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Current evidence that the climate is changing is overwhelming. Impacts of climate change and variability are being observed: more intense heat-waves, fires and floods; and increased prevalence of food- water- and vector-borne diseases. Climate change will put pressure on environmental and health det
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erminants, such as food safety, air pollution and water quantity and quality. A climate-resilient future depends fundamentally on reducing greenhouse gas emissions. Limiting warming to below 2 °C requires transformational technological, institutional, political and behavioural changes: the foundations for this are laid out in the Paris Agreement of December 2015. The health sector can lead by example, shifting to environmentally friendly practices and minimizing its carbon emissions. A climate-resilient future will increasingly depend on managing and reducing climate change risks to protect health. In the near term, this can be enhanced by including climate change in national health programming and creating climate-resilient health systems.
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The Lancet Planetary Health Volume 4, ISSUE 12, e566-e576, December 01, 2020. Exposure to temperature variability has been associated with increased risk of mortality and morbidity. We aimed to evaluate whether the association between short-term temperature variability and hospitalisation was affect
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ed by local socioeconomic level in Brazil.
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The main message emerging from this new comprehensive global assessment is that premature death and disease can be prevented through healthier environments – and to a significant degree. Analysing the latest data on the environment-disease nexus and the devastating impact of environmental hazards
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and risks on global health, backed up by expert opinion, this report covers more than 100 diseases and injuries.
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There is a broad consensus nowadays that the Earth is warming up as a result of greenhouse gas emissions caused by anthropogenic activities. It is also clear that current trends in the fields of energy, development and population growth will lead to continuous and ever more dramatic climate change.
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This is bound to affect the fundamental prerequisites for maintaining good health: clean air and water, sufficient food and adequate housing. The planet will warm up gradually, but the consequences of the extreme weather conditions such as frequent
storms, floods, droughts and heat-waves will have sudden onset and acute repercussions. It is widely accepted that climate change will have an impact on the spread of infectious diseases in Europe, which is likely to bring about new public health risks in the majority of cases. Transmission of infectious diseases depends on a number of factors, including climate and environmental elements. Foodborne and waterborne diseases, for instance, are associated with high temperatures. Disease-transmitting vectors (e.g. mosquitoes, sandflies and ticks) are highly sensitive to climate conditions, including temperature and humidity; their geographical distribution will widen as climate conditions change, potentially allowing them to spread into regions where they are not currently able to live.
The primary purpose of this manual on climate change and infectious diseases is to raise the awareness and the level of knowledge of health workers at national, regional and local levels in the former Yugoslav Republic of Macedonia on the health risks associated with climate change and infectious diseases. This manual was devel-
oped as part of the WHO Regional Office for Europe project, Protecting health from climate change: a seven–country initiative, implemented with financial support from the German Federal Ministry for the Environment, Nature Conservation and Nuclear Safety.
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The arrival and rapid spread of the mosquito-borne viral disease Chikungunya across the Americas is one of the most significant public health developments of recent years, preceding and mirroring the subsequent spread of Zika. Globalization in trade and travel can lead to the importation of these vi
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ruses, but climatic conditions strongly affect the efficiency of transmission in local settings. In order to direct preparedness for future outbreaks, it is necessary to anticipate global regions that could become suitable for Chikungunya transmission. Here, we present global correlative niche models for autochthonous Chikungunya transmission. These models were used as the basis for projections under the representative concentration pathway (RCP) 4.5 and 8.5 climate change scenarios. In a further step, hazard maps, which account for population densities, were produced. The baseline models successfully delineate current areas of active Chikungunya transmission. Projections under the RCP 4.5 and 8.5 scenarios suggest the likelihood of expansion of transmission-suitable areas in many parts of the world, including China, sub-Saharan Africa, South America, the United States and continental Europe. The models presented here can be used to inform public health preparedness planning in a highly interconnected world.
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Energy use in the home is a vital and ubiquitous feature of human society. Energy
is used for a wide variety of purposes, including cooking, space heating, light-
ing, small-scale income generation, various household tasks, and entertainment.
The World Climate and Security Report 2021
Brock, S.; Barrett, O.L.; Birkman, L.; et al.
International Military Council on Climate and Security
(2021)
CC
The World Climate and Security Report (WCSR) 2021 from the Expert Group of the International
Military Council on Climate and Security is a global assessment of the security dimensions of a changing
climate and effective means to address them. It is intended to inform timely climate and security po
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licy
and action, and builds upon the analysis in the first WCSR, released in February 2020.
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The World Climate and Security Report 2021_2
Brock, S.; Barrett, O.L.; Birkman, L.; et al.
International Military Council on Climate and Security
(2021)
C1
The World Climate and Security Report (WCSR) 2021 from the Expert Group of the International Military Council on Climate and Security is a global assessment of the security dimensions of a changing climate and effective means to address them. It is intended to inform timely climate and security poli
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cy and action, and builds upon the analysis in the first WCSR, released in February 2020.
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It outlines key achievements, needs and opportunities for intervention in the field of rehabilitation in Ukraine. The content of this document is a snapshot in time – not an in-depth analysis of the entire rehabilitation sector. The analysis focuses on rehabilitation policy and governance, service
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provision, financing, information management and human resources, with the aim of improving access to high-quality rehabilitation services in Ukraine.
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This document offers public health guidance for the prevention and control of COVID-19 in reception centres, and other temporary accommodation facilities, in the context of the mass influx of Ukrainian people into the European Union (EU), the European Economic Area (EEA) and the Republic of Moldova.
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Emerging evidence and experience to inform risk management in a warming world
Extreme heat events (EHEs) are a leading cause of weather-related injury and death in the United States, and under a changing climate, these meteorological episodes are predicted to increase in both frequency and intensity. Prolonged heat exposure from EHEs places an increased strain on the heart an
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d may lead to heat-related illness if the cardiovascular system fails to properly thermoregulate internal body temperature. Every individual is susceptible to heat-related illness, however, those with reduced cardiovascular function and pre-existing cardiovascular diseases are at a greater risk for morbidity and mortality during EHEs. This document gives an overview of our current understanding of heat exposure and its impact on cardiovascular health outcomes, an overview of the medications that may exacerbate heat-related cardiovascular illness, and asummary of the interaction between extreme heat and air pollutants, and their collective impact on cardiovascular health. Additionally, this document summarizes epidemiologic evidence and identifies gaps in the extant peer-reviewed literature on the effectiveness of strategies and interventions to protect against heat-related cardiovascular disease and death. This information is intended to aid health departments and other health professionals in understanding and responding to the impacts of heat exposure on cardiovascular health.
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Le cadre conceptuel scientifique pour la neutralité de la dégradation des terres (LDN) fournit une base scientifique pour comprendre, mettre en œuvre et surveiller la LDN. Il a été conçu pour créer un pont entre la vision et la mise en œuvre pratique de la NCD, en définissant la NCD en term
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es opérationnels. Le cadre conceptuel est un produit de l'interface science-politique de la CCD.
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El marco conceptual científico de la neutralidad de la degradación de la tierra (LDR) proporciona una base científica para comprender, aplicar y supervisar la LDR. Su objetivo es salvar la brecha entre la visión y la aplicación práctica de la ENC, definiendo la ENC en términos operativos. El
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marco conceptual es un producto de la interfaz ciencia-política de la CNULD.
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IAEA Safety Standards for protecting people and the environment
A sourcebook
This recommendation is an update of one of the 49 recommendations that were published in the WHO recommendations on antenatal care for a positive pregnancy experience. The recommendation was developed initially using the standardized operating procedures described in the WHO handbook for guideline d
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evelopment.
In summary, the process included: (i) identification of priority question and outcomes; (ii) retrieval of evidence; (iii) assessment and synthesis of the evidence; (iv) formulation of recommendation; and (v) planning for the implementation, dissemination, impact evaluation and updating of the recommendation. This recommendation was identified by the Executive Guideline Steering Group (GSG) as a high priority for updating in response to new evidence on this question.
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Nature Sustainability | VOL 2 | APRIL 2019 | 267–273 | www.nature.com/natsustain