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The document Integrated Disease Surveillance and Response Technical Guidelines, Booklet Four: Sections 8 and 9 (Third Edition, 2019) provides guidance for strengthening public health surveillance and response systems in the WHO African Region. It focuses on monitoring, supervision, evaluation, and f
...
eedback mechanisms to improve the performance and quality of Integrated Disease Surveillance and Response (IDSR) systems. The text outlines key surveillance core functions—such as case detection, reporting, data analysis, outbreak investigation, preparedness, response, and feedback—and introduces indicators to measure system effectiveness, including timeliness, completeness, and data quality. Additionally, it discusses the implementation of electronic IDSR (eIDSR) to enhance real-time reporting and outbreak management. Overall, the booklet aims to strengthen early detection, rapid response, and health security capacity across all levels of the health system.
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Ewha Med J Volume 47(3); 2024
The article “Reporting Guidelines for Community Outbreak Investigation (G-CORE): A Study Protocol” describes the development of standardized reporting guidelines for investigations of infectious disease outbreaks in community settings. The authors highlight that ou
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tbreak reports are often inconsistent and lack important epidemiological information, which makes it difficult to compare studies and apply findings to public health practice. The G-CORE project aims to create a structured guideline that improves the quality, transparency, and completeness of outbreak investigation reports. By establishing clear reporting standards, the guideline intends to support researchers and public health professionals in documenting outbreaks more systematically and to facilitate better communication, analysis, and response to infectious disease events.
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The document is a report by an expert group that presents a framework for improving future pandemic preparedness and emergency response, particularly in the context of India but with relevance to global health systems. It analyzes lessons learned from COVID-19 and past epidemics, identifies key weak
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nesses in areas such as governance, surveillance, data management, research, and coordination, and proposes a comprehensive strategy to address them. The report emphasizes the importance of early detection, strong public health infrastructure, coordinated governance, scientific innovation, and international collaboration. A central idea is the ability to respond effectively within the first 100 days of an outbreak by having systems, resources, and policies already in place. Overall, it aims to strengthen resilience and ensure faster, more efficient responses to future health crises.
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The document is a World Health Organization publication about communicable disease surveillance and response systems. It explains that communicable disease surveillance is a core public health function used to collect, analyse and interpret health data so that outbreaks and other health threats can
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be detected early, monitored and responded to appropriately. The guide describes how surveillance systems help provide early warning of potential threats, support programme monitoring, enable outbreak detection and facilitate timely public health action to prevent disease spread. It also discusses the design and evaluation of surveillance systems and how the information they generate is used for decision-making in public health practice.
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The document is a practical toolkit that provides guidance for healthcare facilities on how to prepare for emergencies, including pandemics and other disasters. It explains how to conduct risk assessments using an all-hazards approach, helping facilities identify potential threats such as natural di
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sasters, technical failures, and disease outbreaks. The text outlines how to develop emergency preparedness and pandemic plans, including key elements like communication, staffing, resource management, and coordination with local, state, and federal authorities. It also describes the four phases of emergency management—mitigation, preparedness, response, and recovery—and emphasizes continuous evaluation and improvement. Overall, the document aims to help healthcare organizations ensure continuity of care and protect patients and staff during emergencies.
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The document “Strengthening the global architecture for health emergency prevention, preparedness, response and resilience” presents a report by the Director-General of the World Health Organization (WHO) to the World Health Assembly on global efforts to improve preparedness and response to heal
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th emergencies. It reviews the implementation of the Health Emergency Prevention, Preparedness, Response and Resilience (HEPR) framework and highlights lessons learned from recent crises such as COVID-19. The report describes international initiatives to strengthen global health governance, surveillance systems, laboratory networks, community protection measures, healthcare capacity and access to medical countermeasures like vaccines and diagnostics. It also discusses coordination of emergency responses, support for countries facing outbreaks or humanitarian crises, and the importance of international cooperation. In addition, the report emphasizes the need for sustainable and coordinated financing to strengthen global health security and ensure that countries can better prevent, detect and respond to future health threats.
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The paper “Artificial Intelligence for Public Health Surveillance in Africa: Applications and Opportunities” examines how artificial intelligence (AI) can improve public health systems across Africa, particularly in low-resource settings. It explores how machine learning and other AI techniques
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are being used for disease detection, outbreak prediction, real-time surveillance, and health resource management.
The authors focus on major public health challenges such as HIV, cholera, Ebola, measles, tuberculosis, malaria, COVID-19, and mental health. Through numerous case studies, the paper shows that AI can enhance the accuracy and speed of disease detection, predict outbreaks more effectively than traditional methods, support vaccination strategies, and optimize healthcare resource allocation. At the same time, it discusses important barriers to implementation, including limited data quality, infrastructure constraints, ethical concerns, and shortages of technical expertise.
Overall, the paper highlights AI’s strong potential to strengthen disease surveillance and health outcomes in Africa while emphasizing the need for careful integration, improved data systems, and supportive policy frameworks.
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Populations affected by emergencies are continually at risk of outbreaks of epidemic-prone diseases and other public health hazards. This operational guidance aims to guide decision-making on when and how to implement and strengthen Early Warning Alert and Response (EWAR) in preparation for and resp
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onse to emergencies. Each module aims to provide updated operational guidance for EWAR practices, which may be more easily understood and applied during emergencies. Through its application, this operational guidance aims to contribute to:
- earlier detection of acute public health events
- earlier and more effective response
- reduced impact of emergencies on health
- increased trust of the population in the (public) health system
- fulfilling our collective commitments to the International Health Regulations (IHR,
2005).
This guidance was developed jointly by 69 experts from more than 20 organizations from global level to country level.
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This multi-hazard Health Emergency Alert and Response Framework provides guidance for coordinating emergency response in countries, under the global Health Emergency Preparedness, Resilience and Response (HEPR) framework. It outlines the public health functions, coordination systems and actions need
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ed for effective local, sub-national and national response to a broad range of health emergencies, including disasters. The audience for this framework is the primary national and sub-national authorities with the designated responsibility for health emergency coordination.
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This field guide is designed for use by FHI 360 staff and partner organizations responsible for ensuring quality clinical services, at both facility and non-facility levels. The guide provides general information on how to organize, implement and follow up on quality assurance/quality improvement cl
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inical facility and service assessments.
The accompanying checklists are intended to be used with the clinical facility assessment guide.
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Quality Assurance (QA) and Quality Improvement (QI). The guide provides general information on how to organize, implement and follow up on quality assurance/quality improvement clinical facility and service assessments. At the website you will find checklists intended to be used with the clinical fa
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cility assessment guide
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This compendium collates current tools and resources on quality improvement developed by the WHO Service Delivery and Safety Department and provides examples of how the tools and resources have been applied in country settings. The target audience for this document are ministries of health, facility
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quality improvement teams, researchers and development agencies. WHO technical programmes, regional and country offices can also use the document in their technical cooperation work with the identified audience. Those working to improve the quality of health service delivery can also make good use of this resource
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Due to high routine vaccination coverage, overall counts of diphtheria case have significantly declined in the Western Pacific Region recently. However, diphtheria is still prevalent in several countries and areas of the Region and remains a public health issue due to its high case fatality rate.
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This Field Guide for Preparedness and Response to Diphtheria Outbreaks in the Western Pacific Region is a reference resource for Member States to develop national guidelines adapted to their local context. Countries may also use this Guide to facilitate outbreak preparedness and public health responses to reduce morbidity and mortality due to diphtheria.
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Over the past few decades and throughout the world, the landscape of adolescent health has been altered dramatically. Currently, the total population of adolescents between the ages of 10 and 19 years is 1.2 billion – the largest generation of young people in history. The vast majority of adolesce
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nts (85%) live in developing countries where, in many areas, they make up more than a third of the population. They face a variety of different experiences given the diverse political, economic, social and cultural realities within their communities. Although, for many, adolescence is a period of learning and building confidence in a nurturing environment, for others it is a period of heightened risk and complex challenges.
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Dengue is a mosquito-borne viral disease that occurs mainly in the tropics and subtropics but has a high potential to spread to new areas. Dengue infections are climate sensitive, so it is important to better understand how changing climate factors affect the potential for geographic spread and futu
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re dengue epidemics. Vectorial capacity (VC) describes a vector's propensity to transmit dengue taking into account human, virus, and vector interactions. VC is highly temperature dependent, but most dengue models only take mean temperature values into account. Recent evidence shows that diurnal temperature range (DTR) plays an important role in influencing the behavior of the primary dengue vector Aedes aegypti. In this study, we used relative VC to estimate dengue epidemic potential (DEP) based on the temperature and DTR dependence of the parameters of A. aegypti. We found a strong temperature dependence of DEP; it peaked at a mean temperature of 29.3°C when DTR was 0°C and at 20°C when DTR was 20°C. Increasing average temperatures up to 29°C led to an increased DEP, but temperatures above 29°C reduced DEP. In tropical areas where the mean temperatures are close to 29°C, a small DTR increased DEP while a large DTR reduced it. In cold to temperate or extremely hot climates where the mean temperatures are far from 29°C, increasing DTR was associated with increasing DEP. Incorporating these findings using historical and predicted temperature and DTR over a two hundred year period (1901-2099), we found an increasing trend of global DEP in temperate regions. Small increases in DEP were observed over the last 100 years and large increases are expected by the end of this century in temperate Northern Hemisphere regions using climate change projections. These findings illustrate the importance of including DTR when mapping DEP based on VC.
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These policy guidelines provide a strategic approach and new recommendations for integrated TB and HIV services for patients suffering from substance-abuse addiction. The key recommendations fall under three main categories: joint planning, key interventions, and overcoming barriers.