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Azraq refugee camp located in Zarqa governorate was established in April 2014. As of June 2023, the camp continues to hosts 40,600 Syrian refugees, with 61% of the population children, and 25% of all households female-headed (UNHCR, 2023).
The water supply system in Azraq has been
...
operational since 2017 across the four villages of the camp and consists of 300 tap stands, two boreholes and two storage locations (each with 16 T-95 steel tanks).
Based on data from UNICEF (2022), the community is provided on average 2100 cubic meters of safe, treated water a day, which is distributed across the camp via a gravity flow system. A distribution schedule is in place, with water pumped during two shift times each day in the morning and evening. Monthly data reported through ActivityInfo (2023) shows a range 53.5-76.3 million liters per month provided through the network in 2022 for an average of 57 liters/person/day – well above the locally agreed minimum standard of 35 liters/person/day and the SPHERE standard of 15 liters/person/day.
Latrine and shower facilities in the camp are organized through communal WASH blocks shared typically between three households and connected to water and greywater networks. However, based on an ACF and World Vision assessment (2022), 60% of the surveyed households are using private latrines (50% self-constructed latrines, and 10% constructed by WASH actors), 24% of households used communal latrines as private latrines not shared with other families, and 16% reported the use of communal latrines shared with other families.
more
Benchmarking is a strategic process often used by businesses and institutes to standardize performance in relation to the best practices of their sector. The World Health Organization (WHO) and partners have developed a tool with a list of benchmarks and corresponding suggested actions that can be a
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pplied to implement the International Health Regulations 2005 (IHR) and strengthen health emergency prevention, preparedness, response and resilience capacities.
The first edition of the benchmarks was published in 2019 to support countries in developing, implementing and documenting progress of national IHR or health security plans (e.g. national action plan for health security (NAPHS), national action plan for emerging infectious diseases, public health emergencies and health security and other country level plans for health emergencies). The tool has been updated to incorporate lessons from COVID-19 and other health emergencies, to align with the updated IHR monitoring & evaluation framework (IHR MEF) tools and the health systems for health security framework, and to support strengthening health emergency prevention, preparedness, response and resilience (HEPR) capacities and the Preparedness and Resilience for Emerging Threats (PRET) initiative.
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Through technical consultations with countries and partners, WHO has led the development of Preparedness and Resilience for Emerging Threats Module 1: Planning for respiratory pathogen pandemics. Version 1.0. The Module, currently available as an advanced draft, builds on previous pandemic lessons a
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nd guidance, and has the following new elements:
It presents an integrated and efficient respiratory pathogen pandemic planning approach covering both novel pathogens and those known to have pandemic potential;
It enables coherence in addressing pathogen-agnostic and pathogen-specific elements for better preparedness;
It gives an organizing framework including operational stages and triggers for escalation and de-escalation between pandemic preparedness and response periods;
It contextualizes 12 IHR (2005) core capacities within the five components of health emergency preparedness, response and resilience (HEPR), from the respiratory threats perspective; and
It describes the critical sectors for respiratory pathogen pandemic preparedness to trigger multisectoral collaboration.
WHO will finalize and publish this Module after a global technical meeting that will be held on 24-26 April 2023.
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The WHO document "Integrating the prevention and control of noncommunicable diseases in HIV/AIDS, tuberculosis, and sexual and reproductive health programmes: implementation guidance" provides a framework for integrating noncommunicable diseases (NCDs) into existing health programs for HIV/AIDS, tub
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erculosis (TB), and sexual and reproductive health (SRH). It emphasizes the importance of a people-centered approach to enhance healthcare accessibility and efficiency, especially in low-resource settings. The document outlines strategies for strengthening policy, financing, capacity building, and health system infrastructure. It offers actionable steps, tools, and case studies to support countries in reducing the burden of NCDs through integrated, holistic care within primary health services.
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The "WHO Package of Essential Noncommunicable (PEN) Disease Interventions for Primary Health Care" provides a set of cost-effective, evidence-based interventions to address noncommunicable diseases (NCDs) such as cardiovascular diseases, diabetes, chronic respiratory diseases, and cancers. Designed
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for implementation in primary healthcare settings, especially in low-resource environments, the package includes protocols for screening, diagnosis, treatment, and management of these diseases. The document emphasizes an integrated approach, supporting universal health coverage by empowering healthcare workers with practical tools to improve NCD care. It aims to reduce premature mortality from NCDs and enhance global health equity.
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Health system resilience is not an inevitable byproduct of any investment in health but must be intentionally programmed and developed with necessary input, investment and contextualization. This technical product aims to guide national, subnational, and global health actors to operationalize the co
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ncept of health system resilience for advancement of universal health coverage, health security and ultimately better health for all. It supports the translation of relevant conceptual guidance and high-level recommendations into practical actions.
The specific objectives are to:
present a concise overview of the concept of health system resilience;
provide a roadmap outlining practical and foundational steps for building health system resilience to be adapted to different contexts;
share examples of actions and tools, including stakeholder roles, to support country application of the roadmap.
The target audience for this work is the various stakeholders involved in strengthening health systems and public health including management of emergencies (from prevention and preparedness to response and recovery) and other public health challenges in countries. This ranges from the donors, policy-makers and decision-makers at global, national and subnational levels to the implementing institutions and line managers of health system functions and services across the health system building blocks.
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The key to a lasting world free of all forms of poliovirus lies in rapidly interrupting all remaining endemic transmission of WPV in the endemic areas of Pakistan and Afghanistan. This is the only way to ensure that such strains do not re-emerge globally through international spread. It lays the cor
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nerstone for the eventual cessation of all oral polio vaccine use, in order to eliminate the long-term risks associated with variant poliovirus strains, which is the GPEI’s top operational priority. The target for certifying the
world free of all WPV remains end-2026.
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WHO guideline on contact tracing
recommended
This practical guideline establishes definitions for “contact”, “contact person”, “contact tracing” and other associated concepts. It allows for improvement of contact tracing strategies and provides recommendations attempting to answer some, though not all, questions that arose during t
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he 2019 coronavirus pandemic and other outbreaks. The use of this guideline begins once people have been diagnosed and the potential for transmission exists. It is not, however, intended to assist with case investigation. The guideline empowers health workers, governments, and public health officials with the tools to implement effective contact tracing strategies.
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HAT diagnosis relies on laboratory techniques because clinical signs and symptoms are unspecific. Serodiagnostic tests exist only for Tbg and are based on the detection of specific antibodies, thus they are not confirmatory of infection. With the current low disease prevalence, the positive predicti
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ve value of serological tests is particularly low. Field-applicable tools include the card agglutination test for trypanosomiasis (CATT) used mainly in active screening by specialized mobile teams, and the rapid diagnostic tests that are more suitable for individual testing at point-of-care. Confirmation of Tbg infection requires microscopic examination of body fluids necessitating specific training. The best performing methods are laborious and reach 85–95% diagnostic sensitivity when performed by skilled personnel.
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HAT diagnosis relies on laboratory techniques because clinical signs and symptoms are unspecific. Serodiagnostic tests exist only for Tbg and are based on the detection of specific antibodies, thus they are not confirmatory of infection. With the current low disease prevalence, the positive predicti
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ve value of serological tests is particularly low. Field-applicable tools include the card agglutination test for trypanosomiasis (CATT) used mainly in active screening by specialized mobile teams, and the rapid diagnostic tests that are more suitable for individual testing at point-of-care.
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2nd edition. This second edition builds on the experience of more than 10 years of SMC deployment, and reflects changes introduced in the WHO guidelines for malaria, 3 June 2022. The goal of this publication is to share these best practices to improve SMC implementation, coverage, and monitoring and
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evaluation. Examples of materials and tools as well as links to resources are included to support managers and health workers in their efforts to conduct successful SMC activities and prevent malaria among vulnerable children.
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This Implementation Kit (I-Kit), developed by the Health Communication Capacity Collaborative (HC3), which is funded by USAID and based at the Johns Hopkins Center for Communication Programs, offers structured guidance for improving social and behavioural change communication (SBCC) strategies relat
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ed to malaria in pregnancy (MiP). Designed for programme managers and stakeholders, the toolkit addresses critical communication gaps in MiP programming, particularly among service providers. It provides tools to help users integrate MiP into situation analyses, segment audiences, define behavioural objectives and draft strategic communication plans.
MiP poses a significant public health challenge, contributing to maternal and neonatal mortality and morbidity in sub-Saharan Africa. Although effective interventions exist, such as the use of insecticide-treated nets, intermittent preventive treatment in pregnancy (IPTp) and timely diagnosis and treatment, their implementation remains inconsistent. The I-Kit supports more effective SBCC planning and implementation, with the aim of increasing the uptake and impact of these interventions and ultimately reducing malaria-related deaths and illness among pregnant women and newborns.
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Relapsing malaria caused by Plasmodium vivax parasites poses a significant challenge to global malaria elimination efforts. About one third of the population remains at risk of contracting P. vivax malaria, and 85% of P. vivax infections stem from reactivated latent parasites, leading to chronic ana
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emia and increased morbidity and mortality. In addition to diagnostic tools that can detect the acute, blood-stage of P. vivax, new tools are needed to detect the dormant infections before they reactivate and contribute to morbidity and onwards transmission
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Community led-monitoring is based on the principle that «Nothing that is done for us should
be done without us”. The combination of this principle with evidence shows that community-led
monitoring is an important driver of improved service delivery and health outcomes that needs to
be re-empha
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sized. Thus, the community must participate at all stages of the fight against malaria.
This guide will be useful to CSOs working in the field of malaria in the conduct of community-led
monitoring of activities efficiently and allow these CSOs to know their role and responsibilities in this
exercise at each key stage. This guide will also provide CSOs and communities affected by malaria
with templates of monitoring tools adapted to key malaria programs.
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In Control: A Practical Handbook for Professionals Working in Health Emergencies Internationally RKI
The greatest risk to persons engaging in international medical emergency response is poor preparation.
The In Control handbook hopes to provide a remedy.
At the time of writing, we are living through the Coronavirus (COVID-19) pandemic, a health emergency that disregards physical borders, brin
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gs into focus social inequalities and affects people on every continent. This shared challenge requires unprecedented measures and the collaboration of the brightest minds to support global health protection through this crisis and beyond. Healthcare infrastructures have to be strengthened, public health capacities and processes upgraded, medical countermeasures and vaccinations found and psychosocial side-effects treated.
Solidarity is the normative order of the day and the human species has to collaborate to face this invisible threat. Hiding and living in fear is not an option in this interconnected world. We have both a responsibility and an opportunity to make substantial contributions to a safer, healthier and more sustainable future for us all.
The existence of this handbook is an impressive example of solidarity. Over 50 authors from more than 15 institutes and organisations have come together voluntarily within a very short time to make their expertise available and enable cross-sectoral thinking. Knowledge is bundled, resources are combined, information gaps are filled. The In Control handbook is not a theoretical treatise of possible dangers, but a collection of subject-matter expertise, written by experts and practitioners who have shaped health topics over the past 20 years in the most diverse corners of the world.
The Centre for International Health Protection at the Robert Koch Institute (RKI) is collaborating with its partners and investing heavily in the build-up of operational know-how and capacity to support health crisis response abroad. This is done by preparing and enabling professionals to deploy safely across the world to assist those in need. In Control addresses the multi-faceted challenges of an international deployment. Readers will find not only technical medical information, but also insights into, for example, the fragility of our environment, the cultural differences that influence risk communication or the dilemmas arising from social distancing. Legal principles are highlighted, along with ethical guidance to ensure that our actions and decisions correspond to the highest moral standards.
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Monitoring is a crucial element in any successful programme. It is important to
know if health care facilities – and ultimately countries – are meeting the agreed
goals and objectives for preventing and managing cardiovascular diseases (CVD).
Monitoring is the on-going collection, management
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and use of information to
assess whether an activity or programme is proceeding according to plan and/
or achieving defined targets. Not all outcomes of interest can be monitored. Clear
outcomes must be identified that relate to the most important changes expected to result from the project and to what is realistic and measurable within the timescale of the project. Once these outcomes have been articulated, indicators can be chosen that best measure whether the desired outcomes are being met.
To allow progress to be monitored, this module provides a set of indicators on
CVD management. Agreeing on a set of indicators allows countries to compare
progress in CVD management and treatment across different districts or
subnational jurisdictions, as well as at a facility level, identify where performance
can be improved, and track trends in implementation over time. Monitoring
these indicators also helps identify problems that may be encountered so that
implementation efforts can be redirected.
This module starts from the collection of data at facility level, which is then
“transferred up” the system: facility-level data are aggregated at subnational level
to produce reports that allow tracking of facility and subnational performance over time and allow for comparison among facilities. National-level data are obtained through population-based surveys.
Implementing a monitoring system requires action at many levels. At national and
subnational levels, staff can determine how best to integrate data elements into
existing data collection systems – such as the routine service-delivery data that are collected through facility-level Health Management Information Systems (HMIS).
In the facility setting, personnel must be aware of what data are needed. Sample
data-collection tools are included, recognizing that countries use different datamanagement systems for HMIS, so the CVD monitoring tools will be adapted to work with the HMIS system being used by the country, such that the indicators can be collected with minimal disruption/work to existing systems and tools
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The Practical manual on laboratory strengthening, 2022 update provides practical guidance on implementation of WHO recommendations and best practices for TB laboratory strengthening. It is an updated version of the GLI Practical Guide to Laboratory Strengthening published in 2017 and provides the la
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test practical guidance on use of newly recommended diagnostics as well as guidance in key technical areas, including quality assurance and quality management systems, specimen collection and registration, procurement and supply-chain management, diagnostic connectivity, biosafety, data management, human resources, strategic planning, and model algorithms. The key changes are:
inclusion of recent or updated WHO recommendations for tests to diagnose TB and detect drug resistance;
alignment with the latest WHO critical concentrations for phenotypic drug-susceptibility testing (DST) and the new definitions of pre-XDR-TB and XDR-TB;
updated information on building quality-assured TB testing and management capacity using the Stepwise Laboratory Quality Improvement Process Towards Accreditation (SLIPTA) approach (Score-TB package1);
updated information on assessing, analysing and optimising TB diagnostic networks; and
updated information on the use of next-generation sequencing (NGS) to detect mutations associated with drug resistance for surveillance purposes.
The document also provides references to resources and tools relevant for work on laboratory strengthening.
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Antimicrobial resistance (AMR) is a global human, animal, plant and environment health threat that needs to be addressed by every country. The impacts of AMR are wide-ranging in terms of human health, animal health, food security and safety, environmental effects on ecosystems and biodiversity, and
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socioeconomic development. Just like the climate crisis, AMR poses a significant threat to the delivery of the 2030 Agenda for Sustainable Development. The response to the AMR crisis has been spearheaded through the global action plan on antimicrobial resistance (GAP-AMR), developed by the World Health Organization (WHO) in 2015, in close collaboration with the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (WOAH), and formally endorsed by the three organizations’ governing bodies and by the Political Declaration of the high-level meeting of the United Nations General Assembly on AMR in 2016. In 2022, the three organizations officially became the Quadripartite by welcoming the United Nations Environment Programme (UNEP) into the alliance “to accelerate coordination strategy on human, animal and ecosystem health”.
The aim of the GAP-AMR is to ensure the continuity of successful treatment with effective and safe medicines.
Its strategic objectives include:
• improving the awareness and understanding of AMR;
• strengthening the knowledge and evidence base through surveillance and research;
• reducing the incidence of infection through effective sanitation, hygiene and infection prevention measures; optimizing the use of antimicrobial medicines in human and animal health; and
• developing the economic case for sustainable investment that takes account of the needs of all countries and increasing investment in new medicines, diagnostic tools, vaccines and other interventions.
With the adoption of the GAP-AMR, countries agreed to develop national action plans (NAPs) aligned with the GAP-AMR to mainstream AMR interventions nationally. Individually, the Quadripartite took action to advance AMR interventions in their respective sectors. FAO adopted a resolution on AMR recognizing that it poses an increasingly serious threat to public health and sustainable food production, and developed an AMR action plan to support the resolution’s implementation. For its part, WOAH developed a strategy on AMR aligned with the GAP-AMR, acknowledging the importance of a One Health approach to AMR. Similarly, more recently, UNEP’s governing body, the United Nations Environment Assembly, recognized that AMR is a current and increasing threat and a challenge to global health, food security and the sustainable development of all countries, and welcomed the GAP-AMR and the NAPs developed in accordance with its five overarching strategic objectives
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Today, the World Health Organization (WHO) is advancing the global fight against acute malnutrition in children under 5 with the launch of its new guideline on the prevention and management of wasting and nutritional oedema (acute malnutrition). This milestone is a crucial response to the persistent
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global issue of acute malnutrition, which affects millions of children worldwide.
In 2015, the world committed to achieving the Sustainable Development Goals (SDGs), including the ambitious target of eliminating malnutrition in all of its forms by 2030. However, despite these commitments, the proportion of children with acute malnutrition has persisted at a worrying level, affecting an estimated 45 million children under five worldwide in 2022.
In 2022, approximately 7.3 million children received treatment for severe acute malnutrition (SAM). Although treatment coverage has increased, children with SAM in many of the worst affected countries are still unable to access the full necessary care for them to recover.
The Global Action Plan (GAP) on child wasting recognized the need for updated normative guidance to support governments in the prevention and management of acute malnutrition. WHO answered this call to action and developed a comprehensive guideline that provides evidence-based recommendations and good practice statements and will be followed by guidance and tools for implementation.
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The Malaria Ministerial Conference, co-hosted by WHO and the Government of Cameroon on 6 March 2024, brought together more than 400 stakeholders, including Ministers of Health and senior representatives from the African countries hardest hit by malaria, global health leaders, scientists, civil socie
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ty and other partners. The pivotal meeting sought to leverage political commitment, scientific innovation and community engagement to reshape the trajectory of malaria control in high burden African countries, and beyond.
At the end of the meeting and in the weeks that followed, Ministers of Health from the 11 “High Burden High Impact” African countries (Burkina Faso, Cameroon, Democratic Republic of the Congo, Ghana, Mali, Mozambique, Niger, Nigeria, Sudan, Uganda and United Republic of Tanzania) signed the Yaoundé Declaration, pledging their “unwavering commitment” to the principle that “no one should die from malaria given the tools and systems available.” Success in reducing malaria morbidity and mortality will hinge on efforts by countries to translate this political commitment into actions and resources that will save lives.
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