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Mosquito-borne diseases are expanding their range, and re-emerging in areas where they had subsided for decades. The extent to which climate change influences the transmission suitability and population at risk of mosquito-borne diseases across different altitudes and population densities has not be
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en investigated. The aim of this study was to quantify the extent to which climate change will influence the length of the transmission season and estimate the population at risk of mosquito-borne diseases in the future, given different population densities across an altitudinal gradient.
The Lancet Planetary Health Volume 5, ISSUE 7, e404-e414, July 01, 2021
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PNAS | March 4, 2014 | vol. 111 | no. 9
Malaria is an important disease that has a global distribution and significant health burden. The spatial limits of its distribution and seasonal activity are sensitive to climate factors, as well as the local capacity to control the disease. Malaria is also
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one of the few health outcomes that has been modeled by more than one research group and can therefore facilitate the first model intercomparison for health impacts under a future with climate change. We used bias-corrected temperature and rainfall simulations from the Coupled Model Intercomparison Project Phase 5 climate models to compare the metrics of five statistical and dynamical malaria impact models for three future time periods (2030s, 2050s, and 2080s). We evaluated three malaria outcome metrics at global and regional levels: climate suitability, additional population at risk and additional person-months at risk across the model outputs. The malaria projections were based on five different global climate models, each run under four emission scenarios (Representative Concentration Pathways, RCPs) and a single population projection. We also investigated the modeling uncertainty associated with future projections of populations at risk for malaria owing to climate change. Our findings show an overall global net increase in climate suitability and a net increase in the population at risk, but with large uncertainties. The model outputs indicate a net increase in the annual person-months at risk when comparing from RCP2.6 to RCP8.5 from the 2050s to the 2080s. The malaria outcome metrics were highly sensitive to the choice of malaria impact model, especially over the epidemic fringes of the malaria distribution.
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The Statistical Yearbook for Latin America and the Caribbean of ECLAC presents a set of basic statistics on the economic, sociodemographic and environmental situation of the region during a specific time period.
Establecimientos de salud resilientes al clima y ambientalmente sostenibles: orientaciones de la OMS
La finalidad de estas orientaciones es aumentar la capacidad de los establecimientos de salud para proteger y mejorar la salud de las comunidades destinatarias ante un clima inestable y cambiante;
y habilitarlos para que sean ambientalmente sostenibles, optimizando el uso de los recursos y reducien
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do al mínimo el vertido de desechos en el medio ambiente. Los establecimientos de salud resilientes al clima y ambientalmente sostenibles favorecen una atención de alta calidad
así como la accesibilidad de los servicios, y al ayudar a reducir los costos también garantizan una mejor asequibilidad. Por consiguiente, son un componente importante de la cobertura sanitaria universal (CSU).
El presente documento tiene por objeto:
Orientar a los profesionales que trabajan en el ámbito de la atención de salud a fin de que comprendan los riesgos sanitarios adicionales que entraña el cambio climático y se preparen eficazmente para afrontarlos.
Fortalecer la capacidad para llevar a cabo una vigilancia eficaz de las enfermedades relacionadas con el clima; y vigilar, prever y gestionar los riesgos para la salud asociados al cambio climático y adaptarse a ellos.
Guiar al personal de los establecimientos de salud para que trabaje con los sectores determinantes de la salud (en particular los de agua y saneamiento, energía, transporte, alimentación, planificación urbana y medio ambiente) a fin de que se prepare para afrontar los riesgos sanitarios adicionales que entraña el cambio climático mediante un enfoque de resiliencia, y promueva prácticas ambientalmente sostenibles en la prestación de los servicios.
Proporcionar al personal de los centros salud instrumentos que le ayuden a evaluar la resiliencia de los establecimientos ante las amenazas del cambio climático y su sostenibilidad ambiental a partir del uso adecuado de los recursos (en particular el agua y la energía y las adquisiciones sostenibles) y el vertido de desechos peligrosos (biológicos, químicos y radiológicos) en el medio circundante.
Promover medidas encaminadas al fortalecimiento constante y creciente de los establecimientos de salud y a garantizar que sigan siendo eficientes y responsivos para mejorar la salud y
contribuyan a reducir las inequidades y la vulnerabilidad en los entornos en que están implantados.
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RÉSUMÉ D’ORIENTATION
L’objectif des présentes orientations est de renforcer la capacité des établissements de santé à protéger et à améliorer la santé des communautés desservies face à un climat instable et changeant ; et de donner aux établissements de santé les moyens d’assur
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er leur durabilité environnementale, grâce à une meilleure utilisation des ressources et à une diminution du rejet de déchets dans l’environnement. En étant résilients au changement climatique et écologiquement viables, les établissements de santé peuvent offrir des soins de qualité et des services plus accessibles, et en contribuant à réduire les coûts des établissements, ils garantissent également la prestation de soins plus abordables. Ils représentent par conséquent un élément important de la couverture sanitaire universelle (CSU).
Le présent document a pour objectif de :
guider les professionnels travaillant dans des structures de soins de santé de manière à ce qu’ils comprennent les risques sanitaires supplémentaires liés au changement climatique et qu’ils s’y préparent efficacement ;
renforcer la capacité à exercer une surveillance efficace des maladies liées au climat ; et à suivre, anticiper, gérer les risques sanitaires associés au changement climatique et à s’y adapter ;
inciter les responsables des établissements de santé à collaborer avec les secteurs déterminants pour la santé (notamment l’eau et l’assainissement, l’énergie, les transports, l’alimentation, l’urbanisme, l’environnement) afin de se préparer aux risques sanitaires supplémentaires posés par le changement climatique grâce à l’adoption d’une approche de résilience, et à promouvoir des pratiques écologiquement durables dans la prestation des services ;
fournir des outils pour aider les responsables des établissements de santé à évaluer leur résilience face aux menaces liées au changement climatique et leur durabilité environnementale, sur la base de l’utilisation appropriée des ressources (en particulier l’eau et l’énergie et les achats durables), et du rejet de matières dangereuses (biologiques, chimiques, radiologiques) dans leur environnement ;
promouvoir des mesures visant à garantir que les établissements de santé soient constamment et de plus en plus solides et continuent d’être efficaces et réactifs pour améliorer la santé et contribuer à réduire les inégalités et la vulnérabilité dans leur contexte local.
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nt. J. Environ. Res. Public Health 2014, 11(12), 13097-13116; https://doi.org/10.3390/ijerph111213097
Climate change will increase the frequency and magnitude of extreme weather events and create risks that will impact health care facilities. Health care facilities will need to assess climate chang
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e risks and adopt adaptive management strategies to be resilient, but guidance tools are lacking. In this study, a toolkit was developed for health care facility officials to assess the resiliency of their facility to climate change impacts. A mixed methods approach was used to develop climate change resiliency indicators to inform the development of the toolkit. The toolkit consists of a checklist for officials who work in areas of emergency management, facilities management and health care services and supply chain management, a facilitator’s guide for administering the checklist, and a resource guidebook to inform adaptation. Six health care facilities representing three provinces in Canada piloted the checklist. Senior level officials with expertise in the aforementioned areas were invited to review the checklist, provide feedback during qualitative interviews and review the final toolkit at a stakeholder workshop. The toolkit helps health care facility officials identify gaps in climate change preparedness, direct allocation of adaptation resources and inform strategic planning to increase resiliency to climate change.
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This document provides guidance on interventions to prevent vaccine-preventable disease outbreaks in the context of mass population movement resulting from the ongoing crisis in Ukraine.
The war in Ukraine has rapidly taken the form of a series of conflicts in urban contexts. Urban warfare has a long history, but unfortunately, we can see from this conflict just how topical it remains. Generally, a first phase involves imposing a siege and forcing the city to surrender by making liv
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ing conditions impossible.
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PNAS 2022 Vol. 119 No. 7 e2109217118
Journal of Land Use Science, 16:3, 223-239, DOI: 10.1080/1747423X.2021.1933226
The American Journal of Tropical Medicine and Hygiene Volume 106: Issue 1 p.12-14.he piece highlights a body of research that suggests tiny plastic particles could disrupt immune and endocrine systems, damage organs, and cause other health problems. “Without a fundamental reimagining of global
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industrial practices, we will continue to see dire impacts on the climate, the planet and our health
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Project Drawdown (2022) provides evidence of how climate solutions can also be win-win opportunities for meeting development and human well-being needs while boosting prosperity for rural communities in sub-Saharan Africa and South Asia. The report summarizes the co-benefits of five groups of a subs
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et of Project Drawdown climate solutions (28 total solutions) for advancing human well-being in rural areas of low- and middle-income countries
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The authors conduct an integrated survey of Antimicrobial Resistant Organisms (AMR) in drinking water, wastewater and surface water in three settings in Bangladesh: rural households, rural poultry farms, and urban food markets. Results show that untreated water discharged from rural households, poul
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try farms and urban markets are major contributors to surface water pollution and antibiotic resistant bacteria genes, calling for increased surveillance and monitoring.
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Joule 5, 2687–2714 October 20, 2021 Cell Press
Waste Management & Research 39(1) DOI: 10.1177/0734242X211029175
Briefing Note no. 80 November 2015
GGGI Technical Guideline No. 2