The design of anaesthesia equipment for use in hospitals in the developing world must take intoaccount the local conditions, particularly whether reliable supplies of compressed oxygen andelectricity are available. Designs should ensure that maintenance is feasible locally. Internationalstandards sh...ould encourage the design of suitable equipment to ensure safe anaesthesia for patientsworldwide
Anaesthesia, 2007,62(Suppl. 1), pages 54–60
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The spread of COVID-19 poses a challenge for emerging markets such as those in Africa and Latin America. While governments around the world are suffering from a shortage of ventilators, hospital beds, and personal protective equipment, availability of these items is already extremely limited in some... countries. In Africa, countries including Mali, Liberia, and Burkina Faso have only a few ventilators available to aid their populations, and there is also a lack of reliable oxygen supplies, ICUs, and healthcare workers to treat the sick. Additionally, many countries in Africa are already suffering from food insecurity and weak economies, which will worsen the long-term effects of coronavirus.
Keeping these factors in mind, GeoPoll conducted a remote study in 12 countries in sub-Saharan Africa on the effects coronavirus is already having on people throughout the region.
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Oxygen is an essential medicine required at all levels of the health care system; only high quality, medical-grade oxygen should be given to patients. Pressure swing adsorption (PSA) oxygen generating plants are a source of medical-grade oxygen. This document provides technical specifications as th...e minimum requirements that a PSA Oxygen Plant must meet for use for the administration of medical-grade oxygen.
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Countries can use this tool to collect in-depth facility inventories of biomedical equipment re-allocation, procurement and planning for COVID-19 case management. The survey assesses quantified availability and the causes for non-functioning of different sources of oxygen delivery and supply systems... to the patient in order to determine priorities and re-allocation requirements in accordance with needs.
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The WHO COVID-19 Essential Supplies Forecasting Tool (COVID-19-ESFT) is meant to help countries forecast essential supplies for their COVID-19 response including personal protective equipment (e.g., masks and gloves), biomedical equipment for case management (e.g., ventilators and oxygen concentrato...rs), diagnostic reagents and equipment, essential drugs for supportive care, and consumable medical supplies.
The tool is best suited for estimating essential supply needs over a short time period (12 weeks or fewer) but can be used for longer.
COVID-19-ESFT does not quantify or account for resources already available locally or those pending delivery. When using the ESFT to inform procurement, we recommend factoring in resources already available locally and only including the additional resources required in the forecast.
This tool is updated regularly so users should monitor the website for the latest release version.
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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.
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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.
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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.
COVID-19 is having a catastrophic impact on the most vulnerable communities around the world and is threatening decades of progress in the fight against HIV, TB and malaria. The Global Fund works with partners, countries and communities to fight COVID-19, adapt lifesaving HIV, TB and malaria program...s, and reinforce fragile systems for health. Through our COVID-19 Response Mechanism (C19RM ), the Global Fund is now the primary channel for providing grant support to low- and middle-income countries for COVID-19 tests, treatments (including medical oxygen), personal protective equipment (PPE) and critical elements of health system strengthening.
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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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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.
more
In the face of rapid increases in the number of hospitalizations due to COVID-19 in Latin America and the Caribbean, coupled with shortages of human and material resources, including medical equipment and gases, there is a need to redesign models of care in the Region to optimize available resources... and ensure that more patients receive the quantity and quality of oxygen they need. Oxygen is included in the World Health Organization’s list of essential medicines and is used to care for patients at all levels of integrated health services networks. The efficacy of oxygen use in the treatment of patients with respiratory conditions caused by COVID-19 has been demonstrated, but there is great opportunity to improve the effectiveness of its use if it is used in a rational, sustainable, and safe way. Bearing in mind that the efficacy of a health technology is measured by its benefit under actual conditions of use, practical actions can be taken to improve the use of medical oxygen and avoid oxygen shortages. A drug is considered to be used rationally when patients receive it according to their clinical needs, in doses appropriate to their individual needs, for an appropriate period, and at a low cost to them and their community. By providing instruction on the rational use of oxygen and promoting it, negative repercussions can be avoided, such as loss of efficacy as a result of activities related to oxygen storage, distribution, and administration. Rational use of oxygen also involves controlling waste due to leaks in storage and distribution systems, use of gas at incorrect pressures, use of incorrectly adjusted flowmeters, and disconnections, among other problems. Another aspect to consider is the provision of adequate technical support for all oxygen production systems, in terms of maintenance and calibration, availability of electrical energy, and specific knowledge about these systems. For these reasons, a set of guidelines has been put together for the development of an efficient management system to deal with situations of oxygen scarcity, both now and in the future.
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Avec l’augmentation soudaine du nombre d’hospitalisations causées par la pandémie de COVID-19 en Amérique latine et dans les Caraïbes, et étant donné la rareté des ressources humaines et matérielles telles que les équipements médicaux et les gaz médicaux, il est devenu nécessaire de ...repenser les modèles de soins dans la Région dans le but d’optimiser l’utilisation de ce qui est disponible et de s’assurer qu’un plus grand nombre de patients recevront l’oxygène dont ils ont besoin en quantité et en qualité. L’oxygène est inclus dans la liste des médicaments essentiels de l’Organisation mondiale de la Santé et sert à soigner les patients à tous les niveaux des réseaux de services de santé intégrés. L’efficacité de l’utilisation de l’oxygène est démontrée dans le traitement de patients atteints de maladies respiratoires causées par la COVID-19, et cette efficacité pourra être grandement améliorée si on encourage le recours rationnel, durable et sûr à cette pratique.
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All health workers require knowledge and skills to care for patients safely and protect themselves from undue harm. This course was developed due to the enormous emphasis placed on need for safe provision of oxygen to patients with COVID-19, but can be used for conditions beyond COVID-19. This cours...e teaches how to choose the right equipment for your facility, how to set up new respiratory equipment, how to clinically use respiratory equipment, how to maintain equipment, including troubleshooting, repairs and infection prevention and control, and how to decommission equipment.
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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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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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SAMS team rose to meet these challenges, delivering world class COVID treatment with four newly established COVID hospitals complete with 100 ICU beds and state of the art equipment like ventilators, monitors, and oxygen generators. By using innovative technologies, SAMS’ physicians were able to s...hare the knowledge they gained treating
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