"This document has been developed for outpatient oncology
facilities to serve as a model for a basic infection
control and prevention plan. It contains policies
and procedures tailored to these settings to meet minimal
expectations of patient protections as described
in the CDC Guide to Infecti...on Prevention in Outpatient
Settings."
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The Infection Prevention and Control (IPC) Guidelines aim to support healthcare workers improve quality and safety health care. The Guidelines further aim to promote and facilitate the overall goal of IPC by providing evidence-based recommendations on the critical aspects of IPC, focusing on the fun...damental principles and priority action areas. All health service organizations should consider the risk of healthcare-associated infection(s) (HAI) and antimicrobial resistance (AMR) transmission to implement these recommendations. The IPC Guidelines also set national standards for the prevention and control of HAIs and to ensure compliance to the National Quality Standards.
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The ICAT is a simple and practical approach for assessing the adequacy of existing infection prevention and control practices and provides specific recommendations for improving practices and monitoring their effectiveness over time
This second edition of the Infection prevention and control in the context of coronavirus disease (COVID-19): A living guideline provides the most up to date technical guidance on mask use in community settings in the context of COVID-19.
In this edition, new information includes updated mask re...commendations for children in community settings including updated age specific recommendations, statements for children with disabilities and those at high risk for complications related to COVID-19 infection. Updated implementation considerations for mask use in school settings are also included.
This living guideline is being published using the MAGICApp online publishing platform https://app.magicapp.org/#/guideline/Lr2a8L , as well as in PDF copy on the WHO website.
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The Global vector control response 2017–2030 (GVCR) provides a new strategy to strengthen vector control worldwide through increased capacity, improved surveillance, better coordination and integrated action across sectors and diseases.
In May 2017, the World Health Assembly adopted resolutio...n WHA 70.16, which calls on Member States to develop or adapt national vector control strategies and operational plans to align with this strategy.
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International Journal of Infectious Diseases 32 (2015) 111–117
Strengthening Parmaceutical Systems. 2nd edition
This technical report presents the epidemiology of human and animal leishmaniases in the EU and its neighbouring countries and concludes that the disease remains widespread and underreported in many countries of southern Europe, northern Africa, and the Middle East and that there is a need to improv...e leishmaniasis prevention and control based on robust surveillance in humans, animals, and vectors, and to increase public awareness following a one health approach.
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CHAPTER 15:03 | Acts 14/1969, 62/1971, 35/1974, 20/1978, 41/1978 (s. 35) 39/1979, 7/1987, 11/1988, 18/1989 (s. 27), 1/1996, 6/2000, 22/2001; R.G.N. 899/1978.
COVID-19 outbreak is associated with the generation of many types of infectious wastes, including infected masks, gloves and other protective equipment, together with a higher volume of general waste of the same nature.
The Sierra Leone National Infection Prevention and Control Guidelines were jointly developed and updated by the Ministry of Health and Sanitation in collaboration with the World Health Organization and the US Centers for Disease Control and Prevention.
COVID-19 outbreaks in long-term care (LTC) facilities can have devastating effects on the health and well-being of residents, as they are vulnerable to serious infection due to their age and possible underlying medical conditions. Strengthening infection prevention and control (IPC) prac...tice is crucial to prevent spread of COVID-19. This preparedness checklist consists of several elements that are crucial for preparing LTCF for COVID-19. It can be used by facility administrators, IPC focal points or staff, internal or external professionals.
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Guidance Brief
Selected findings from ECDC and EMCDDA scientific guidance, 2018
Sleeping sickness is controlled by case detection and treatment but this often only reaches less than 75% of the population. Vector control is capable of completely interrupting HAT transmission but is not used because of expense. We conducted a full scale field trial of a refined vector control tec...hnology. From preliminary trials we determined the number of insecticidal tiny targets required to control tsetse populations by more than 90%. We then carried out a full scale, 500 km2 field trial covering two HAT foci in Northern Uganda (overall target density 5.7/km2). In 12 months tsetse populations declined by more than 90%. A mathematical model suggested that a 72% reduction in tsetse population is required to stop transmission in those settings. The Ugandan census suggests population density in the HAT foci is approximately 500 per km2. The estimated cost for a single round of active case detection (excluding treatment), covering 80% of the population, is US$433,333 (WHO figures). One year of vector control organised within country, which can completely stop HAT transmission, would cost US$42,700. The case for adding this new method of vector control to case detection and treatment is strong. We outline how such a component could be organised.
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