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 of hypoxaemia, use of pulse oximetry, clinical ...use of oxygen and delivery systems and monitoring of patients on oxygen therapy.
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4 April 2020
This interim guidance on oxygen sources and distribution strategies for COVID-19 treatment has been adapted from WHO and UNICEF’s technical specifications and guidance for oxygen therapy devices, which is part of the WHO medical device technical series. This guidance is intended for ...health facility administrators, clinical decision-makers, procurement officers, planning officers, biomedical engineers, infrastructure engineers and policy-makers. It describes how to quantify oxygen demand, identify oxygen sources that are available, and select appropriate surge sources to best respond to COVID-19 patients’ needs, especially in low-and-middle income countries.
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9 April 2020
WHO has published the guidance “Clinical management of severe acute respiratory infection (SARI) when COVID-19 disease is suspected” This document is intended for clinicians taking care of hospitalized adult and paediatric patients with severe acute respiratory infection (SARI) whe...n COVID-19 infection is suspected. Optimized supportive care should be provided to ensure the best possible chance for survival of COVID-19 patients as described in the WHO guidance:
1. Management of severe COVID-19 requires oxygen therapy and monitoring. Supplemental oxygen therapy should be given immediately to patients with SARI and respiratory distress, hypoxaemia or shock.
2. Management of critical COVID-19 (acute respiratory distress syndrome (ARDS)) requires advanced oxygen/ventilatory support.
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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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BMJ Global Health2020;5:e002786. doi:10.1136/bmjgh-2020-002786
23 February 2021
This document describes the medical devices required for the clinical management of COVID-19, selected and prioritized according to the latest available evidence and interim guidelines. This includes: oxygen therapy, pulse oximeters, patient monitors, thermometers, infusion and suc...tion pumps, X-ray, ultrasound and CT scanners as well as personal protective equipment. In order to facilitate access to quality assured priority medical devices, the document also includes technical and performance characteristics, related standards, accessories and consumables. It is intended for policy-makers and planning officers in Ministries of Health, procurement and regulatory agencies, intergovernmental and international agencies as well as the medical device industry.
This document is an update to the List of priority medical devices for COVID-19 case management and Technical specifications for invasive and non-invasive ventilators for COVID-19.
This document complements the Technical specifications of personal protective equipment for COVID-19.
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23 February 2021
This document describes the medical devices required for the clinical management of COVID-19, selected and prioritized according to the latest available evidence and interim guidelines. This includes: oxygen therapy, pulse oximeters, patient monitors, thermometers, infusion and suc...tion pumps, X-ray, ultrasound and CT scanners as well as personal protective equipment. In order to facilitate access to quality assured priority medical devices, the document also includes technical and performance characteristics, related standards, accessories and consumables. It is intended for policy-makers and planning officers in Ministries of Health, procurement and regulatory agencies, intergovernmental and international agencies as well as the medical device industry.
This document is an update to the List of priority medical devices for COVID-19 case management and Technical specifications for invasive and non-invasive ventilators for COVID-19.
This document complements the Technical specifications of personal protective equipment for COVID-19.
more
23 February 2021
This document describes the medical devices required for the clinical management of COVID-19, selected and prioritized according to the latest available evidence and interim guidelines. This includes: oxygen therapy, pulse oximeters, patient monitors, thermometers, infusion and suc...tion pumps, X-ray, ultrasound and CT scanners as well as personal protective equipment. In order to facilitate access to quality assured priority medical devices, the document also includes technical and performance characteristics, related standards, accessories and consumables. It is intended for policy-makers and planning officers in Ministries of Health, procurement and regulatory agencies, intergovernmental and international agencies as well as the medical device industry.
This document is an update to the List of priority medical devices for COVID-19 case management and Technical specifications for invasive and non-invasive ventilators for COVID-19.
This document complements the Technical specifications of personal protective equipment for COVID-19.
more
This poster is intended for health workers and other personnel on the safety and mitigation measures that need to be adhered to when dealing with medical oxygen. Medical oxygen, either in liquid or gas form, is an oxidizing agent that can result in a fire or explosion if not handled properly.
Medical oxygen is an essential medicine in the treatment of COVID-19. How is it used? Why is there a shortage in some countries and what are WHO, partners and Governments doing about it? WHO’s Dr Janet Diaz explains in Science in 5.
If you have COVID-19 and are caring for someone or yourself at home, what is the treatment protocol? What is WHO’s guidance on Remdesivir and convalescent plasma therapy? How to monitor oxygen at home and what are the red flags when you should call the doctor? WHO’s Dr Janet Diaz explains in Sci...ence in 5.
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22 Dec 2021: El oxígeno está incluido dentro de la lista de medicamentos esenciales de la OMS y es utilizado para atender pacientes en todos los niveles de las redes integradas de servicios de salud. Dado que la eficacia del uso de oxígeno ya está probada en el tratamiento de pacientes con afecc...iones respiratorias provocadas por la COVID-19, existe una gran oportunidad para mejorar la efectividad promoviendo su uso de una manera racional, sostenible y segura.
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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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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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n response to the outbreak, the Africa Centres for Disease Control and Prevention (Africa CDC) has been supporting African Union Member States in responding to the COVID-19 pandemic through a variety of interventions such as non-pharmaceutical interventions, quarantine, testing, isolation, contact t...racing, and clinical management. The Test to Treat guideline aims to increase continental testing efforts and reduce COVID-19 transmission in Africa and put-up response measures to control the impact of the virus, both to limit spread and to reduce substantially the risks of severe health outcomes related to COVID-19 infection. These countermeasures include highly effective vaccines and boosters, rapid testing options for monitoring exposure, and effective therapeutic options for both pre-exposure prevention and treatment of mild-to-moderate disease, oxygen therapy for moderate-severe disease, all of which can potentially be updated efficiently as new variants emerge that may affect the effectiveness of the available tools.
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The cardiovascular disease continuum begins with risk factors such as diabetes mellitus (DM), progresses to vasculopathy and myocardial dysfunction, and finally ends with cardiovascular death. Diabetes is associated with a 2- to 4-fold increased risk for heart failure (HF). Moreover, HF patients wit...h DM have a worse prognosis than those without DM. Diabetes can cause myocardial ischemia via micro- and macrovasculopathy and can directly exert deleterious effects on the myocardium. Hyperglycemia, hyperinsulinemia, and insulin resistance can cause alterations in vascular homeostasis. Then, reduced nitric oxide and increased reactive oxygen species levels favor inflammation leading to atherothrombotic progression and myocardial dysfunction. The classification, diagnosis, and treatment of HF for a patient with and without DM remain the same. Until now, drugs targeting neurohumoral and metabolic pathways improved mortality and morbidity in HF with reduced ejection fraction (HFrEF). Therefore, all HFrEF patients should receive guideline-directed medical therapy. By contrast, drugs modulating neurohumoral activity did not improve survival in HF with preserved ejection fraction (HFpEF) patients. Trials investigating whether sodium-glucose cotransporter-2 inhibitors are effective in HFpEF are on-going. This review will summarize the epidemiology, pathophysiology, and treatment of HF in diabetes.
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The document by the American Thoracic Society provides an overview of Chronic Obstructive Pulmonary Disease (COPD), explaining its causes, such as smoking and environmental factors, symptoms like breathlessness and chronic cough, and diagnostic methods including spirometry. It discusses treatment st...rategies, emphasizing smoking cessation, medication use, oxygen therapy, and pulmonary rehabilitation. The document also highlights that while COPD is a lifelong condition, effective management can improve symptoms and quality of life.
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The document provides comprehensive guidance for people with COPD, covering treatment and medication management, oxygen therapy, mucus control, exercise, smoking cessation, nutrition, associated conditions, and strategies to prevent exacerbations. It emphasizes patient education, self-management, an...d working closely with healthcare providers to enhance well-being and control of the disease.
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The document provides practical guidance for individuals with COPD, covering topics such as medication management, oxygen therapy, mucus control, physical exercise, smoking cessation, nutrition, associated conditions, and how to prevent and manage exacerbations. It emphasizes the importance of patie...nt education, adherence to treatment plans, and collaboration with healthcare providers to improve quality of life and disease outcomes.
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