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Malaria remains a significant public health concern in the SADC region, accounting for 20% of childhood deaths, as well as prompting numerous outpatient visits and hospitalisations. Around three-quarters of the population, including 35 million children under the age of five and 8.5 million pregnant
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women, are at risk. Transmission patterns vary from high and stable in the north to malaria-free in the south, with low, unstable and seasonal zones in between. Although interventions such as indoor residual spraying (IRS), insecticide-treated nets (ITNs/LLINs), intermittent preventive treatment in pregnancy (IPTp), rapid diagnostic tests (RDTs), and artemisinin-based combination therapies (ACTs) have reduced the malaria burden, challenges persist in terms of funding, human resources, surveillance, and cross-border coordination. Achieving malaria elimination in the SADC region requires harmonised regional standards, strengthened surveillance, and improved access to quality treatment and policy prioritisation.
Accessed on 27/08/2025.
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Epidemics and pandemics are some of the biggest threats to a safe and healthy world. But with effective preparedness and response measures, we can reduce their impacts and even stop them in their tracks.
Through the Programmatic Partnership with the European Union, 24 local Red Cross and Red Cres
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cent Societies have been working to keep communities healthy and safe from epidemics and pandemics with technical assistance, advocacy support and coordination from IFRC and European National Societies. They do so by equipping communities with knowledge and tools to stop the spread of diseases and by setting up systems so they can report outbreaks quickly, enabling a rapid response from authorities. National Societies have also significantly developed their own epidemic preparedness and response capacity.
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EWARS is a surveillance system developed by the World Health Organization to detect and respond quickly to disease outbreaks in emergency settings where normal health systems are disrupted. It allows health facilities to report priority diseases on a regular basis and generates alerts when unusual p
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atterns or suspected outbreaks occur. The system is designed to be simple and fast to set up, even in remote areas, and supports rapid public health action to prevent the spread of disease during crises.
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Data for Global Pandemic and Epidemic Intelligence
Fitzner, J.; – WHO Hub for Pandemic and Epidemic Intelligence
World Health Organization (WHO)
(2025)
C_WHO
The presentation “Data for Global Pandemic and Epidemic Intelligence” outlines how improved data collection, surveillance, analytics, and digital tools can strengthen global preparedness and response to health emergencies. It explains the concept of epidemic intelligence, highlighting the integr
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ation of multiple data sources—such as traditional surveillance, genomics, open-source information, and modelling—to support timely and evidence-based decision-making. The presentation also showcases initiatives of the WHO Hub for Pandemic and Epidemic Intelligence, including collaborative data platforms, pathogen genomics networks, analytic communities of practice, and a decision-support pandemic simulator designed to enhance rapid, coordinated responses to future outbreaks.
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The Manifesto to Secure a Healthy Planet for All – A Call for Emergency Action | InterAction Council
The Manifesto was launched at a High Level Event in London on the 31st July 2019, where Emergency response mechanisms to address the Climate and Environmental Crisis are being explored. The Manifesto has been developed in response to the increasing international and United Nations evidence and under
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standing of the severity of our global climate and environmental crisis. This builds upon collaborative action to advance the InterAction Council's Dublin Charter, endorsed at its Plenary Session in 2017. The overall aim is to secure a healthy planet for the wellbeing of future generations for all, by placing the health of the planet at the heart of decision making and establishing emergency response mechanisms at global, national and community levels.
Now more than ever, we need courageous leadership to take crucial decisions and actions to secure a healthy planet for all, including the very existence of human civilization. The InterAction Council is encouraged by the boldness and energy of our younger generations, as well as the commitment expressed by the 30 organisations endorsing the Manifesto. The establishment of the Digital Platform for Planet, Place and People, a Hub of the Commonwealth Centre for Digital Health, will act as a collaborative mechanism to promote innovation and rapid responses as a common good. Going forward, we welcome everyone to become a Guardian to Secure a Healthy Planet for All, and to support this initiative in scaling up the ambitions laid out in the Manifesto.
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Since late August 2022, cases of severe acute watery diarrhoea have been increasingly reported across Syria, concentrated
particularly along the Euphrates river. These were later confirmed to be cholera cases.3 Cholera is a disease caused by
bacteria that can be found in faeces, and spreads throug
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h people consuming contaminated water or food. It causes severe
watery diarrhoea and vomiting which lead to dehydration. If treated immediately, less than 1% of cases result in patients
dying. However, if timely treatment is not available, cholera can lead to death within hours in 25 to 50% of cases. The
situation is critical in Syria as the local population is facing a severe water crisis due to drought, falling groundwater levels,
reduced flow in the Euphrates River, and reduced functionality of Alouk water station. REACH has been monitoring
developments in Northeast Syria through regular data collection cycles, remote sensing data, and rapid needs assessments
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Compendium of Animal Rabies Prevention and Control, 2016
Brown C.M., Slavinski S., Ettestad P. et al
National Association of State Public Health Veterinarians Compendium of Animal Rabies Prevention and Control Committee
(2016)
C2
Rabies is a fatal viral zoonosis and serious public health problem.1 All mammals are believed to be susceptible to the disease, and for the purposes of this document, use of the term animal refers to mammals. The disease is an acute, progressive encephalitis caused by viruses in the genus Lyssavirus
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.
2 Rabies virus is the most important lyssavirus globally. In the
United States, multiple rabies virus variants are maintained in wild mammalian reservoir populations such as raccoons, skunks, foxes, and bats. Although the United States has been declared free from transmission of canine rabies virus variants, there is always a risk of reintroduction of these variants.The rabies virus is usually transmitted from animal to animal through bites. The incubation period is
highly variable. In domestic animals, it is generally 3 to 12 weeks, but can range from several days to months, exceeding 6 months.8 Rabies is communicable during the period of salivary shedding of rabies virus. Experimental and historic evidence documents that dogs, cats, and ferrets shed the virus for a few days prior to the onset of clinical signs and during illness. Clinical signs of rabies are variable and include inappetance, dysphagia, cranial nerve deficits, abnormal behavior, ataxia, paralysis, altered vocalization, and seizures. Progression to death is rapid. There are currently no known effective rabies antiviral drugs.
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The humanitarian crisis in Northeast Nigeria, driven by conflict, climate-related shocks, and food insecurity, has created immense challenges for the health sector in Borno, Adamawa, and Yobe (BAY) States. About 1.8 million people remain displaced(1), with inadequate access to healthcare services an
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d persistent disease outbreaks, malnutrition, and mental health challenges. This strategy outlines a comprehensive localization approach to strengthen the health sector's capacity by empowering local and national actors (L/NAs) include state and local government structures to lead humanitarian responses at respective levels with minimal oversight functions.
The localization strategy aligns with the global commitments of the Grand Bargain 2.0, prioritizing equitable partnerships, capacity sharing, and resource mobilization to enhance sustainable, community-owned health systems(2). Key components include increasing the visibility and meaningful participation of L/NAs in health sector coordination, promoting direct funding to local actors, and addressing systemic barriers such as governance, leadership, capacity, and resource gaps.
The global humanitarian community made a commitment, as reflected in the Grand Bargain 2.0, to localization (3) to improve the efficiency and effectiveness of humanitarian aid. A key priority of this commitment is to empower local actors to take a leading role in delivering assistance, ultimately leading to better outcomes for affected communities. A localized health response, strengthened by partnerships, can achieve several key outcomes, including rapid response and access, community acceptance, cost-effectiveness, links to long-term development, and increased accountability to the community. Localization in health matters because it ensures sustainable and community-owned health responses.
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The ongoing global pandemic of SARS-CoV-2 (Covid-19) poses unique diagnostic and clinical management challenges in regions where seasonal epidemic-prone diseases are endemic. Diseases such as dengue, malaria, seasonal influenza, leptospirosis, chikungunya, scrub typhus and bacterial infections often
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present with febrile syndromes that mimic or co-exist with SARS-CoV-2 infection, complicating diagnosis and treatment. This document provides guidelines for preventing, diagnosing and managing such co-infections. A high level of suspicion is essential during the monsoon and post-monsoon seasons, taking into account region-specific disease prevalence. While the WHO's case definition for SARS-CoV-2 is broad and sensitive, the need for parallel testing for co-infections, in accordance with the protocols of the MoHFW, ICMR, NVBDCP and NCDC, is necessitated by overlapping clinical features. Ensuring the availability of reliable rapid diagnostic kits and applying integrated clinical and laboratory approaches are crucial to improving patient outcomes in the context of concurrent infections.
Accessed on 26/08/2025.
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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
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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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Annex to Selection and use of Ebola in vitro diagnostic assays
These forms are intended only for clinicians and nurses taking care of patients with Ebola virus disease. They provide standardized information that needs to be collected by the clinicians at admission time, every day and at time of discharge.
These forms are intended only for clinicians and nurses taking care of patients with Ebola virus disease. They provide standardized information that needs to be collected by the clinicians at admission time, every day and at time of discharge.
Timely detection of novel coronavirus (2019-nCoV) infection cases is crucial to interrupt the spread of this virus. We assessed the required expertise and capacity for molecular detection of 2019-nCoV in specialised laboratories in 30 European Union/European Economic Area (EU/EEA) countries. Thirty-
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eight laboratories in 24 EU/EEA countries had diagnostic tests available by 29 January 2020. A coverage of all EU/EEA countries was expected by mid-February. Availability of primers/probes, positive controls and personnel were main implementation barriers.
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This document updates the earlier version published in April 2020. In recent weeks, information on the potential use of chloroquine or hydroxychloroquine for the treatment of people with COVID-19 has been disseminated in academic journals and public media. Although there are now ongoing clinical tri
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als testing the efficacy and safety of several medicines for COVID-19, as of the date of this document, there is a lack of quality evidence to demonstrate chloroquine and/or hydroxychloroquine are effective in the treatment of COVID-19. Evidence is recently emerging via small studies with sub-optimal methodologies that are conflicting.
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Über SARS-CoV-2-Testsysteme informieren das Bundesinstitut für Arzneimittel und Medizinprodukte (BfArM) und das Paul-Ehrlich-Institut. Die Informationen ergänzen sich, den rechtlichen Rahmen bietet u.a. die Coronavirus-Testverordnung-TestV.
Das BfArM bietet eine Liste von Antigen-Tests zum dir
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ekten Erregernachweis des Coronavirus SARS-CoV-2 an. In dieser Liste befinden sich diejenigen Tests, die sich laut Herstellerangaben gemäß den Vorgaben des Medizinproduktegesetzes (MPG) rechtmäßig in Europa bzw. Deutschland in Verkehr befinden und alle vom Paul-Ehrlich-Institut in Abstimmung mit dem Robert Koch-Institut (RKI) festgelegten Mindestkriterien für Antigen-Tests erfüllen.
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