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1
Known avoidable environmental risks to health cause at least 12.6 million deaths every year, and account for about one quarter of the global burden of disease (2016 data) (1). Air pollution alone causes about 7 million
deaths a year, placing it among the top global risks to health (2). Global envir
...
onmental challenges are on the rise, including climate change, rapid urbanization and increased resistance to drugs.
more
Working towards better COVID-19 outcomes in the WHO European Region.From the first COVID-19 cases in Europe reported on
24 January 2020, the pandemic reached 1 million cases
within 3 months, 10 million cases within 8 months, and
100 million cases in Europe alone within 2 years. Over
the course o
...
f its two years, COVID-19 has claimed over
1.6 million lives across Europe and Central Asia. The
World Health Organization (WHO) European Region has
accounted for close to a third of the cumulative global
COVID-19 cases and deaths.
more
Many of the countries in the European Region receiving refugees from Ukraine are already offering vaccination services to children and adults. This is important to mitigate the risk of COVID-19 transmission among people travelling or living in close quarters, to protect the refugees from diseases th
...
at may be circulating in the host country, and prevent any outbreaks of vaccine-preventable diseases such as measles and polio.
more
COVID-19 Progress Report PAHO/WHO Argentina: 24 February 2022
Epidemiología; Resumen de puntos clave de conferencias y declaraciones de interés de OPS/OMS; Variantes de interés y preocupación; Actualización en vacunas; OPS/OMS en redes sociales; Publicaciones relacionadas; Noticias de la Regi
...
n de las Américas.
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Health in All Policies (HiAP) is not a new concept. While the term “HiAP” has received much attention since the 1990s, the concept
of working across sectors of government for improved population health and wellbeing is much older than that. Over the last few decades the term has been applied t
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o multiple health topics and challenges – whetherimplicitly or explicitly.
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WHO's Health in the Green Economy sector briefings examine the health impacts of climate change mitigation strategies considered by the Intergovernmental Panel on Climate Change in their Fourth Assessment Report (Climate Change, 2007). Large, immediate health benefits from some climate change strate
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gies are to be expected.
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Rethinking Health with Covid-19 Lessons and Challenges
Este e-book que integra estratégias de três Projetos PROADISUS (Lean nas Emergências, Reab pós-COVID-19 e Cuidados Paliativos) e expõe temas relevantes, relacionados à necessidade de retorno seguro de atividades hospitalares, em paralelo
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à crise que a pandemia ainda impõe a todos os serviços de saúde. Abordaremos estratégias para a reativação ou retomada de serviços hospitalares em paralelo à presença do SARS-CoV-2.
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The 2021 WHO health and climate change global survey report provides a valuable snapshot of the overall progress governments have made in addressing the health risks of climate change. The findings on key health and climate change indicators aim to empower policy makers to: make informed decisions o
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n the implementation of policies and plans; identify evidence gaps; and better understand the barriers to achieving adaptation and resilience priorities in the health sector while maximizing the health benefits of sector-wide climate mitigation efforts.
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The Lancet Planetary Health Volume 5, ISSUE 7, e466-e478, July 01, 2021
Transmission of many infectious diseases depends on interactions between humans, animals, and the environment. Incorporating these complex processes in transmission dynamic models can help inform policy and disease control int
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erventions. We identified 20 diseases involving environmentally persistent pathogens (ie, pathogens that survive for more than 48 h in the environment and can cause subsequent human infections), of which indirect transmission can occur from animals to humans via the environment.
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Sustainable transport systems can protect and promote health, by reducing risks from vehicular air pollution, physical inactivity and traffic injuries, and by providing climate and environmental benefits for urban areas.
Early data estimates suggest that 90% of the Ukrainian population could be facing poverty and extreme economic vulnerability should the war deepen, setting the country – and the region – back decades and leaving deep social and economic scars for generations to come
Bioethics 519 (online) doi:10.1111/bioe.12145 Volume 29 Number 8 2015 pp. 488–596;
Pandemic plans recommend phases of response to an emergent infectious disease (EID) outbreak, and are primarily aimed at preventing and mitigating human-to-human transmission. These plans carry presumptive weight
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and are increasingly being operationalized at the national, regional and international level with the support of the World Health Organization (WHO). The conventional focus of pandemic preparedness for EIDs of zoonotic origin has been on public health and human welfare. However, thisfocus on human populations has resulted in strategically important disciplinary silos. As the risks of zoonotic diseases have implications that reach across many domains outside traditional public health, including anthropological, environmental, and veterinary fora, a more inclusive ecological perspective is paramount for an effective response to future outbreaks.
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The One Health approach can help achieve progress and promotes synergies on national and global priorities by generating synergies at the human-animal-environmental interface. While evidence is still scare, it is likely that the approach is highly cost-effective and improves effectiveness of core pu
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blic health systems, through reducing morbidity, mortality, and economic costs of disease outbreaks. It also contributes to economic development through strengthening public health systems at the human-animal-environment interface protects health, agricultural production, and
ecosystem services
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Today, WFP has the capabilities and know-how to tap into mobile technology and artificial intelligence to monitor food security; use satellite technology to locate and track communities in need; and offer digital finance via blockchain technology to put consumer choices in the hands of our beneficia
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ries.
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English Analysis on World about Agriculture, Climate Change and Environment, Epidemic and more; published on 01 Feb 2022 by Action Against Hunger
This paper explores access to water, sanitation, and health in pastoral communities in northern Tanzania. It argues that the concept of gender, used on its own, is not enough to understand the complexities of sanitation, hygiene, water, and health. It explores pastoralists’ views and perspectives
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on what is ‘clean’, ‘safe’, and ‘healthy’, and their need to access water and create sanitary arrangements that work for them, given the absence of state provision of modern water, sanitation, and hygiene (WASH) infrastructure. Although Tanzania is committed to enhancing its citizens’ access to WASH services, pastoral sanitation and hygiene tend to be overlooked and little attention is paid to complex ways in which access to ‘clean’ water and ‘adequate sanitation’ is structured in these communities. This paper offers an intersectional analysis of water and sanitation needs, showing how structural discrimination in the form of a lack of appropriate infrastructure, a range of sociocultural norms and values, and individual stratifiers interact to influence the sanitation and health needs of pastoralist men, women, boys, and girls.
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Event-based surveillance (EBS) is defined as the organized collection, monitoring, assessment and interpretation of mainly unstructured ad hoc information regarding health events or risks, which may represent an acute risk to health. Both indicator-based and event-based surveillance components serve
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the early warning and response (EWAR) function of the public health surveillance system. The Framework for Event-based Surveillance offers guidance to public health practitioners seeking to implement EBS at each administrative level in healthier countries.
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Climate change, increasing population densities, and intensified globalisation in trade, travel and migration are among the most important factors shaping the 21st century. Each impacts upon population health and the risk of infectious disease, particularly those originating at the human-animal-envi
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ronmental interface. The recognition that many risk drivers of infectious disease fall outside of the typical domain of the health sector creates the challenge of identifying and pursuing priorities for cross-sectoral action aimed at strengthening global health security. In response, the One Health concept has emerged, as have related initiatives addressing Planetary Health and Biodiversity and Human Health. From a public health perspective and operationally speaking, the One Health approach offers great potential, emphasising as it does cooperation and coordination between multiple sectors. Yet despite having been a focal point for discussion for over a decade, numerous challenges facing the implementation of One Health preparedness strategies remain. While some are technical, related to the requirement for innovative early warning systems or new vaccines, for example, others are institutional and cultural in nature, given the transdisciplinary nature of the topic. There have thus been calls to address One Health from multiple perspectives, from ecology to the social sciences. In order to further explore this issue and to identify priority areas for action for strengthening One Health preparedness in Europe, ECDC convened an expert consultation on 11–12 December 2017.
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BACKGROUND: Growing political attention to antimicrobial resistance (AMR) offers a rare opportunity for achieving meaningful action. Many governments have developed national AMR action plans, but most have not yet implemented policy interventions to reduce antimicrobial overuse. A systematic evidenc
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e map can support governments in making evidence-informed decisions about implementing programs to reduce AMR, by identifying, describing, and assessing the full range of evaluated government policy options to reduce antimicrobial use in humans.
METHODS AND FINDINGS: Seven databases were searched from inception to January 28, 2019, (MEDLINE, CINAHL, EMBASE, PAIS Index, Cochrane Central Register of Controlled Trials, Web of Science, and PubMed). We identified studies that (1) clearly described a government policy intervention aimed at reducing human antimicrobial use, and (2) applied a quantitative design to measure the impact. We found 69 unique evaluations of government policy interventions carried out across 4 of the 6 WHO regions. These evaluations included randomized controlled trials (n = 4), non-randomized controlled trials (n = 3), controlled before-and-after designs (n = 7), interrupted time series designs (n = 25), uncontrolled before-and-after designs (n = 18), descriptive designs (n = 10), and cohort designs (n = 2). From these we identified 17 unique policy options for governments to reduce the human use of antimicrobials. Many studies evaluated public awareness campaigns (n = 17) and antimicrobial guidelines (n = 13); however, others offered different policy options such as professional regulation, restricted reimbursement, pay for performance, and prescription requirements. Identifying these policies can inform the development of future policies and evaluations in different contexts and health systems. Limitations of our study include the possible omission of unpublished initiatives, and that policies not evaluated with respect to antimicrobial use have not been captured in this review.
CONCLUSIONS: To our knowledge this is the first study to provide policy makers with synthesized evidence on specific government policy interventions addressing AMR. In the future, governments should ensure that AMR policy interventions are evaluated using rigorous study designs and that study results are published.
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The 20th century was a period of unprecedented ecological change, with dramatic reductions in natural ecosystems and biodiversity and equally dramatic increases in people and domestic animals. Never before have so many animals been kept by so many people—and never before have so many opportunities
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existed for pathogens to pass from wild and domestic animals through the biophysical environment to affect people causing zoonotic diseases or zoonoses. The result has been a worldwide increase in emerging zoonotic
diseases, outbreaks of epidemic zoonoses as well as a rise in foodborne zoonoses globally, and a troubling persistence of neglected zoonotic diseases in poor countries.
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