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PlosOne May 7, 2012 https://doi.org/10.1371/journal.pone.0036735 ; Safe drinking water is critical for health. Household water treatment (HWT) has been recommended for improving access to potable water where existing sources are unsafe. Reports of low adherence to HWT may limit the usefulness of thi
...
s approach, however.
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This report provides an overview of the main findings of the 2019–2020 harmonised AMR monitoring in the main food-producing animal populations monitored, in carcase/meat samples and in humans. Where available, monitoring data obtained from pigs, calves, broilers, laying hens and turkeys, as well a
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s from carcase/meat samples and humans were combined and compared at the EU level, with particular emphasis on multidrug resistance, complete susceptibility and combined resistance patterns to critically important antimicrobials, as well as Salmonella and E. coli isolates possessing ESBL-/AmpC-/carbapenemase phenotypes.
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India: health system review
Srivastava, Swati, Karan, Anup K., Bhan, Nandita, Mukhopadhya, Indranil. et al.
.World Health Organization (WHO), Regional Office for South-East Asia
(2022)
C_WHO
CoPEH-Canada has generated a series of teaching and training resources over more than a decade. These resources began with the production of the CoPEH-Canada Teaching Manual (2012), which is dedicated to Bruce Hunter. Our training resources have expanded to include a range of resources including: Mo
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dules (in pdf and online format), videos, Webalogue recordings, and other resources.
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Environmental Research Letters
Microplastic debris floating at the ocean surface can harm marine life. Understanding the severity of this harm requires knowledge of plastic abundance and distributions. Dozens of expeditions measuring microplastics have been carried out since the 1970s, but they ha
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ve primarily focused on the North Atlantic and North Pacific accumulation zones, with much sparser coverage elsewhere. Here, we use the largest dataset of microplastic measurements assembled to date to assess the confidence we can have in global estimates of microplastic abundance and mass. We use a rigorous statistical framework to standardize a global dataset of plastic marine debris measured using surface-trawling plankton nets and coupled this with three different ocean circulation models to spatially interpolate the observations. Our estimates show that the accumulated number of microplastic particles in 2014 ranges from 15 to 51 trillion particles, weighing between 93 and 236 thousand metric tons, which is only approximately 1% of global plastic waste estimated to enter the ocean in the year 2010. These estimates are larger than previous global estimates, but vary widely because the scarcity of data in most of the world ocean, differences in model formulations, and fundamental knowledge gaps in the sources, transformations and fates of microplastics in the ocean.
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PlosOne December 10, 2014 https://doi.org/10.1371/journal.pone.0111913
Plastic pollution is ubiquitous throughout the marine environment, yet estimates of the global abundance and weight of floating plastics have lacked data, particularly from the Southern Hemisphere and remote regions. Here we re
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port an estimate of the total number of plastic particles and their weight floating in the world's oceans from 24 expeditions (2007–2013) across all five sub-tropical gyres, costal Australia, Bay of Bengal and the Mediterranean Sea conducting surface net tows (N = 680) and visual survey transects of large plastic debris (N = 891). Using an oceanographic model of floating debris dispersal calibrated by our data, and correcting for wind-driven vertical mixing, we estimate a minimum of 5.25 trillion particles weighing 268,940 tons. When comparing between four size classes, two microplastic <4.75 mm and meso- and macroplastic >4.75 mm, a tremendous loss of microplastics is observed from the sea surface compared to expected rates of fragmentation, suggesting there are mechanisms at play that remove <4.75 mm plastic particles from the ocean surface.
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PNAS 119 (8) e2113947119 | https://doi.org/10.1073/pnas.2113947119
Environmental exposure to active pharmaceutical ingredients (APIs) can have negative effects on the health of ecosystems and humans. While numerous studies have monitored APIs in rivers, these employ different analytical methods, m
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easure different APIs, and have ignored many of the countries of the world. This makes it difficult to quantify the scale of the problem from a global perspective. Furthermore, comparison of the existing data, generated for different studies/regions/continents, is challenging due to the vast differences between the analytical methodologies employed. Here, we present a global-scale study of API pollution in 258 of the world’s rivers, representing the environmental influence of 471.4 million people across 137 geographic regions. Samples were obtained from 1,052 locations in 104 countries (representing all continents and 36 countries not previously studied for API contamination) and analyzed for 61 APIs. Highest cumulative API concentrations were observed in sub-Saharan Africa, south Asia, and South America. The most contaminated sites were in low- to middle-income countries and were associated with areas with poor wastewater and waste management infrastructure and pharmaceutical manufacturing. The most frequently detected APIs were carbamazepine, metformin, and caffeine (a compound also arising from lifestyle use), which were detected at over half of the sites monitored. Concentrations of at least one API at 25.7% of the sampling sites were greater than concentrations considered safe for aquatic organisms, or which are of concern in terms of selection for antimicrobial resistance. Therefore, pharmaceutical pollution poses a global threat to environmental and human health, as well as to delivery of the United Nations Sustainable Development Goals.
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Building on our decades of commitment to human rights in medicine and healthcare, we have published a new report on emerging threats in health-related human rights both globally and in the UK.
'Health and human rights in the new world (dis)order' outlines a shifting rights landscape in which new
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technologies, environmental change and geopolitical reconfigurations are putting renewed and at times intense stress on human rights, both in medicine and healthcare more broadly.
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Studien der Sachverständigengruppe „Weltwirtschaft und Sozialethik“ Nr. 21
On the basis of a reflection on social ethics, the German Bishops’ Conference expert panel on "Global Economy and Social Ethics" has analyzed the role of economic growth in relation to environmental issues and sustain
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able development. The chairman of the expert panel outlines the main results of this text.
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Europe and Central Asia Economic Update.
The Russian Federation’s war with Ukraine has triggered a catastrophic humanitarian crisis and threatened the stability of geopolitical relations. Economic output in the Europe and Central Asia region is forecast to contract by more than 4.1% in 2022—the
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second major shock and regional recession in two years. Moreover, the war has added to mounting concerns of a sharp global growth slowdown.
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The Lancet Regional Health - Americas 2022;00: 100248 Published online xxx https://doi.org/10.1016/j.lana.2022.100248.
The Lancet Countdown report, discuss the overlapping social, climate and health challenges in Latin America and the Caribbean, and urge multisectoral and political action to trans
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form these challenges into opportunities through adaptation and mitigation measures that place peoples’ health and wellbeing at the centre of public policies. Latin American and Caribbean governments are called upon to promote climate-resilient health care systems with adaptation plans that are tailored to guarantee quality access to care for all in this viewpoint.
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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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February 2020Earth's Future 8(2):e2019EF001377.The water planetary boundary attempts to provide a global limit to anthropogenic water cycle modifications, but it has been challenging to translate and apply it to the regional and local scales at which water problems and management typically occur. We
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develop a cross‐scale approach by which the water planetary boundary could guide sustainable water management and governance at subglobal contexts defined by physical features (e.g., watershed or aquifer), political borders (e.g., city, nation, or group of nations), or commercial entities (e.g., corporation, trade group, or financial institution).
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This European compendium was produced to provide operational examples of the new nursing and midwifery roles and new service delivery models currently being employed across the Region. The case studies directly relate to the priority areas in Health 2020 and exemplify the types of activities needed
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to fully implement the objectives within the Strategic Directions framework.
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Transformation and outlook
This report contains the results of an in-depth Training Needs Assessment (TNA) of Health Workers in the 4 project counties of the republic of Kenya – Nakuru, Kisumu, Nairobi and Bungoma. The assessment, facilitated by the UPOPs Project in close collaboration with the Ministry of Health and Minist
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ry of Environment and Natural Resources, took place in the month of September 2017. This assessment focused on health workers at County and County referral health facilities.
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The Government recognizes the critical role of the built environment in addressing climate change and environmental degradation. To this end, it has identified and empowered the Kenya Building Research Centre to champion and coordinate the government’s green building agenda in relation to climate
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change mitigation and adaptation as stipulated in the Centre’s Strategic Plan (2017/2018 – 2021/2022)
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Injection Safety and Safe Disposal of Medical Waste National Communication Strategy and Health Care Waste Management Standard
Operating Procedures (SOPs).
The overall objective of the consultancy was to review and align the three national technical and communication guiding documents on HCWM to th
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e WHO Blue Book and other global standards and recommendations. The specific objectives of the assignment were ; to establish how well aligned the Kenya Healthcare Waste Management Guidelines, 2011, are to the WHO Blue Book on healthcare waste management, global recommendations and other global conventions on environmental protection; to establish the extent to which the Kenya Injection Safety and Safe Disposal of Medical Waste National Communication Strategy is aligned to the National Health Communication Guidelines, 2013; to determine the extent to which the current Standard Operating Procedures are aligned to the best available technologies (BAT) and best environmental practices (BEP) and international practices; and to assess current health care waste management practices at the health facilities supported by the GEF project.
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