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1
Online learning for clinical management staff of respiratory diphtheria in Cox's Bazar, Bangladesh.
In December 2017, the WHO Health Emergencies Programme launched an online learning for clinical staff on respiratory diphtheria through the OpenWHO.org platform. The 4-hour course targets clinicians
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caring for patients during outbreaks in vulnerable settings, such as in Cox's Bazar. It is also applicable to clinicians working in settings that share similar challenges, due to limitations of: laboratory capacity, availability of treatment facilities, number of trained staff, medications, medical supplies, and supportive care.
With the OpenWHO App, users can now view course content on a mobile device, with or without internet connection, once it has been downloaded: an important feature needed in vulnerable settings. Material is now being translated into Bahasa Indonesia and Arabic.
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The WHO Global Respiratory Syncytial Virus (RSV) Surveillance page describes a World Health Organization initiative under the Global Influenza Programme to monitor RSV infections worldwide. It explains that WHO uses the existing Global Influenza Surveillance and Response System (GISRS) to collect st
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andardized epidemiological and laboratory data on RSV, in order to understand patterns such as seasonality, disease burden, and age groups at highest risk, especially in young children. The surveillance system aims to support countries in tracking RSV activity, improve detection and laboratory capacity, and generate evidence that can guide public health policies, including the use of vaccines and preventive measures. Overall, the text emphasizes building a global platform for RSV surveillance integrated with influenza monitoring to inform better respiratory virus control strategies.
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The document “Hospital Preparedness for Epidemics” published by the World Health Organization (WHO) provides guidance on how hospitals and healthcare facilities can prepare for and respond effectively to infectious disease outbreaks. It outlines key components of epidemic preparedness, including
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planning and management structures, infection prevention and control, communication systems, human resource management, logistics, laboratory capacity, and the continuity of essential health services. The guide emphasizes the importance of coordination within hospitals and with public health authorities, as well as training staff and ensuring adequate supplies and infrastructure. Overall, the document serves as a practical framework to help hospitals strengthen their readiness, maintain critical healthcare services, and respond efficiently during epidemics or other health emergencies.
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Tanzania: The National Action Plan on AMR 2017-2022
The United Republic of Tanzania - Ministry of Health Community Development Gender Elderly and Children
World Health Organization WHO
(2017)
C_WHO
This National Action Plan addresses actions needed to be taken in order to combat antimicrobial resistance (AMR) in the country. It is obligatory to raise awareness of antimicrobial resistance and promote behavioral change through public communication
programmes that targets human, animal and plant
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health. Inclusion of the use of antimicrobial agents and resistance in school curricula will further promote better understanding and awareness from an early age. Antimicrobial Resistance knowledge, surveillance and research will be strengthened through establishing a national surveillance system for antimicrobial resistance, establishing and building capacity for a national reference laboratory and designated laboratories for AMR surveillance, developing a national research agenda on AMR and establishing and supporting a coordinated mechanism that will ensure harmonized AMR guidelines, data management and sharing systems in human, animal and plant health settings.
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The following protocol has been designed to investigate the extent of infection, as determined by seropositivity in the general population, in any country in which COVID-19 virus infection has been reported. Each country may need to tailor some aspects of this protocol to align with public health,
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laboratory and clinical systems, according to capacity, availability of resources and cultural appropriateness. However, using a standardized protocol such as this one below, epidemiological exposure data and biological samples can be systematically collected and shared rapidly in a format that can be easily aggregated, tabulated and analyzed across many different settings globally for timely estimates of COVID-19 virus infection severity and attack rates, as well as to inform public health responses and policy decisions. This is particularly important in the context of a novel respiratory pathogen, such as COVID-19 virus
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Developed through broad and inclusive consultation, and aligned with the WHO Global Health Sector Strategies and the Sustainable Development Goals, the framework promotes a people-centred approach and antimicrobial stewardship across 5 key domains: prevention and response, surveillance, research and
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innovation, laboratory capacity, and governance.
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The document “Strategic Framework for Strengthening Cross-Border Surveillance and Information Sharing in Africa” outlines a coordinated strategy developed by Africa CDC to improve public health surveillance and collaboration across national borders in Africa. It addresses the challenge that infe
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ctious diseases often spread across borders due to population movement, trade, and migration, while surveillance systems and data-sharing mechanisms frequently remain nationally focused and fragmented.
The framework proposes strengthening regional coordination, harmonizing surveillance systems, enhancing information sharing between countries, and building laboratory and workforce capacity. It also emphasizes timely detection of cross-border health threats, joint outbreak investigations, and improved communication among Member States. Overall, the document aims to enhance preparedness, early warning systems, and collective response to public health threats across the African continent.
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The document “Strategic Framework for Strengthening Cross-Border Surveillance and Information Sharing in Africa” outlines a coordinated strategy developed by Africa CDC to improve public health surveillance and collaboration across national borders in Africa. It addresses the challenge that infe
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ctious diseases often spread across borders due to population movement, trade, and migration, while surveillance systems and data-sharing mechanisms frequently remain nationally focused and fragmented.
The framework proposes strengthening regional coordination, harmonizing surveillance systems, enhancing information sharing between countries, and building laboratory and workforce capacity. It also emphasizes timely detection of cross-border health threats, joint outbreak investigations, and improved communication among Member States. Overall, the document aims to enhance preparedness, early warning systems, and collective response to public health threats across the African continent.
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The intent of these guidelines is to develop a holistic, coordinated, proactive and technology driven strategy for management of biological disasters through a culture of prevention, mitigation and preparedness to generate a prompt and effective response in the event of an emergency. Th
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e document contains comprehensive guidelines for preparedness activities, biosafety and biosecurity measures, capacity development, specialised health care and laboratory facilities, strengthening of the existing legislative/
regulatory framework, mental health support, response, rehabilitation and recovery, etc. It specifically lays down the approach for implementation of the guidelines by the central ministries/departments, states, districts and other stakeholders, in a time bound manner.
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The webpage ”H5 Reference Laboratories” on the WHO Global Influenza Surveillance and Response System (GISRS) site describes a network of specialized laboratories designated by the World Health Organization to support global influenza monitoring — particularly for H5 subtype avian influenza vir
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uses.
It explains that these reference laboratories perform high-level testing, characterization, and sharing of influenza virus samples, including genetic sequencing and antigenic analysis. Their role is to help detect and assess influenza virus strains of public health concern (especially H5 strains with pandemic potential), support vaccine strain selection, and provide technical guidance and capacity building to national influenza centers and other laboratories. The page highlights the importance of this global laboratory network in strengthening early warning, risk assessment, and preparedness for influenza outbreaks and pandemics.
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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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COVID-19 Diagnostics
recommended
ASLM strives to keep laboratory networks in Africa connected and informed of diagnostic tools, techniques, procedures and advancements related to COVID-19 testing with interactive training and information sessions using the Extended Community Health
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Outcomes (ECHO) model and Massive Open Online Course (MOOC) platform from Future Learn.
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This document provides interim guidance to countries on testing considerations and strategies for suspect cases of severe acute hepatitis of unknown aetiology in children. It is primarily intended for clinical, programmatic, laboratory and diagnosti
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c stakeholders across Member States and national public health authorities involved in the identification and investigation of cases of severe acute hepatitis in children.
This document is part of a package of guidance for this event, which includes suggested minimum reporting variables and a clinical Case Report Form support Member States with case investigation and reporting.
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The Africa Centres for Disease Control and Prevention (Africa CDC) Biosafety and Biosecurity Initiative was launched by the Africa CDC in April 2019 with the aim of strengthening the African Union (AU) Member States’ biosafety and biosecurity systems and enabling them to comply with national and i
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nternational requirements for biosafety and biosecurity including the International Health Regulations (IHR) (2005), the Biological Weapons Convention (BWC), and United Nations Security Council Resolution (UNSCR) 1540 and the multi-country Global Health Security Agenda (GHSA). The World Health Organization (WHO) Joint External Evaluation (JEE) and the Global Health Security Index report confirmed the known capacity gaps in biosafety and biosecurity among Africa Union Member (AU).
The regional consultations by Africa CDC conducted between 2019-2021 highlighted the deficiency or limited availability of standardized and regionally recognized training programs in the continent, limiting biosafety and biosecurity capacity building efforts in the region. In response, Africa CDC working with AU Member States developed a home grown, implementable and accessible professional training and certification program that is both recognized and endorsed by AU Member States. The Regional Training and Certification Program for Biosafety and Biosecurity Professionals, for African Biosafety and Biosecurity Professionals (RTCP-BBP) has four (4) areas of specialization, namely
Selection, Installation, Maintenance and Certification of Biological Safety Cabinets
Biorisk Management
Design and Maintenance of Facilities Handling High Risk Pathogens (Biocontainment Engineering)
Biological Waste management
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