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2
The Minimum Standards and Indicators for Community Engagement were developed through an inter‑agency consultation process that engaged a large number of experts from around the world. UNICEF wishes to acknowledge the contribution of all those that participated, and who share a passion for placing
...
communities at the centre of development and humanitarian action. The consultation process consisted of a series of interviews, meetings and workshops over an 18‑month period. Representatives from countries in Africa, Asia, the Middle East, Europe and North America contributed input and feedback based on their experiences of designing, implementing and measuring community engagement approaches
more
Health facilities in the Region of the Americas frequently suffer the effects of health emergencies and disasters, which jeopardize their ability to provide services to the population. The STAR-H me
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thodology helps staff responsible for health emergency and disaster risk management to identify and assess risks as part of strategic planning to improve facility preparedness. It is intended to help them develop, with a multi-hazard approach, a response framework with operating procedures to deal with hazards of any type, scale, or frequency; determine roles and responsibilities; facilitate the effective use of resources; undertake strategic planning exercises, and improve the preparedness of facilities to effectively respond to and recover from impacts. This methodology is designed for use in health facilities of any size and capacity, and makes it possible to generate historical reports and national or subnational risk profiles. This information can be used to develop an effective health emergency and disaster risk management program.
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La Hoja de Ruta del Grupo Regional de Expertos en AirQ+ representa un hito para la región de las Américas en la integración de la evidencia científica en la toma de decisiones sobre calidad del aire y salud pública. Fruto de un proceso de construcción colectiva que reunió a más de 100 especi
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alistas de distintos países e instituciones, este documento sintetiza las prioridades, desafíos y oportunidades clave para fortalecer la evaluación de los impactos en la salud derivados de la contaminación del aire.
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The “Right Start Initiative” is a comprehensive program reaching nine countries in Asia and Africa, designed and run by the Nutrition International with the goal of improving the quality of nutrition for 100 million adolescent girls and women of
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reproductive age.
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The World Health Organization (WHO) highlights the significant health risks associated with household air pollution, primarily resulting from the use of inefficient and polluting fuels and technolog
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ies for cooking, heating, and lighting. In 2020, approximately 2.1 billion people—about one-third of the global population—relied on open fires or inefficient stoves fueled by kerosene, biomass (such as wood, animal dung, and crop waste), and coal. This exposure led to an estimated 3.2 million deaths, including over 237,000 deaths of children under the age of five. The pollutants emitted from these sources contribute to a range of health issues, including respiratory infections, heart disease, stroke, chronic obstructive pulmonary disease, and lung cancer. The WHO emphasizes the urgent need for transitioning to cleaner fuels and technologies to mitigate these health risks.
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Trustworthy, evidence-based health guidelines form the basis of national policies affecting both patients and health-care workers. Emphasizing the link between robust evidence and people’s trust i
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n their health systems, Dr Hans Henri P. Kluge, WHO Regional Director for Europe said at the launch event, “Trust and transformation are key words for us, especially when we talk about improving and strengthening our health systems. Transformation should first and foremost serve the interests of patients and health-care workers”.
While it is not always easy to demonstrate the immediate effect of guidelines on people’s health, there is no viable alternative to utilizing guidelines based on the best available evidence.
Yet, developing robust guidelines remains a challenge for most countries. “Guidelines need to be both simple to use and timely, they need to address people’s real needs, especially at the local level, and should ultimately reflect the resources available,” said Dr Natasha Azzopardi-Muscat, Director, Country Health Policies and Systems, WHO/Europe. “This means that any successful guideline needs to be adjusted and adapted to local contexts and realities.”
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This manual has been designed to be used in conjunction with two earlier WHO publications, "Basic tests for pharmaceutical substances" (1986) and "Basic tests for pharmaceutical dosage forms" (1991). Most of the pharmaceutical substances and dosage forms covered are included in the WHO Model List of
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Essential Drugs. The present volume describes procedures for testing a further 23 pharmaceutical substances and 58 pharmaceutical dosage forms and also for testing 4 medicinal plant materials.
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The Global guidance framework for the responsible use of the life sciences: mitigating biorisks and governing dual-use research (the framework) aims to provide values and principles, tools and mechanisms to support Member States and key stakeholders to mitigate and prevent biorisks and govern dual-u
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se research.
Digital publication you can download the English, French, Spanish and Russian version
The framework adopts the One health approach and focuses on the role that responsible life sciences research can play in preventing and mitigating risks caused by accidents, inadvertent or deliberate misuse with the intention to cause harm to humans, nonhuman animals, plants and agriculture, and the environment.
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The WHO BioHub Biosafety & Biosecurity: criteria and operational modalities sets out the requirements to which laboratories wishing to receive biological materials as part of this international exchange system should abide, to ensure safe and secure operations. These provisions are in accordance wit
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h the recommendations of the WHO Laboratory Biosafety Manual 4th edition (LBM4), adopting an evidence- and risk-based approach to enable scalable and adaptable biosafety provisions and actions, proportionate to the assessed risk
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GPHF-Minilab: Manuals
recommended
GPHF Minilab manuals on basic dye and thin layer chromatographic testing. The newest version of the manual (Volume I + II) from 2008 is available in three languages: English, French, Spanish. Combining the main manual with the supplements issued each year between 2010 and 2015, label claims on drug
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identity and content can now be verified for 75 active ingredients and their fixed-dose combination products using simple, rapid and affordable thin layer chromatographic tests. Please note: Only the demo versions are online available!! The complete manuals are only available after purchasing the Minilab!
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En esta nota técnica se explican los 20 aspectos que deben considerarse para evaluar el estado y la seguridad del equipo y los suministros de laboratorio. No se incluyen en este trabajo las instrucciones para los evaluadores de los puntos 93 (Estado y seguridad del equipo médico en las salas de op
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eraciones y salas de recuperación) y 94 (Estado y seguridad del equipo de radiología e imagenología), que también forman parte del índice de seguridad hospitalaria.
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Although air pollution is well known to be harmful to the lung and airways, it can also damage most other organ systems of the body. It is estimated that about 500,000 lung cancer deaths and 1.6 million COPD deaths can be attributed to air pollution, but air pollution may also account for 19% of all
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cardiovascular deaths and 21% of all stroke deaths. Air pollution has been linked to other malignancies, such as bladder cancer and childhood leukemia. Lung development in childhood is stymied with exposure to air pollutants, and poor lung development in children predicts lung impairment in adults. Air pollution is associated with reduced cognitive function and increased risk of dementia. Particulate matter in the air (particulate matter with an aerodynamic diameter < 2.5 μm) is associated with delayed psychomotor development and lower child intelligence. Studies link air pollution with diabetes mellitus prevalence, morbidity, and mortality. Pollution affects the immune system and is associated with allergic rhinitis, allergic sensitization, and autoimmunity. It is also associated with osteoporosis and bone fractures, conjunctivitis, dry eye disease, blepharitis, inflammatory bowel disease, increased intravascular coagulation, and decreased glomerular filtration rate. Atopic and urticarial skin disease, acne, and skin aging are linked to air pollution. Air pollution is controllable and, therefore, many of these adverse health effects can be prevented.
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Long-term exposure of humans to air pollution enhances the risk of cardiovascular and respiratory diseases. A novel Global Exposure Mortality Model (GEMM) has been derived from many cohort studies, providing much-improved coverage of the exposure to fine particulate matter (PM2.5). We applied the GE
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MM to assess excess mortality attributable to ambient air pollution on a global scale and compare to other risk factors.
Methods and results
We used a data-informed atmospheric model to calculate worldwide exposure to PM2.5 and ozone pollution, which was combined with the GEMM to estimate disease-specific excess mortality and loss of life expectancy (LLE) in 2015. Using this model, we investigated the effects of different pollution sources, distinguishing between natural (wildfires, aeolian dust) and anthropogenic emissions, including fossil fuel use. Global excess mortality from all ambient air pollution is estimated at 8.8 (7.11–10.41) million/year, with an LLE of 2.9 (2.3–3.5) years, being a factor of two higher than earlier estimates, and exceeding that of tobacco smoking. The global mean mortality rate of about 120 per 100 000 people/year is much exceeded in East Asia (196 per 100 000/year) and Europe (133 per 100 000/year). Without fossil fuel emissions, the global mean life expectancy would increase by 1.1 (0.9–1.2) years and 1.7 (1.4–2.0) years by removing all potentially controllable anthropogenic emissions. Because aeolian dust and wildfire emission control is impracticable, significant LLE is unavoidable.
Conclusion
Ambient air pollution is one of the main global health risks, causing significant excess mortality and LLE, especially through cardiovascular diseases. It causes an LLE that rivals that of tobacco smoking. The global mean LLE from air pollution strongly exceeds that by violence (all forms together), i.e. by an order of magnitude (LLE being 2.9 and 0.3 years, respectively).
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WHO’s Country Cooperation Strategy (CCS) defines the Organization’s medium-term vision for working in and with a particular country. The CCS, developed in the context of global and national health priorities, examines the overall
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health situation in a country, including the state of the health sector, socioeconomic status and the major health determinants.
This CCS sets out WHO’s strategic framework for collaboration with the Syrian Arab Republic, from June 2022 until June 2025, in light of the 12 years of crisis that have had a devastating impact on the health sector and infrastructure of basic services. It carefully considers the current and projected issues during its transition from continued humanitarian assistance to recovery, resilience and development. The consolidation of health policies and strategies and health system strengthening, based on the strengthening of primary health care (PHC), aims to contribute to the achievement of national and global development and health goals and the targets of the SDGs.
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Reporting system for the general public - This document aims to provide practical guidelines on how to set up national systems for consumers to report adverse reactions to medicines. The purpose is to help countries set up a well-organized and effective consumer reporting system within their pharmac
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ovigilance centre. Throughout this document, the phrase “consumer reporting” is used to refer to reporting of adverse drug reactions (ADRs) by the general public.
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The provision of safe and efficacious blood and blood components for transfusion or manufacturing use involves a number of processes, from the selection of blood donors and the collection, processing and testing of blood donations to the testing of patient samples, the issue of compatible blood and
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its administration to the patient. There is a risk of error in each process in this “transfusion chain” and a failure at any of these stages can have serious implications for the recipients of blood and blood products. Thus, while blood transfusion can be life-saving, there are associated risks, particularly the transmission of bloodborne infections.
Screening for transfusion-transmissible infections (TTIs) to exclude blood donations at risk of transmitting infection from donors to recipients is a critical part of the process of ensuring that transfusion is as safe as possible. Effective screening for evidence of the presence of the most common and dangerous TTIs can reduce the risk of transmission to very low levels. more
Screening for transfusion-transmissible infections (TTIs) to exclude blood donations at risk of transmitting infection from donors to recipients is a critical part of the process of ensuring that transfusion is as safe as possible. Effective screening for evidence of the presence of the most common and dangerous TTIs can reduce the risk of transmission to very low levels. more
Laboratory Biossafety Manual