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Category
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Toolboxes
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2
Lessons learned from recent public health events such as the COVID-19 pandemic, Ebola virus disease, Zika virus disease outbreaks, and other public health threats, including earthquakes and floods, have highlighted the need for countries to continuously develop, strengthen, and maintain capacities r
...
equired under the International Health Regulations (2005) (IHR (2005)).
Developing capacities for health security in a country requires the engagement of public and private entities across a broad range of sectors, including human and animal health, agriculture, environment, finance, security, emergency management, education, and transportation. The World Health Organization (WHO) is mandated through various resolutions, decisions, and reports of the World Health Assembly, and through the IHR (2005), to provide technical guidance and support to its Member States in developing, strengthening, and maintaining their health systems, including capacities required under the IHR (2005).
For countries to better prevent, prepare for, detect, notify, respond to, and recover from public health emergencies, they must build and maintain IHR core capacities and support the strengthening of health emergency prevention, preparedness, response, and resilience (HEPR) capacities. National Action Plans for Health Security (NAPHS), as capacity development plans, provide the tasks and resources needed to ensure adequate capacities are in place to prevent, detect, respond to, and recover from public health events in a sustainable manner. Investing in the resilience of these capacities within national health systems at national and local levels not only improves national health security but also helps safeguard economic, social, and political developments.
more
The protracted humanitarian situation in northeastern Nigeria, particularly in Borno, Adamawa, and Yobe (BAY) States, remains a concern due to ongoing insecurity, displacement, food insecurity, disease outbreaks, and climate-related shocks. To address these complex challenges, the health sector has
...
developed a comprehensive humanitarian response strategy aligned with the three States Development plans, Durable Solutions for the Population Displacement Plan, and the Humanitarian Need Response Plan for 2025. This strategy aims to reduce morbidity and mortality among crisisaffected populations by ensuring timely, equitable, and effective delivery of lifesaving health services, while strengthen the resilience of health system and enhancing local and national capacities for sustainable health response in protracted emergency.
Supported by an in-depth analysis of the ongoing health humanitarian response using the Strengths, Weaknesses, Opportunities, and Threats (SWOT) methodology, the strategy is guided by three key objectives:
1. Provide access to lifesaving interventions and sustain an effective response to the prolonged health emergency.
2. Prevent, mitigate, and prepare for health risks from all hazards and respond to all health emergencies.
3. Advance the primary health care approach and essential health system capacities for universal health coverage.
To achieve these objectives, the strategy employs the “Five C” framework which refers to:
• Collaborative Surveillance: Enhancing collaborative efforts for effective monitoring.
• Community Protection: Implementing community-based protection measures.
• Safe and Scalable Care: Ensuring care that is both secure and scalable.
• Access to Countermeasures: Facilitating access to necessary countermeasures.
• Emergency Coordination: Coordinating emergency responses efficiently.
These proactive approaches are designed to be more anticipatory and preemptive rather than reactive, aiming to meet the needs of the crisis-affected population by providing lifesaving interventions, enhancing preventive and anticipatory actions, and ensuring the resilience of the health system. All actions are guided by International Humanitarian Standards and the Humanitarian Principles.
The implementation of the health humanitarian response strategy will involve collaboration with local authorities, non-governmental organizations (NGOs), and international organizations. The strategy emphasizes localization and resource mobilization, efficient logistics and supply chain management, mainstreaming protection, and the deployment and training of healthcare workers. Continuous monitoring and periodic evaluation will ensure the effectiveness of the response. Cross-sector collaboration with sectors such as WASH, Nutrition, Education, and Protection will be crucial to enhance the quality and reach of health interventions. Additionally, sustainability and transition approaches will ensure long-term health outcomes and benefits, bridging the gap from humanitarian to development efforts.
By adopting this comprehensive approach, the humanitarian response in northeastern Nigeria, particularly in BAY States, can be effectively guided, ultimately reducing the suffering of affected populations.
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The WHO Vision and eye screening implementation handbook (VESIH) offers a step-by-step guidance for conducting vision and eye screenings in community and primary care settings. The evidence-based interventions are drawn from the WHO Package of eye care interventions and developed with a focus on del
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ivering screenings easily, safely, and effectively in low- and low–intermediate-resource settings. The early identification through screenings ensures timely treatments and management to avoid vision impairment in high-risk populations, including newborns, pre-school children, school children, and older adults.
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These guidelines promote the delivery of people-centred health services for STIs by providing evidence-based recommendations related to decentralization, integration, task sharing and digital health. These recommendations complement existing WHO guidelines for STI testing, treatment and
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management, and other service delivery interventions, such as self-care interventions. All the recommendations will be incorporated into the forthcoming WHO consolidated guidelines on STI prevention and care.
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Rwanda Malaria Strategic Plan 2020–2024
Ministry of Health, Rwanda; Rwanda Biomedical Centre (RBC)
Ministry of Health, Republic of Rwanda
(2020)
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The Rwanda Malaria Strategic Plan 2020–2024 outlines Rwanda’s national strategy to reduce malaria morbidity and mortality by at least 50% compared to 2019 levels. The vision is a malaria-free Rwanda contributing to socioeconomic development.
The plan includes strengthening prevention through lo
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ng-lasting insecticide-treated nets, indoor residual spraying, and larval source management; ensuring universal access to testing and treatment; improving surveillance and data use; and enhancing program management, coordination, and financing. It also emphasizes community engagement and behavior change to ensure at least 85% of the at-risk population adopts protective practices.
The strategy builds on past lessons, involves multi-sectoral collaboration, and aligns with global malaria goals. It highlights equity, quality services, and evidence-based interventions as guiding principles, aiming to mobilize national and international resources for sustained impact.
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The goal of producing these Standard Operating Procedures (SOPs) was therefore targeted at fostering standardization across all levels of care to ensure HIV viral load monitoring remains a basic right offered to all people living with HIV (PLHIV) on lifelong antiretroviral therapy (ART) regardless o
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f their location and place where they are accessing care.
These SOPs are designed to provide practical information to healthcare providers. They must be considered as supplementary and secondary to all guidelines issued by the MOH, including the Malawi Clinical Management of HIV in Children and Adults Guidelines and the Malawi HIV Testing Services (HTS) Guidelines.
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Biodiversity and Health in the Face of Climate Change pp 47–66
This chapter reviews the emerging importance of pollen allergies in relation to ongoing climate change. Allergic diseases have been increasing in prevalence over the last decades, partly as the result of the impact of climate change.
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Increased sensitisation rates and more severe symptoms have been the partial outcome of: increased pollen production of wind-pollinated plants resulting in long-term increased abundance of pollen in the air we breathe; earlier shifts of airborne pollen seasons making occurrence of allergic symptoms harder to predict and deal with efficiently; increased allergenicity of pollen causing more severe health effects in allergic individuals; introduction of new, invasive allergenic plant species causing new sensitisations; environment-environment interactions, such as plants and hosted microorganisms, i.e. fungi and bacteria, which comprise a complex and dynamic system, with additive, presently unforeseeable influences on human health; environment-human interactions, as the consequence of a combination of environmental factors, like air pollution, global warming, urbanisation and microclimatic variability, which create a multi-resolution spatiotemporal system that requires new processing technologies and huge data inflow in order to be thoroughly investigated. We suggest that novel, real-time, personalised pollen information services, like mobile-app risk alerts, must be developed to provide the optimum first line of allergy management.
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The meeting was held from 26 to 27 March 2018 to review and discuss the following topics:
Advances and challenges in the use of fTLC, and new approaches to detecting mycolactone using monoclonal antibodies (mAbs).
The status of development of rapid diagnostic tests (RDTs) targeting the MUL
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_3720 protein.
The role of PCR as a reference test, and hurdles in providing a confirmatory diagnosis and in establishing a quality assurance programme.
New molecular tools with potential for implementation at a level lower than in the national or regional reference laboratory, such as loop-mediated isothermal amplification (LAMP) and recombinase polymerase amplification (RPA).
The need to harmonize and standardize methods for collection and preparation of specimens, so samples can be referred for diagnosis and stored for evaluation of new diagnostic tests in optimal conditions.
Barriers to accessing early diagnosis and treatment, including coordination at the programme level, and lack of adequate diagnostic tools.
Defining target product profiles (TPPs) to guide the development of new diagnostic tools that can be applied at different levels of the health system. Participants agreed that two TPPs would be developed to address the current gaps: (i) a rapid test for BU diagnosis at the primary health-care level; and (ii) a test for diagnosis of BU that can also assist in treatment monitoring and differential diagnosis at the district hospital or reference centre.
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Little is known about asthma control in the rising number of African children who suffer from this condition. The Achieving Control of Asthma in Children in Africa (ACACIA) study is an observational study collecting evidence about paediatric asthma in urban areas of Ghana, Malawi, Nigeria, South Afr
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ica, Uganda and Zimbabwe. The primary objectives are: (1) to identify 3000 children aged between 12 years and 14 years with asthma symptoms; and (2) to assess their asthma control, current treatment, knowledge of and attitudes to asthma and barriers to achieving good control. Secondary objective is to develop interventions addressing identified barriers to good symptom control.
Each centre will undertake screening to identify 500 school children with asthma symptoms using questions from the Global Asthma Network’s questionnaire. Children identified to have asthma symptoms will fill in a digital survey, including: Asthma Control Test, questions on medication usage and adherence, medical care, the Brief-Illness Perception questionnaire and environmental factors. Exhaled nitric oxide testing and prebronchodilator and postbronchodilator spirometry will be performed. A subgroup of children will participate in focus group discussions. Results will be analysed using descriptive statistics and comparative analysis. Informed by these results, we will assess the feasibility of potential interventions, including the adaption of a UK-based theatre performance about asthma attitudes and digital solutions to improve asthma management.
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Medical devices are used for the prevention, diagnosis and treatment of illness and diseases and for rehabilitation. WHO developed guidance on medical device donation in 2011, which has been now reviewed, with new evidence, new references on considerations for medical device solicitation and provisi
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on, risks associated with inappropriate donations, the responsibilities of donors and recipient, and the steps they should follow before, during and after a donation. It includes three sections: description of major problems that may be faced during the donation process, listing of best practices for donors and recipients and addressing situations requiring special attention. It also has three annexes for further reading: the criteria for the acceptability of a donation, literature review on donations of medical devices between 2010 and 2023 and a flyer. This document is intended to improve the quality of medical devices donations, including medical equipment, single-use medical devices and in-vitro diagnostics, to provide maximum benefit to all stakeholders. The considerations can be used to develop institutional or national policies and regulations for medical devices donations. This document is intended for use by any organization, expert or practitioner involved in the donation, procurement, management of medical devices, including health workers, biomedical engineers, health managers, policymakers, donors, nongovernmental organizations and academic institutions.
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Diagnostic, Care and Treatment Support Services. Volume 2: Improving Quality & Safety of Health Services.
National Health Quality Standards. Standards and Guidelines for Hospital Standards. Volume 2
Ancillary and Occupational Services. Volume 3: Improving Quality & Safety of Health Services. National Health Quality Standards. Standards and Guidelines for Hospital Standards. Volume 3
WASH FIT Digital is a free, open-access digital tool, based on the WASH FIT guide developed by WHO and UNICEF. WASH FIT is designed to help health care facilities improve quality of care through improved water, sanitation, and hygiene (WASH). Built on the mWater digital monitoring platform, WASH FIT
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Digital includes a set of forms for implementing a risk-based management approach developed by WHO and UNICEF. The site also includes a dashboard to visualize the process and keep track of progress
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AVADAR is a mobile sms-based software application designed to improve the quality and sensitivity of Acute Flaccid Paralysis (AFP) surveillance by health workers and key informants within hospital facilities and local communities.
The idea is simpl
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e: Health workers visit remote villages to check if local inhabitants have any symptoms of a range of life-threatening infectious diseases, including polio and measles. Then, with the mobile app, they quickly and easily alert WHO.
The AFP video component was developed by World Health Organization (WHO) and eHA, and the software design component was handled by Novel-T. To date, eHA has translated the app into 17 languages.
Informant Selection & Capacity Building
The selection of informants (including health workers) was led by the WHO and each country’s Ministry of Health team. Once selected, screening and training was jointly conducted by WHO, the Ministries of Health, and eHealth Africa team.
In several countries, “special informants” with limited literacy participate in the project via a simplified version of the app that only requires a “yes” or “no” response to having seen a child with AFP symptoms
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A module from the suite of health service capacity assessments in the context of the COVID-19 pandemic, Interim Guidance 20 October 2020.
This self-assessment tool is designed for acute health-care facilities (i.e. tertiary and secondary) but can be modified for the use in long-term care facilities
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, to help identify, prioritize and address the gaps in infection prevention and control (IPC) capacity in managing their response to COVID-19. The tool should be used by IPC professionals and/or those responsible for disaster planning or outbreak management in the facility (such as the response to the COVID-19 outbreak) at the start of the improvement process. A sample workplan template is provided to address gaps identified and record required actions.
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Overview of technologies for the treatment of infectious and sharp waste from health care facilities
This document provides an overview of specific health care waste technologies for the treatment of solid infectious and sharp waste. For each technology, details of its operation, effects on the environment and health, requirements for installation, capacities for treating waste, examples of consuma
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bles and advantages and disadvantages are described. The document is designed for health care facility administrators and planners, WASH and infection prevention control staff, national planners, donors and partners.
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Une composante intégrale de l’investissement dans la santé
Sector Environmental Guidelines, Full technical Update
A Community Guide to Environmental Health > Chapter 19: Health Care Waste. Please download this chapter from the website of Hesperian