The Ministry of Health conducted STEPS surveys on adult risk factors surveillance in Myanmar in 2003, 2009 and 2014. Amongst these three surveys, the 2014 one is the most comprehensive, providing an analysis of all States and Regions within Myanmar through not only questionnaires and physical measur...ements – STEPs 1 and 2 of the survey – but also with data obtained through biochemical measurements (STEP 3).
The STEPS survey was initiated by the Ministry of Health in December 2014 with the technical support of WHO Headquarters, regional and country offices.
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Health Evidence Network synthesis report 72
Important Guideline for Ebola prevention and control
It is designed for the following uses:
- for<.../span> prevention through preparedness--to help African health facilities make advance preparations for responding with appropriate precautions when a VHF (including Ebola) case is suspected.
- for planning and conducting in-service training to strengthen standard precautions and VHF isolation precautions.
- as a rapid reference when a VHF (i.e. Ebola) case appears at a health facility where no previous VHF preparations have been made.
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This document provides advice on personal protective measures on publictransport(e.g. bus, metro, train, commuter boats).
Part of Comprehensive Primary Health Care
These are integrated National Guidelines 2013 for Prevention and Management of HIV, STIs & Other Blood Borne Infections in accordance with the last guidelines of the World Health Organization (WHO) ...published in June 2013 and adapted to the Rwandan national context. It thus responds to the need by the Ministry of Health to improve skills of actors in the health sector as well as the quality of care and treatment offered in both public and private health facilities countrywide.
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Pre-Publication draft version. Lat reviewed on 7th July 2017
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 technology. 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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