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 ...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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It is intended for clinicians who are working in intensive care units (ICUs) in low and middle-income countries and managing adult and pediatric patients with severe forms of acute respiratory infection (SARI), including severe pneumonia, acute respiratory distress syndrome (ARDS), sepsis and septic... shock. It is a hands-on practical guide to be used by health care professionals involved in clinical care management during outbreaks of influenza virus (seasonal) human infection due avian influenza virus (H5N1, H7N9), MERS-CoV, COVID-19 or other emerging respiratory viral epidemics.
This course is also available in the following languages:
français - русский - Português - Bahasa Indonesia - Tiếng Việt - Español - македонски - العربية - Tetun
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Person under investigation (PUI) form for coronavirus disease 2019 (COVID-19): Request for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) testing
and
COVID-19 Contact line list
Emerg Infect Dis. 2020 Jul [date cited]. https://doi.org/10.3201/eid2607.200915
Infection control instructions call for use of alcohol-based hand rub solutions to inactivate severe acute respiratory syndrome coronavirus 2. We determined the virucidal activity of World Health Organization–recommen...ded hand rub formulations, at full strength and multiple dilutions, and of the active ingredients. All disinfectants demonstrated efficient virus inactivation.
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First published in 2020, this toolkit is intended for clinicians working in acute care, managing adult and paediatric patients with acute respiratory infection, including severe pneumonia, acute respiratory distress syndrome, sepsis and septic shock. The main objective is to provide key tools for us...e in the care of critically ill patients – from hospital entry to hospital discharge.
The 2022 updated version includes new tools and adapted algorithms, checklists, memory aids for COVID-19 and influenza, and the latest clinical evidence regarding clinical management of SARI. It is intended to help clinicians care for SARI patients: from epidemiology of severe acute respiratory infections, screening and triage, infection prevention and control, monitoring of patients, laboratory diagnosis, principles of oxygen therapy and different types of ventilation (invasive and non-invasive), as well as antimicrobial and immunomodulator therapies, to ethical and quality of care assessments.
The first edition is availbel in Ukrainian and Russian
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To provide recommendations on the initial care of persons with acute respiratory illness (ARI) in the context of coronavirus disease (COVID-19) in healthcare facilities based on a decision-making process flowchart. These recommendations are preliminary and subject to review as new evidence becomes a...vailable. The recommendations provided in this document apply for adults olden than 18 years old.
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Recomendações provisórias, versão 1 (13 de abril de 2020)
Oferecer recomendações sobre os cuidados iniciais de pessoas com infecção respiratória aguda (IRA) no contexto da doença do coronavírus (COVID-19), em estabelecimentos de saúde, com base no fluxograma do processo de tomada de dec...isão. Essas recomendações são preliminares e sujeitas à revisão, à medida que novas evidências estejam disponíveis. As recomendações dadas neste documento se aplicam a adultos com mais de 18 anos
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The purpose of this document is to provide guidance on the use of pooled sample testing strategy in coronavirus disease (COVID-19)
testing laboratories of the African Union Member States for scaling up SARS-CoV-2 nucleic acid testing capacity with the available resources. The current document descr...ibes the effect of factors such as the prevalence of COVID-19 in the population to be tested, the homogeneity of pools, and the sensitivity of the molecular test in optimal pool size determination. It also highlights the importance of monitoring the prevalence of COVID-19 in a population to be tested and proper validation of the test, to limit the potential for false-negative results. Validation studies to determine the optimal pool size by testing laboratories are recommended as the optimum approach. A safe, simple ‘two-stage pooling’ option has been indicated in this guidance to be used by laboratories until such validation can be achieved.
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This collection of posters are intended for health care workers, biomedical engineers and staff of health facilities in charge of caring, cleaning, decontaminating and sterilizing respiratory medical equipment in hospitals and health facilities. They include checklists to ensure the optimal infectio...n prevention and control during their use and between patients.
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This collection of posters are intended for health care workers, biomedical engineers and staff of health facilities in charge of caring, cleaning, decontaminating and sterilizing respiratory medical equipment in hospitals and health facilities. They include checklists to ensure the optimal infectio...n prevention and control during their use and between patients.
They describe the procedures to follow (Checklists) to clean, decontaminate and sterilize different respiratory devices:
Oxygen concentrators,
Non-invasive mechanical ventilation equipment: High flow nasal cannula, BiPAP/CPAP,
Mechanical ventilators,
Pulse oximeters and monitors.
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For patients on HFNO with persistent hypoxaemia or respiratory distress:
• Check the equipment: inspect the exterior of the machine, the tubing (circuit), the prong for any sign of mechanical damage, confirm it fits and the filters are in place. Ensure the settings are appropriate and flow is max...imized.
• Check the oxygen source: there is sufficient oxygen available and flowing through the device. If FiO2 > 50% of oxygen is needed, the device must have a blender.
• Check there is no obstruction with secretions: patients with COVID-19 may have very thick secretions which may block small and large airways and cause sudden respiratory deterioration.
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WHO recommends prompt recognition of progressive acute hypoxaemic respiratory failure when a patient with respiratory distress is failing to respond to standard oxygen therapy and adequate preparation to provide advanced oxygen/ventilatory support.
Hypoxaemic respiratory failure in ARDS commonly re...sults from intrapulmonary ventilation-perfusion mismatch or shunt and usually requires mechanical ventilation.
At any time, if there are urgent or emergent indications for intubation, do not delay.
WHO suggests that hospitalized patients with severe or critical COVID-19 with acute hypoxaemic respiratory failure that do not require emergent intubation be treated with HFNO, or CPAP or NIV (BiPAP) rather than standard oxygen therapy.
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WHO recommends prompt recognition of progressive acute hypoxaemic respiratory failure when a patient with respiratory distress is failing to respond to standard oxygen therapy and adequate preparation to provide advanced oxygen/ventilatory support.
Hypoxaemic respiratory failure in ARDS commonly ...results from intrapulmonary ventilation-perfusion mismatch or shunt and usually requires mechanical ventilation.
At any time, if there are urgent or emergent indications for intubation, do not delay.
We recommend prompt recognition of progressive acute hypoxaemic respiratory failure when a patient with respiratory distress is failing to respond to standard oxygen therapy and adequate preparation to provide advanced oxygen/ventilatory support.
WHO suggests that patients with severe or critical COVID-19 with acute hypoxaemic respiratory failure that do not require emergent intubation be treated with HFNO, or CPAP or NIV (BiPAP) over standard oxygen therapy.
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For patients on NIPPV or HFNO with persistent hypoxaemia or respiratory distress:
• Check the equipment: inspect the exterior of the machine, the tubing (circuit), the mask for any sign of mechanical damage, confirm it fits securely without leak (if CPAP/BiPAP) and the filters are in place. Ensur...e the settings are appropriate and flow is maximized.
• Check the oxygen source: there is sufficient oxygen available and flowing through the device. If FiO2 > 50% of oxygen is needed, the ventilator must have a blender.
• Check there is no obstruction with secretions: patients with COVID-19 may have very thick secretions which may block small and large airways and cause sudden respiratory deterioration.
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The document is a handbook on implementing the mBreatheFreely program, an mHealth initiative by the World Health Organization (WHO) and the International Telecommunication Union (ITU) aimed at improving the management of asthma and COPD through mobile technology. It provides a framework for governme...nts and policymakers to develop, launch, and evaluate national mHealth programs. The guide covers areas such as operations management, content development, promotion strategies, technology infrastructure, and monitoring and evaluation. It emphasizes the importance of mHealth in enhancing self-management, prevention, and treatment of chronic respiratory diseases, particularly in low- and middle-income countries. The handbook also includes examples of successful programs and practical tools for adaptation and implementation.
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PATS and ERS
Paediatric Webinar Series
Paediatric Respiratory Reserch: meet the experts
Aerosol pollutants are known to raise the risk of development of non-communicable respiratory diseases (NCRDs) such as asthma, chronic bronchitis, chronic obstructive pulmonary disease, and allergic rhinitis. Sub-Saharan Africa’s rapid pace of urbanization, economic expansion, and population growt...h raise concerns of increasing incidence of NCRDs. This research characterizes the state of research on pollution and NCRDs in the 46 countries of Sub-Saharan Africa (SSA). This research systematically reviewed the literature on studies of asthma; chronic bronchitis; allergic rhinitis; and air pollutants such as particulate matter, ozone, NOx, and sulfuric oxide.
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