Morbidity and Mortality Weekly Report (MMWR) October 4, 2019 / 68(39);851–854
To guide One Health capacity building efforts in the Republic of Guinea in the wake of the 2014–2016 Ebola virus disease (EVD) outbreak, we sought to identify and assess the existing systems and structures for zoonotic disease detection and contro
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l. We partnered with the government ministries responsible for human, animal, and environmental health to identify a list of zoonotic diseases – rabies, anthrax, brucellosis, viral hemorrhagic fevers, trypanosomiasis and highly pathogenic avian influenza – as the country's top priorities. We used each priority disease as a case study to identify existing processes for prevention, surveillance, diagnosis, laboratory confirmation, reporting and response across the three ministries. Results were used to produce disease-specific systems “maps” emphasizing linkages across the systems, as well as opportunities for improvement. We identified brucellosis as a particularly neglected condition. Past efforts to build avian influenza capabilities, which had degraded substantially in less than a decade, highlighted the challenge of sustainability. We observed a keen interest across sectors to reinvigorate national rabies control, and given the regional and global support for One Health approaches to rabies elimination, rabies could serve as an ideal disease to test incipient One Health coordination mechanisms and procedures. Overall, we identified five major categories of gaps and challenges: (1) Coordination; (2) Training; (3) Infrastructure; (4) Public Awareness; and (5) Research. We developed and prioritized recommendations to address the gaps, estimated the level of resource investment needed, and estimated a timeline for implementation. These prioritized recommendations can be used by the Government of Guinea to plan strategically for future One Health efforts, ideally under the auspices of the national One Health Platform. This work demonstrates an effective methodology for mapping systems and structures for zoonotic diseases, and the benefit of conducting a baseline review of systemic capabilities prior to embarking on capacity building efforts.
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The preparedness strengthening team deployed to Ghana focused on specific objectives in order to assist the country in becoming as operationally prepared as possible to detect, investigate and report potential EVD cases effectively and safely and to mount an effective response to prevent a larger
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outbreak. To accomplish this goal, the team conducted “scoping” activities, stakeholder meetings, site visits and a “table-top” simulation exercise to determine what systems were in place and what aspects of preparedness could be strengthened.
It is organized in 10 components of the WHO consolidated checklist for EVD preparedness: 1) planning and coordination; 2) epidemiological and laboratory surveillance; 3) rapid response teams; 4) contact tracing; 5) points of entry; 6) laboratory; 7) case management; 8) infection prevention and control; 9) social mobilization and risk communication; 10) budget.
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Mpox is an emerging zoonotic disease caused by the mpox virus, a member of the Orthopoxvirus genus closely related to the variola virus that causes smallpox. Mpox was first discovered in 1958 when outbreaks of a pox-like disease occurred in monkeys kept for research. The first human case was recorde
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d in 1970 in the Democratic Republic of the Congo (DRC) during a period of intensified effort to eliminate smallpox and since then the infection has been reported in a number of African countries. Mpox can spread in humans through close contact, usually skin-to-skin contact, including sexual contact, with an infected person or animal, as well as with materials contaminated with the virus such as clothing, beddings and towels, and respiratory droplets in prolonged face to face contact. People remain infectious from the onset of symptoms until all the lesions have scabbed and healed. The virus may spread from infected animals through handling infected meat or through bites or scratches. Diagnosis is confirmed by polymerase chain reaction (PCR) testing of material from a lesion for the virus’s DNA. Two separate clades of the mpox virus are currently circulating in Africa: Clade I, which includes subclades Ia and Ib, and Clade II, comprising subclades IIa and IIb. Clade Ia and Clade Ib have been associated with ongoing human-to-human transmission and are presently responsible for outbreaks in the Democratic Republic of the Congo (DRC), while Clade Ib is also contributing to outbreaks in Burundi and other countries.
In 2022‒2023 mpox caused a global outbreak in over 110 countries, most of which had no previous history of the disease, primarily driven by human-to-human transmission of clade II through sexual contact. In just over a year, over 90,000 cases and 150 deaths were reported to the WHO. For the second time since 2022, mpox has been declared a global health emergency as the virus spreads rapidly across the African continent. On 13 Aug 2024, Africa CDC declared the ongoing mpox outbreak a Public Health Emergency of Continental Security (PHECS), marking the first such declaration by the agency since its inception in 2017.7 This declaration empowered the Africa CDC to lead and coordinate responses to the mpox outbreak across affected African countries. On August 14, 2024, the WHO declared the resurgence of mpox a Public Health Emergency of International Concern (PHEIC) emphasizing the need for coordinated international response.
As of August 2024, Mpox has expanded beyond its traditional endemic regions, with new cases reported in countries including Sweden, Thailand, the Philippines, and Pakistan. Sweden has confirmed its first case of Clade 1 variant, which has been rapidly spreading in Africa, particularly in DRC. The emergence of this new variant raises concerns about its potential for higher lethality and transmission rates outside Africa.
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Keep Safe – Keep Serving; Liberia: Updated Sept 25 2014.
This document is intended to inform infection prevention and control practices and supply needs in healthcare facilities. As the Ebola outbreak
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evolves, the document will need to be adapted accordingly.
The guidance provides considerations for establishing Ebola Care Centres. Because needs and resources may vary in different settings, these recommendations should be adapted to the situation in each county
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According to WHO, infection prevention and control (IPC) is a scientific approach and practical solution designed to prevent harm caused by infection to patients and health workers. It is grounded in infectious diseases, epidemiology, social science
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and health system strengthening. IPC occupies a unique position in the field of patient safety and quality universal health coverage since it is relevant to health workers and patients at every single health-care encounter. Poor WASH and IPC lead to health acquired infections, transmission of diseases from health facilities to communities and increased use of antibiotics and exacerbate outbreak and spread of infections- in this case- COVID- 19. On the contrary, effective IPC reduces hospital-acquired infections by at least 30% (WHO 2016).
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This revised Emergency Appeal will support 400,000 of the most vulnerable people in these areas for six months, and will also undertake preparedness and prevention work in Equateur’s four neighbouring Provinces.
Social distancing is an action taken to minimise contact with other individuals; social distancing measures comprise one category of non-pharmaceutical countermeasures (NPCs)1 aimed at reducing disease transmission and thereby also reducing pressure on health services.
This document builds upon exi
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sting ECDC documents, including guidelines for the use of non-pharmaceutical measures to delay and mitigate the impact of 2019-nCoV, a rapid risk assessment: outbreak of novel coronavirus disease – 5th update, a technical report on the use of evidence in decision-making during public health emergencies, and a guidance document on community engagement for public health events caused by communicable disease threats in the EU/EEA.
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A tool for easy access to infectious disease surveillance data related to the Ebola Virus Disease (EVD) outbreak currently evolving in West Africa.
The atlas is based on the best available data on EVD cases in the countries with community transmiss
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ion and on medical evacuations of patients and people exposed to EVD from these countries.
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This operational guide addresses important infection prevention and control (IPC) measures that should be implemented during a diphtheria outbreak and primarily addresses respiratory Corynebacterium
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diphtheriae (C. diphtheria).
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Monkeypox is a viral zoonotic disease, caused by monkeypox virus, recognized as the most important orthopoxvirus infection after the eradication of smallpox.
This course offers public health officers and health workers in-depth information to understand the epidemiology, modes of transmission, clin
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ical presentation, diagnostics, and treatment of monkeypox, as well as the strategies needed for effective prevention and outbreak investigation and response.
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Monkeypox virus is an orthopoxvirus that causes human monkeypox, a viral disease with symptoms similar to smallpox, including fever and rash. Following the worldwide eradication of smallpox in 1980, monkeypox emerged as the most significant orthopoxvirus infection in humans. Cases are most often rep
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orted from rural areas of Central and West African countries, particularly in regions close to tropical rainforest where people may have contact with infected animals. Someone can become infected through direct contact with respiratory droplets of another person who has monkeypox in the home or in a health facility, or with contaminated materials such as bedding. Although these are the main modes of person-to-person transmission, monkeypox outbreaks tend to occur in small clusters of a few cases without leading to widespread community transmission. For this reason, outbreaks can be easily controlled when responded to rapidly. On several occasions, monkeypox has been reported in other regions due to importation by travelers or infected animals. This course provides a general introduction to the disease through a video and accompanying downloadable presentation that can be reviewed at your own pace. It is intended for health personnel responsible for prevention and control of monkeypox, and for the general public.
The content and scope of this course on monkeypox have been tailored for outbreaks in African countries where the disease is endemic. The course material was last updated in 2020 and may not reflect most recent WHO guidance issued for the multi-country outbreak in 2022.
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The document titled "Fason pou Gen Laviktwa sou Kolera" (How to Achieve Victory over Cholera) provides comprehensive guidelines on the clinical presentation and management of cholera, particularly in the context of the 2010 Haiti outbreak. It emphas
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izes rapid rehydration as a lifesaving measure, detailing protocols for both oral rehydration solutions (ORS) and intravenous (IV) fluids. The document outlines appropriate antibiotic treatments based on patient categories, underscores the importance of proper sanitation, and offers strategies for effective outbreak control. Additionally, it provides guidance on recognizing severe dehydration and the necessity of immediate medical intervention to reduce mortality associated with cholera.
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CDC course for volunteers going to Africa. Please find out mor infos on the CDC website
March 2020
This document provides a high-level mapping of outbreak stages with guidance on how to time the minimum uptake of different interventions that have been recommended by Africa CDC, driven by evidence and science.