., Hallal, P. C., Hamilton, I., Howden-Chapman, P., Lai, K-M., Lim, C., Martins, J., Osrin, D., Ridley, I., Scott, I., Taylor, M., Wilkinson, P., and Wilson, J. (2012). Shaping cities for health: Complexity and the planning of urban environments in the 21st century. The Lancet 379, 20792108.Google Scholar
Samet, J.M, Zeger, S.L., Dominici, F., Curriero, F., Coursac, I., Dockery, D. W., Schwarty, J., and Yanobetti, A. (2000). The National Morbidity, Mortality, and Air Pollution Study Part II: Morbidity and mortality from air pollution in the United States. Accessed August 6, 2015: http://www.cabq.gov/airquality/documents/pdf/samet2.pdfGoogle Scholar
Sastry, N., and Gregory, J. (2013). The effect of Hurricane Katrina on the prevalence of health impairments and disability among adults in New Orleans: Differences by age, race, and sex. Social Science and Medicine 80, 121129.Google Scholar
Satterthwaite, D., Huq, S., Reid, H., Pelling, M., and Romero-Lankao, P. (2008). Adapting to Climate Change in Urban Areas: The Possibilities and Constraints in Low- and Middle-Income Nations. IIED.Google Scholar
Schmeer, K. (1999). Guidelines for Conducting a Stakeholder Analysis. Partnerships for Health Reform, Abt Associates Inc for the World Health Organization.Google Scholar
Schwartz, J. (1994). Air pollution and daily mortality: A review and meta-analysis. Environmental Research 4, 3652Google Scholar
Semenza, J. C., Herbst, S., Rechenburg, A., Suk, J. E., Höser, C., Schreiber, C., and Kistemann, T. (2012). Climate change impact assessment of food- and waterborne diseases. Critical Reviews in Environmental Science and Technology 42(8), 857890. Accessed December 11, 2014: http://doi.org/10.1080/10643389.2010.534706Google Scholar
Semenza, J. C., Sudre, B., Oni, T., Suk, J. E., and Giesecke, J. (2013). Linking environmental drivers to infectious diseases: The European Environment and Epidemiology Network. PLoS Neglected Tropical Diseases 7 (7), e2323.Google Scholar
Sena, A. L., Barcellos, C. L., Freitas, C., and Corvalan, C. (2014). Managing the health impacts of drought in Brazil. International Journal of Environmental Research and Public Health 11, 1073710751.Google Scholar
Sheffield, P. E., Knowlton, K., Carr, J. L., and Kinney, P. L. (2011). Modeling of regional climate change effects on ground-level ozone and childhood asthma. American Journal of Preventive Medicine 41(3), 251257; quiz A3. Accessed February 27, 2016: http://doi.org/10.1016/j.amepre.2011.04.017Google Scholar
Silva, C. B. P., Saldiva, P. H. N., Lourenço, L. F. A., Silva, F. R., and Miraglia, S. G. K. (2012). Evaluation of the air quality benefits of the subway system in São Paulo, Brazil. Journal of Environmental Management 101, 191196Google Scholar
Smith, K. R., Jerrett, M., Anderson, H. R., Burnett, R. T., Stone, V., Derwent, R., and Thurston, G. (2009). Health and Climate Change 5 Public health benefits of strategies to reduce greenhouse-gas emissions: Health implications of short-lived greenhouse pollutants. The Lancet 374(9707), 20912103. doi:10.1016/S0140-6736(09)61716-5Google Scholar
Smith, K. R., Woodward, A., Campbell-Lendrum, D., Chadee, D. D., Honda, Y., Liu, Q., Olwoch, J. M., Revich, B., and Sauerborn, R. (2014). Human health: Impacts, adaptation, and co-benefits. In Field, C. B., Barros, V. R., Dokken, D. J., Mach, K. J., Mastrandrea, M. D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.), Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (709754). Cambridge University Press.Google Scholar
Solecki, W., Patrick, L., Brady, M., Grady, K., and Maroko, A. (2010). Climate protection levels: Incorporating climate change into design and performance standards. New York City Panel on Climate Change. Annals of the New York Academy of Sciences 1196(1), 293352.Google Scholar
Stott, P., and Walton, P. (2013). Attribution of climate-related events: Understanding stakeholder needs. Weather 68(10), 274279.Google Scholar
Sudhinaraset, M., Ingram, M., Lofthouse, H. K., and Montagu, D. (2013). What is the role of informal healthcare providers in developing countries? A systematic review. PLoS ONE 8, e54978.Google Scholar
Toronto Public Health (TPH). (2011). Protecting vulnerable people from the health impacts of extreme heat. Accessed August 13, 2015: http://app.toronto.ca/tmmis/viewAgendaItemHistory.do?item=2011.HL6.3Google Scholar
Toronto Public Health (TPH). (2014a). Path to healthier air. Accessed November 14, 2015: http://app.toronto.ca/tmmis/viewAgendaItemHistory.do?item=2014.HL30.1Google Scholar
Toronto Public Health (TPH). (2014b). Active city: Designing for health. Accessed November 9, 2015: http://app.toronto.ca/tmmis/viewAgendaItemHistory.do?item=2014.HL31.1Google Scholar
Tsai, D. -H., Wang, J. -L., Wang, C. -H., and Chan, C. -C. (2008). A study of ground-level ozone pollution, ozone precursors and subtropical meteorological conditions in central Taiwan. Journal of Environmental Monitoring: JEM 10(1), 109118. Accessed September 7, 2014: http://doi.org/10.1039/b714479bGoogle Scholar
U.S. Energy Information Administration. (2007). Energy characteristics and energy consumed in large hospital buildings in the United States in 2007. Accessed June 12, 2014: http://www.eia.gov/consumption/commercial/reports/2007/large-hospital.cfmGoogle Scholar
U.S. Environmental Protection Agency (EPA) National Center for Environmental Assessment, I. O. (2008). A review of the impact of climate variability and change on aeroallergens and their associated effects (final report). Accessed July 23, 2015: http://cfpub.epa.gov/ncea/cfm/recordisplay.cfm?deid=190306Google Scholar
U.S. Global Change Research Program. (2014). National Climate Assessment. Accessed September 22, 2015: http://nca2014.globalchange.gov/node/1961Google Scholar
USGCRP. (2008). Analyses of the Effects of Global Change on Human Health and Welfare and Human Systems (SAP 4.6). Washington, D.C.: U.S. Environmental Protection Agency.Google Scholar
Vardoulakis, S., Dear, K., Hajat, S., Heaviside, C., Eggen, B., and McMichael, A. J. (2014). Comparative assessment of the effects of climate change on heat and cold related mortality in cities of United Kingdom and Australia. Environmental Health Perspectives 122(12), 12851292.Google Scholar
Villeneuve, P. J., Doiron, M. -S., Stieb, D., Dales, R., Burnett, R. T., and Dugandzic, R. (2006). Is outdoor air pollution associated with physician visits for allergic rhinitis among the elderly in Toronto, Canada? Allergy 61(6), 750758. Accessed March 16, 2014: http://doi.org/10.1111/j.1398-9995.2006.01070.xGoogle Scholar
Walters, V., and Gaillard, J. C. (2014). Disaster risk at the margins: Homelessness, vulnerability and hazards. Habitat International 44, 211219.Google Scholar
Weible, C. M. (2007). An advocacy coalition framework approach to stakeholder analysis: Understanding the political context of California Marine Protected Area Policy. Journal of Public Administration Research and Theory 17, 95117.Google Scholar
Weisler, R. H., Barbee, J. G., and Townsend, M. H. (2006). Mental health and recovery in the Gulf Coast after Hurricanes Katrina and Rita. JAMA 296(5), 585588.Google Scholar
Westerling, A. L. (2006). Warming and earlier spring increase western U.S. forest wildfire activity. Science 313(5789), 940943. Accessed January 6, 2015: http://doi.org/10.1126/science.1128834Google Scholar
Wheeler, K., Lane, K., Walters, S., and Matte, T. (2013). Heat illness and deaths – New York City, 2000–2011. (Cover story). MMWR: Morbidity & Mortality Weekly Report 62(31), 617621.Google Scholar
White-Newsome, J. L., McCormick, A., Sampson, N., Buxton, M. A., O’Neill, M. S., Gronlund, C. J., Catalano, L., Conlon, K., and Parker, E. A. (2014). Strategies to reduce the harmful effects of extreme heat events: A four-city study. International Journal of Environmental Research and Public Health 11, 19601988.Google Scholar
Wolf, T., Sanchez Martinez, G., Cheong, H. -K., Williams, E., and Menne, B. (2014). Protecting health from climate change in the WHO European region. International Journal of Environmental Research and Public Health 11, 62656280.Google Scholar
Woodcock, J., Edwards, P., Tonne, C., Armstrong, B. G., Ashiru, O., Banister, D., Beevers, S., Chalabi, Y., Chowdhury, Y., Cohen, A., Franco, O.H, Haines, A., Hickman, R., Lindsay, G., Mittal, I., Mohan, D., Tiwari, G., Woodward, A., and Roberts, I. (2009). Public health benefits of strategies to reduce greenhouse-gas emissions: Urban land transport. The Lancet 374(9705), 19301943. doi:10.1016/S0140-736(09)61714-1.Google Scholar
World Bank. (2016). Gini index (World Bank estimate), Development Research Group. Accessed March 16, 2017: http://data.worldbank.org/indicator/SI.POV.GINIGoogle Scholar
World Health Organization (WHO). (1946). Preamble to the Constitution of the World Health Organization as adopted by the International Health Conference, New York, 19–22 June 1946; signed on 22 July 1946 by the representatives of 61 States (Official Records of the World Health Organization, no. 2, p. 100) and entered into force on 7 April 1948. Accessed November 11, 2015: http://www.who.int/about/definition/en/print.htmlGoogle Scholar
World Health Organization (WHO). (2005). Strengthened health systems save more lives: An insight into WHO’s European health systems’ strategy. The World Health Organization Regional Office for Europe, Denmark. Accessed July 3, 2014: http://www.euro.who.int/__data/assets/pdf_file/0011/78914/healthsys_savelives.pdfGoogle Scholar
World Health Organization (WHO). (2011). Protecting Health from Climate Change: Vulnerability And Adaptation Assessment. World Health Organization, 72.Google Scholar
Yates, R. (2014). Recycling fuel subsidies as health subsidies. Bulletin of the World Health Organization 92, 547547A.Google Scholar
Ziska, L., Knowlton, K., Rogers, C., Dalan, D., Tierney, N., Elder, M. A., and Frenz, D. (2011). Recent warming by latitude associated with increased length of ragweed pollen season in central North America. Proceedings of the National Academy of Sciences of the United States of America 108(10), 42484251. Accessed August 1, 2014: http://doi.org/10.1073/pnas.1014107108.Google Scholar

Secondary Sources

Ahmedabad Municipal Corporation (AMC). (2013). Ahmedabad Heat Action Plan. Guide to Extreme Heat Planning in Ahmedabad, India. Accessed August 30, 2015: http://www.egovamc.com/downloads/healthcare/healthpdf/heat_action_plan.pdfGoogle Scholar
Ahmedabad Municipal Corporation (AMC). (2015). Ahmedabad Heat Action Plan. Guide to Extreme Heat Planning in Ahmedabad, India. Accessed December 27, 2014: http://www.ndma.gov.in/images/pdf/HAP2015.pdfGoogle Scholar
Ahmedabad Urban Development Authority (2016). Accessed January 29, 2017: http://www.auda.org.in/Content/about-us-42Google Scholar
Census Bureau of India (2011). Population Census 2011. Accessed February 4, 2016: http://www.census2011.co.in/Google Scholar
Government of India. (2011). Census of India. Registrar General & Census Commissioner, India, New Delhi. Accessed July 28, 2015: http://censusindia.gov.in/Google Scholar
Knowlton, K., Kulkarni, S. P., Azhar, G. S., Mavalankar, D., Jaiswal, A., Connolly, M., Nori-Sarma, A., Rajiva, A., Dutta, P., Deol, B., Sanchez, L., Khosla, R., Webster, P. J., Toma, V. E., Sheffield, P., and Hess, J. J., the Ahmedabad Heat and Climate Study Group (2014). Development and implementation of south Asia’s first heat-health action plan in Ahmedabad (Gujarat, India). International Journal of Environmental Research and Public Health 11, 34733492. doi:10.3390/ijerph110403473.Google Scholar
Kotkin, J. (2010). The world’s fastest growing cities. Forbes. Accessed October 28, 2015: http://www.forbes.com/2010/10/07/cities-china-chicago-opinions-columnists-joel-kotkin.html.Google Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
Smith, K. R., Woodward, A., Campbell-Lendrum, D., Chadee, D. D., Honda, Y., Liu, Q., Olwoch, J. M., Revich, B., and Sauerborn, R. (2014). Human health: Impacts, adaptation, and co-benefits. In Field, C. B., Barros, V. R., Dokken, D. J., Mach, K. J., Mastrandrea, M. D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.), Climate Change 2014: Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel of Climate Change (709754). Cambridge University Press.Google Scholar
Tran, K. V., Azhar, G. S., Nair, R., Knowlton, K., Jaiswal, A., Sheffield, P., Mavalankar, D., and Hess, J. (2013). A cross-sectional, randomized cluster sample survey of household vulnerability to extreme heat among slum dwellers in Ahmedabad, India. International Journal of Environmental Research and Public Health 10, 25152543. doi:10.3390/ijerph10062515.Google Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar
Instituto Brasileiro de Geografia e Estatística (IBGE). (2015). Population Census. Cidades/Rio de Janeiro/Nova Friburgo. Accessed January 25, 2016: http://cidades.ibge.gov.br/Google Scholar
Instituto Oswaldo Cruz-Fiocruz. (2013). Social Cost Estimate of Hydrological Disaster in Nova Friburgo (RJ) – Health Sector. IOC/Fiocruz,.Google Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
Pereira, C. A. R., Barata, M. M. L., and Trigo, A. M. (2014). Social cost of leptospirosis cases attributed to the 2011 disaster striking Nova Friburgo, Brazil. International Journal of Environmental Research and Public Health 11, 41404157.Google Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar
City of Windsor. (2013). Stay Cool Windsor-Essex Heat Alert and Response Plan. Accessed December 23, 2014: www.windsorfire.com/wp-content/uploads/2013/08/Heat-Alert-Response-Plan.pdfGoogle Scholar
Fouillet, A., Rey, G., Laurent, F., Pavillon, G., Bellec, S., Guihenneuc-Jouyaux, C., Clavel, J., Jougla, E., and Hémon, D. (2006). Excess mortality related to the August 2003 heat wave in France. International Archives of Occupational and Environmental Health 80(1), 1624.Google Scholar
Government of Canada. (2015). Population and dwelling counts, for Canada and census subdivisions (municipalities), 2011 and 2006 censuses. Accessed February 3, 2016: http://www12.statcan.gc.ca/census-recensement/2011/dp-pd/hlt-fst/pd-pl/Table-Tableau.cfm?LANG=Eng&T=301&S=3&O=DGoogle Scholar
IPCC. (2014). Summary for policymakers. In Field, C. B., Barros, V. R., Dokken, D. J., Mach, K. J., Mastrandrea, D., Bilir, T. E., Chatterjee, M., Ebi, K. L., Estrada, Y. O., Genova, R. C., Girma, B., Kissel, E. S., Levy, A. N., MacCracken, S., Mastrandrea, P. R., and White, L. L. (eds.), Climate Change 2014. Impacts, Adaptation, and Vulnerability. Part A: Global and Sectoral Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change (132). Cambridge University Press.Google Scholar
Oke, T. R. (1997). Urban climates and global change. In Perry, A., and Thompson, R. (eds.), Applied Climatology: Principles and Practices. Routledge.Google Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
Robine, J., Cheung, S., Le Roy, S., Michel, J., and Herrmann, F. (2008). Death toll exceeded 70,000 in Europe during the summer of 2003. Comptes Rendus – Biologies 331(2), 171178Google Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar
Australian Bureau of Statistics (ABS). (2011a). Census of Population and Housing. Australian Bureau of Statistics, Canberra.Google Scholar
Australian Bureau of Statistics (ABS). (2011b.) Queensland Australian Statistical Geography Standard (ASGS) Edition 2011. Australian Bureau of Statistics, Canberra.Google Scholar
Huang, C., Barnett, A. G., Wang, X., and Tong, S. (2012). The impact of temperature on years of life lost in Brisbane, Australia. Nature Climate Change 2(4), 265270.Google Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar
Census Bureau of India (2011). Population Census 2011. Accessed February 24, 2015: http://www.census2011.co.in/Google Scholar
Dube, A., Ashrit, R., Ashish, A., Sharma, K., Iyengar, G.R., Rajagopal, E.N., and Basu, S. (2013). Performance of NCMRWF Forecast models in predicting the Uttarakhand Heavy Rainfall Event during 17–18 June 2013. National Centre for Medium Range Weather Forecasting, Ministry of Earth Sciences. Accessed February 3, 2016: http://www.ncmrwf.gov.in/KEDARNATH_REPORT_FINAL.pdfGoogle Scholar
Dube, A., Ashrit, R., Ashish, A., Sharma, K., Iyengar, G. R., Rajagopal, E. N., and Basu, S. (2014). Forecasting the heavy rainfall during Himalayan flooding-June 2013. Weather and Climate Extremes 4, 2234.Google Scholar
Indian Express. (2013). Uttarakhand yet to implement water management act. Accessed June 16, 2014: http://archive.indianexpress.com/news/uttarakhand-yet-to-implement-water-management-act/1147808/Google Scholar
Munich Re (2014). Natural catastrophes 2013: Analyses, assessments, positions. Topics Geo, 2013. Accessed June 9, 2015: http://www.munichre.com/site/corporate/get/documents_E1043212252/mr/assetpool.shared/Documents/5_Touch/_Publications/302-08121_en.pdfGoogle Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar
Hairong, W. (2016). An inspiring visit. Beijing Review 26, June 30. Accessed February 24, 2017: http://usa.bjreview.com/Arts/201606/t20160628_800060747.htmlGoogle Scholar
Peel, M. C., Finlayson, B. L., and McMahon, T. A. (2007). Updated world map of the Köppen-Geiger climate classification. Hydrology and Earth System Sciences Discussions 4(2), 462.Google Scholar
U.S. Green Building Council. (2010, updated 2014). LEED 2009 for Healthcare. USGBC, Washington, D.C. Accessed July 23, 2015: http://www.usgbc.org/sites/default/files/LEED%202009%20RS_HC_4–2014_cover.pdfGoogle Scholar
World Bank. (2017). 2016 GNI per capita, Atlas method (current US$). Accessed August 9, 2017: http://data.worldbank.org/indicator/NY.GNP.PCAP.CDGoogle Scholar

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