This section deals with implementing and improving infection control practices in hospitals, health centres and other health services in the outbreak area. It explains the need for, and implementation of, effective triage procedures, and basic requirements for infection control and supporting activi...ties. Further guidance can be found in the MSF Infection Control Guideline
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BMC Infectious Diseases (2024) 24:1102
Communities living along the shoreline and on the islands of Lake Victoria in northwestern Tanzania
remain endemic for schistosomiasis and suffer from the life-threatening morbidities associated with the disease.
PQDx 0179-012-00 WHO
PQDx Public Report
June/2017, version 4.0
The BRM ATP is an advanced course in biorisk management. The 10-day train-the-trainer course introduces the concept of biorisk management, which combines risk assessment, risk mitigation, and performance systems (AMP). The course also includes a cutting-edge training component based on the latest sc...ience and theory behind accelerated and adult learning
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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
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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Infectious disease outbreaks and epidemics are increasing in frequency, scale and impact. Health care facilities can amplify the transmission of emerging infectious diseases or multidrug-resistant organisms (MDRO) within their settings and communities. Therefore, evidence-based infection prevention ...and control (IPC) measures in health care facilities are critical for preventing and containing outbreaks, while still delivering safe, effective and quality health care. This toolkit is intended to support IPC improvements for outbreak management in all such facilities, both public and private throughout the health system. Specifically, this document systematically describes a framework of overarching principles to approach the preparedness, readiness and response outbreak management phases. The document also provides a toolkit of resource links to guide specific actions for each infectious disease and/or MDRO outbreak management phase at any health facility. This document is specifically tailored to an audience of stakeholders who establish and monitor health care facility-level IPC programs including: IPC focal points, epidemiologists, public health experts, outbreak response incident managers, facility-level IPC committee(s), safety and quality leads and managers, and other facility level IPC stakeholders.
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A module from the suite of health service capacity assessments in the context of the COVID-19 pandemic, Interim Guidance 20 October 2020.
This self-assessment tool is designed for acute health-care facilities (i.e. tertiary and secondary) but can be modified for the use in long-term care facilities..., to help identify, prioritize and address the gaps in infection prevention and control (IPC) capacity in managing their response to COVID-19. The tool should be used by IPC professionals and/or those responsible for disaster planning or outbreak management in the facility (such as the response to the COVID-19 outbreak) at the start of the improvement process. A sample workplan template is provided to address gaps identified and record required actions.
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Accessed Oktober 18, 2017
The WHO continuously reviews available data on SARS-CoV-2 variants of concern. For this version, the global epidemiological
situation of the COVID-19 pandemic as of 21 January 2022 – at a time when the Omicron VOC had been identified in 171
countries across all six WHO Regions and was rapidly re...placing Delta worldwide – was considered Omicron has a substantial growth advantage, higher secondary attack rates and a higher observed reproduction number than Delta.
There is now significant evidence that immune evasion contributes to the rapid spread of Omicron. Other factors may be a shorter
serial interval (by about 0.8 to 1.2 days compared to Delta) and potential increased intrinsic transmission fitness . There is
growing evidence that with Omicron, there is lower vaccine effectiveness (VE) against infection and symptomatic disease soon after vaccination compared to Delta. There is also evidence of accelerated waning of VE over time of the primary series against infection and symptomatic disease for the studied vaccines. Further studies are required to better understand the drivers of transmission and declining incidence in various settings. These factors include the intrinsic transmission fitness properties of the virus, degree of immune evasion, vaccination coverage and level of vaccine-derived and post-infection immunity, levels of social mixing and degree of application of public health and social measures (PHSM).
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