Ce document fournit des conseils provisoires sur la prévention, l'identification et la gestion de l'infection des travailleurs de la santé dans le contexte de COVID-19. Il s'adresse aux services de santé au travail, aux services ou points focaux de prévention et de contrôle des infections, aux
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administrateurs des établissements de santé et aux autorités de santé publique, tant au niveau national qu'au niveau des établissements.
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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 simple: Health workers visit remote villages to check if
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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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Coronaviruses are a large family of viruses that are known to cause illness ranging from the common cold to more severe diseases such as Middle East Respiratory Syndrome (MERS) and Severe Acute Respiratory Syndrome (SARS).
A novel coronavirus (CoV) was identified in 2019 in Wuhan, China. This is a
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new coronavirus that has not been previously identified in humans.
This course provides a general introduction to nCoV and emerging respiratory viruses and is intended for public health professionals, incident managers and personnel working for the United Nations, international organizations and NGOs.
This course is also available in the following languages:
français - Español - 中文 - Português - العربية - русский - Türkçe - српски језик - فارسی - हिन्दी, हिंदी - македонски јазик - Tiếng Việt - Indian sign language - magyar - Bahasa Indonesia - বাংলা - اردو - Kiswahili - አማርኛ - ଓଡିଆ - Hausa - Tetun - Deutsch - Èdè Yorùbá - Asụsụ Igbo - ਪੰਜਾਬੀ - isiZulu
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L’orthopoxvirus simien ou virus de la variole du singe (MPXV), est un virus à ADN double brin qui appartient au genre Orthopoxvirus de la famille
des Poxviridés. Les poxvirus causent des maladies chez l’espèce humaine et beaucoup d’autres animaux ; l’infection se manifeste généralement
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par la formation de lésions, de nodules cutanés ou d’une éruption cutanée disséminée. Les autres espèces d’orthopoxvirus (OPXV) pathogènes pour l’être humain comprennent le virus de la variole bovine et le virus variolique (responsable de la variole, qui a été éradiquée). Le virus de la vaccine est également un OPXV qui a été utilisé pour la vaccination humaine, et a été un outil essentiel pour l’éradication de la variole, obtenue en 1980. Le MPXV doit son nom au fait qu’il a été identifié pour la première fois chez le singe. Le MPXV se retrouve principalement chez les rongeurs, mais son réservoir reste indéterminé. Il existe deux clades connus du MPXV, l’un endémique en Afrique de l’Ouest, et l’autre dans la région du bassin du Congo.
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Les coronavirus sont une vaste famille de virus susceptibles de provoquer des maladies diverses chez l'homme, allant du simple rhume au syndrome respiratoire du Moyen-Orient (MERS) et au syndrome respiratoire aigu sévère (SRAS).
Un nouveau coronavirus (CoV) a été identifié en 2019 à Wuhan,
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en Chine. Il s'agit d'un nouveau coronavirus qui n'avait pas encore été identifié chez l'homme.
Ce cours constitue une introduction générale au nCoV et aux virus respiratoires émergents ; il est destiné aux professionnels de santé publique, aux gestionnaires d'incidents, coordonnateurs d’urgence et aux collaborateurs travaillant pour les Nations Unies, les organisations internationales, ainsi que les ONG.
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dans le contexte de la pandémie de COVID-19
The updated List of Essential Diagnostics contains 46 general tests that can be used for routine patient care as well as for the detection and diagnosis of a wide array of disease conditions, and 69 tests intended for the
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detection, diagnosis and monitoring of specific diseases.
The List is divided into two sections depending on the user and setting: one for community settings, which includes self-testing; and a second one for clinical laboratories, which can be general and specialized facilities.
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Health ministries currently lack effective tools for monitoring and evaluation of schistosomiasis control programmes. Egg detection can be used, but the cost, challenges of obtaining samples, and the need for trained personnel and equipment limit th
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e frequency of monitoring. The purpose of this TPP is to guide the development of new diagnostic tools to reliably measure when prevalence is above or below a cut-off of 10% in school-aged children. Communities remaining above 10% require annual MDA, while communities below 10% can reduce MDA frequency as long as < 10% prevalence can be maintained. However, the lack of a reliable test has hindered the development of maintenance strategies. The test is also needed to track changes of prevalence > 10% to ensure that annual MDA is reducing overall prevalence.
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This manual focuses on the availability and clinical use of oxygen therapy in children in health facilities by providing the practical aspects for health workers, biomedical engineers, and administrators. It addresses the need for appropriate detection
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of hypoxaemia, use of pulse oximetry, clinical use of oxygen and delivery systems and monitoring of patients on oxygen therapy.
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The Strategic plan aims to ensure alignment of preparedness and readiness actions in the nine countries focusing on eight technical areas: strengthening multisectoral coordination; surveillance for early detection; laboratory diagnostic capacity; po
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ints of entry; rapid response teams; risk communication, social mobilization and community engagement; case management and infection prevention and control (IPC) capacities; and, operations support and logistics. The purpose of the WHO Regional Strategic Plan is to ensure that the countries bordering the Democratic Republic of the Congo are prepared and ready to implement timely and effective risk mitigation, detection and response measures should there be any importation of EVD cases.
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Advising principles. The purpose of this document is to support competent authorities in charge of IHR implementation to improve national capacities for the prevention, detection and control of events, by strengthening communications and coordinatio
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n between points of entry and the national health surveillance system
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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-nC
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oV in specialised laboratories in 30 European Union/European Economic Area (EU/EEA) countries. Thirty-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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The overall objective of this implementation plan is to define the strategy for implementation of the Xpert MTB/RIF test for rapid detection of TB and rifampicin (RIF) resistance in Tanzania, within the context of the National Tuberculosis and Lepro
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sy Programme (NTLP) strategic plan and other national health guidelines. It is intended to serve as the main guiding document for national, regional and local programme managers, clinicians, coordinators, laboratory staff and other health workers; national and regional reference laboratories; local and international implementing partners; and donors involved in TB control.
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The Global Leprosy Strategy 2021–2030 “Towards zero leprosy” was developed through a broad consultative process with all major stakeholders during 2019 and 2020. Valuable inputs were provided by national leprosy programme managers, technical agencies, public health and leprosy experts, funding
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agencies and persons or members of communities directly affected by leprosy.
The Strategy aims to contribute to achieving the Sustainable Development Goals. It is structured along four pillars:
(i) implement integrated, country-owned zero leprosy road maps in all endemic countries;
(ii) scale up leprosy prevention alongside integrated active case detection;
(iii) manage leprosy and its complications and prevent new disability; and
(iv) combat stigma and ensure human rights are respected. Interruption of transmission and elimination of disease are at the core of the Strategy.
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Accessed June 2018 - Détection, la confirmation et de la gestion des épidémies de choléra
The OpenWHO course titled "Interventions for Noncommunicable Diseases in Primary Health Care" provides guidance on screening, detection, diagnosis, and management of major noncommunicable diseases (NCDs) such as cardiovascular diseases, type 2 diabe
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tes, chronic respiratory diseases (asthma and chronic obstructive pulmonary disease), and early cancer detection within primary health care settings. It emphasizes delivering high-impact essential NCD interventions through a primary healthcare approach to enhance early detection and timely treatment. This course is part of the SEARO NCD PEN-HEARTS series, which includes four courses aimed at enabling learners to plan and deliver NCD services effectively.
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Detection, confirmation and management Salmonella Typhi outbreak