Joint data assessment by the Central Statistical Organization and UNDP
The report shows that the National Statistical System of Myanmar has some work ahead of it in terms of preparing for the monitoring of the SDG indicators. Only 44 of the SDG
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indicators are currently produced and readily available at the national level. However, the good news is that many (97) of the missing indicators can be computed from existing data sources – often with little effort - and don’t require any additional data collection. The report concludes that Myanmar is in a decent position to start monitoring the SDGs, and should start as soon as possible in putting its existing data to full use for the SDGs.
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Countries are making progress toward the global goal of 95% of people living with HIV knowing their status by 2025. However, considerable gaps remain in achieving these goals globally. Men in high HIV burden settings and men from key populations in all
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settings are consistently less likely to know their HIV status than women. Globally, 78% of men ages 15 years and older who are living with HIV are aware of their HIV status, compared with 86% of women with HIV of these ages.
Offering HIV testing services, including HIV self-testing, at formal and informal workplaces has emerged as an effective, acceptable and feasible approach for reaching men. A 2018 World Health Organization (WHO) and International Labour Organization (ILO) policy brief provides key guiding principles for HIVST implementation at workplaces. Building on the 2018 policy brief, this brief captures early experience with HIVST implementation at workplaces and discusses emerging approaches of sustainable financing that can be adapted for HIV self-testing at workplaces.
The primary audiences for this policy brief are ministries of health and labour, national HIV programmes, employers’ organizations, workers’ organizations (labour unions), enterprises, implementing partners, including civil society organizations, and health insurance agencies.
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The Lancet Global Health Volume 9, ISSUE 3, e361-e365, March 01, 2021
The public health community has tried for decades to show, through evidence-based research, that safe water, sanitation, and hygiene (WASH) and clean cooking fuels that reduce ho
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usehold air pollution are essential to safeguard health and save lives in low-income and middle-income countries. In the past 40 decades, there have been many innovations in the development of low-cost and efficacious technologies for WASH and household air pollution, but many of these technologies have been associated with disappointing health outcomes, often because low-income households have either not adopted, or inconsistently adopted, these technologies.
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Sustainability 2020, 12, 1025
Food environments are usually defined as the settings with all the different types of
food made available and accessible to people as they go about their daily lives.
That is, the range of food in supermarkets, small retail outlets, wet markets
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, street
food stalls, coffee shops, tea houses, school canteens, restaurants, and all the other
venues where people buy and eat food. These environments differ enormously depending on the context. They can be extensive and diverse, with a seemingly endless array of options and price ranges, or they can be sparse, with very few options on offer. Because they determine what food consumers can access at a given moment in time, at what price, and with what degree of convenience, food environments both constrain and prompt the consumer’s choice.Food environments are influenced by the food systems which supply them, and vice versa. Food systems encompass the entire range of activities, people and institutions involved in the production, processing,
marketing, consumption and disposal of food (FAO, 2013). They include but are not limited to food supply chains. Making food systems nutrition-sensitive can contribute to addressing all forms of malnutrition, as food systems determine whether the food needed for good nutrition are available, affordable, acceptable and of adequate
quantity and quality. How closely food systems and food environments are interrelated and interdependent, and the degree to which external factors affect nutrition outcomes, varies from setting to setting.Many of today’s food systems
and food environments are challenged in supporting consumer choices that are
consistent with healthy diets and good nutrition. Consumers are not making choices based on nutrition and health, and poor diet is now the number one risk factor for death and disability worldwide (GBD, 2015). Food systems that do not enable healthy diets are increasingly recognized as an underlying cause of malnutrition (GLOPAN, 2016), and malnutrition, irrespective of form, has a huge cost. Economic costs associated with undernutrition are estimated at $1-2 trillion per year, about 2-3% of global GDP (FAO, 2013); the global economic cost of obesity and associated diet-related non-communicable diseases is estimated at $2 trillion per year, about 2.8% of global GDP (McKinsey, 2014). Influencing food environments for promoting healthy diets is an emerging strategy to address today’s nutrition challenges.
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Unhealthy diets and excess body weight are leading risk factors for death and disability in the WHO European Region. Addressing malnutrition in all its forms is essential to ensure health and well-b
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eing for all and, consequently, sustainable development. It requires coherent and innovative actions covering the entire food system and across other sectors to ensure access to a diversified, balanced and healthy diet for all.
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Climate change is one of the biggest crises of our time. Climate threats range from higher temperatures, heavy rainfalls and floods, erratic precipitation, droughts, desertification, and land degradation. This has negative implications on the quality and quantity of natural resources, such as land a
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nd water, agricultural productivity, rural livelihood options, food prices, and nutrition security, particularly when there is a lack of adaptation capacities and preparedness measures (Pacillo, 2024). Farmers are at the forefront of the climate crisis where their livelihoods are being jeopardized, and they are faced with many challenges to secure water, energy, and agriculture inputs, and maintain agriculture productivity. This heightens the risk of competition over natural resources and aggravates grievances and structural inequalities related to land rights and ownership as well as land access, management, and governance. In Africa, land-related issues are among the triggers of many violent disputes (Medina et al, 2024). For instance, communal violence in Nigeria and Sudan is tied to competition over scarce fertile land and poor resource governance (Bruce and Bourdeaux, 2013).
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Global Development: Where Are We Now?
Today, we are facing a vital opportunity to change the profile of cardiovascular disease around the world.
The Millennium Development Goals (MDGs) are due to expire at the end of 2015, placing the cardiovascular health community in a unique position to shape t
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he priorities for the next development agenda, and save millions of lives.
Despite its devastating impact on people of all ages, genders and ethnicities, cardiovascular disease was excluded from the Millennium Development Goals (MDGs), which were announced by the United Nations in 2000. That oversight was far-reaching;
for well over a decade, non-communicable diseases were omitted from the global funding agenda and deprioritized by other mechanisms. During that period of muted government action, the prevalence and burden of non-communicable diseases increased in every region of the world.
Fifteen years later, as the successors to the MDGs are being negotiated, we are in a position to call for the prioritization of cardiovascular disease on the forthcoming global development agenda. Once we have ensured that CVD is recognised at the global policy level, our efforts will turn to encouraging governments to honour their commitments on
the prevention and control of CVD.
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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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The EU Facility has a total budget of €6 billion for humanitarian and development actions: €3 billion for 2016-2017 and €3 billion for 2018-2
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0191. Both tranches combined, all operational funds have been committed, €4.7 billion contracted and more than €3.4 billion disbursed. The operational funds for the Facility for 2016-2017 have also been fully contracted2, out of which €2.59 billion has been disbursed. For 2018-2019, €1.76 billion has been contracted, out of which more than €900 million disbursed.
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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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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 f
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or urban areas.
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The People’s Charter for Health is a statement of the shared vision, goals, principles and calls for action that unite all the members of the PHM
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coalition. It is most widely endorsed consensus document on health since the Alma Ata Declaration
Available in different languages
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Contains tools and resources for countries to develop clean household energy policies and programmes.
Agenda 2030: Sustainable Development Goals (SDGs)
An easy read introduction to the SDGs which will be adopted in September 2015 at the United Nations General Assembly.
This easy read version was developed by the International Disability Alliance (
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IDA) and the International Disability and Development Consortium (IDDC), supported by Australian Department of Foreign Affairs and Trade (DFAT), Finland Ministry of Foreign Affairs (MOFA), CBM, Light for the World and Handicap International. All images are by CHANGE.
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In 2018, the Intergovernmental Panel on Climate Change announced that to restrict global temperature rise to 1·5°C, greenhouse gas emissions must decrease 45% by 2030 compared with 2010, and reach net zero by 2050.1
Achieving the Sustainable Development Goals (SDGs) will require the international community to mobilize significant additional financing over the next decade. Tracking and analyzing this funding is central to measuring progress and making more infor
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med choices to direct financial flows where they will have the greatest impact. This brief highlights AidData’s updated methodology to track financing to the SDGs, providing a baseline of funding for the years immediately before and after their launch. To track SDG-related financing, we build on our 2017 pilot methodology. Using data from the OECD CRS database on all official development assistance between 2010 and 2016, we identify individual projects that are linked to specific SDG goals or targets and then quantify total financing by SDG. This brief highlights four countries that represent different development contexts and trajectories, exploring how a country’s individual context impacts its SDG-related donor funding by examining the composition of funding and financing trends. We also look at SDG financing from the perspective of donors to see how their own interests are reflected in development portfolios across different countries.
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In the face of rapid increases in the number of hospitalizations due to COVID-19 in Latin America and the Caribbean, coupled with shortages of human and material resources, including medical equipment and gases, there is a need to redesign models of care in the Region to optimize available resources
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and ensure that more patients receive the quantity and quality of oxygen they need. Oxygen is included in the World Health Organization’s list of essential medicines and is used to care for patients at all levels of integrated health services networks. The efficacy of oxygen use in the treatment of patients with respiratory conditions caused by COVID-19 has been demonstrated, but there is great opportunity to improve the effectiveness of its use if it is used in a rational, sustainable, and safe way. Bearing in mind that the efficacy of a health technology is measured by its benefit under actual conditions of use, practical actions can be taken to improve the use of medical oxygen and avoid oxygen shortages. A drug is considered to be used rationally when patients receive it according to their clinical needs, in doses appropriate to their individual needs, for an appropriate period, and at a low cost to them and their community. By providing instruction on the rational use of oxygen and promoting it, negative repercussions can be avoided, such as loss of efficacy as a result of activities related to oxygen storage, distribution, and administration. Rational use of oxygen also involves controlling waste due to leaks in storage and distribution systems, use of gas at incorrect pressures, use of incorrectly adjusted flowmeters, and disconnections, among other problems. Another aspect to consider is the provision of adequate technical support for all oxygen production systems, in terms of maintenance and calibration, availability of electrical energy, and specific knowledge about these systems. For these reasons, a set of guidelines has been put together for the development of an efficient management system to deal with situations of oxygen scarcity, both now and in the future.
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The Framework serves to guide efforts to deliver safe and sustainable water, sanitation and hygiene (WASH), health care waste management and reliable electricity in all health care facilities. The u
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ltimate aim is to provide quality care for all. The Framework reflects a global consultative process and includes data and recommendations articulated in recent WHO/UNICEF global reports on WASH, waste and electricity in health care facilities. It also provides an operational roadmap for implementing the 2023 United Nations General Assembly (UNGA) resolution on WASH, waste and electricity in health care facilities. The target audiences for this Framework include health leaders and programme managers at the global and national levels; policymakers; WASH, waste and energy leaders and technical experts; development partners and finance institutions; and actors and experts on gender equality, disability and social inclusion and climate; and, more generally, civil society. The Framework addresses the WASH, waste and electricity elements of the WHO comprehensive approach to build safe, climate-resilient and environmentally sustainable health care facilities.
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Globally, environmental pollution and other environmental risks cause 24% of all deaths, and these deaths are largely preventable. A shift towards policies and actions that minimize risks to health and promote health and
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sustainable personal and societal choices will reduce environmental risks to health. These changes will result in many more people enjoying good health, living in appealing and unspoiled environments and in fewer people requiring health care, which will lower health care
expenditures.
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