Malar J (2017) 16:174 DOI 10.1186/s12936-017-1808-x
Background: Since 2004, artemisinin-based combination therapy (ACT) has been the first-line treatment for uncomplicated malaria in Benin. In 2016, a medicine outlet survey was implemented to investigate the availability, price, and market share of... anti-malarial treatment and malaria diagnostics. Results provide a timely and important benchmark to measure future interventions aimed at increasing access to quality malaria case management services.
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2016 Ghana Malaria Indicator Survey (GMIS)
World Health Organization Country profiles 2017
DIAGNOSIS, MANAGEMENT OF UNCOMPLICATED AND SEVERE MALARIA
BMC Medicine (2015) 13:42 DOI 10.1186/s12916-014-0263-6
The document provides a comprehensive overview of malaria, covering its global impact, transmission, symptoms, diagnosis, treatment, prevention strategies, and the role of public health interventions—especially in high-risk regions like sub-Saharan Africa—to reduce its incidence and mortality.
These guidelines are based on the 3rd Edition of the WHO Guidelines (Published 2015) World Health Organization’s Guidelines for the treatment of malaria. Additional literature surveys have been undertaken. Factors that were considered in the choice of therapeutic options included effectiveness, sa...fety, and impact on malaria transmission and on the emergence and spread of antimalarial drug resistance. On-going surveillance is critical given the spread of artemisinin resistance in Southeast Asia, although not yet confirmed anywhere in Africa. The guidelines on the treatment of malaria in South Africa aim to facilitate effective, appropriate and timeous treatment of malaria, thereby reducing the burden of this disease in our communities. This is essential to further reduce the malaria case fatality rates currently recorded in South Africa, to decrease malaria transmission and to limit resistance to antimalarial drugs.
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Benin’s National Malaria Strategy calls for eliminating
malaria as a public health threat by 2030. ARM3 was
developed to measurably and significantly speed up
progress toward that goal.
The Plan of Action for Malaria Elimination 2021-2025 has been developed in consultation with countries and regional partners as a framework of reference to guide the efforts of countries and the contributions of donors and partners towards elimination of the disease in the Americas. The Plan subscri...bes to the goals and pillars of the WHO Global Technical Strategy against Malaria 2016-2030 (GTS), while presenting key elements to address the specific challenges of the Region. The document seeks to guide national plans and promote an inter-programmatic- intersectoral approach, and joint efforts between countries and partners. The Plan is also the reference framework for PAHO technical cooperation in malaria in the period 2021-2025. The goals to be achieved require changes in action against malaria that must occur at the operations level and for which regulatory and policy adjustments are required from the national levels. Thus, the Plan promotes a systematic action of detection, diagnosis and response, which must be massively implemented and monitored programmatically. A main element of change is action aimed at recognizing the need to address key malaria foci in each country with specific, information-based operational solutions. The Plan of Action seeks to promote these changes in malaria programs in the countries and through the interactions among all actors. The model proposed in this plan is based on a cross-functional dialogue and interconnections across the lines of action (SL). Strategic lines 1, 2 and 3, which correspond to the three pillars of the WHO/GTS, complement each other, and are not designed to function independently. The idea of the consolidated supportive elements - strengthened health systems, strategic planning, financing, partnerships, advocacy, and operational research (SL 4) is to provide the platform, operational structures and alliances for the more specific malaria interventions presented in strategic lines 1, 2 and 3.
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PNAS | March 4, 2014 | vol. 111 | no. 9
Malaria is an important disease that has a global distribution and significant health burden. The spatial limits of its distribution and seasonal activity are sensitive to climate factors, as well as the local capacity to control the disease. Malaria is also ...one of the few health outcomes that has been modeled by more than one research group and can therefore facilitate the first model intercomparison for health impacts under a future with climate change. We used bias-corrected temperature and rainfall simulations from the Coupled Model Intercomparison Project Phase 5 climate models to compare the metrics of five statistical and dynamical malaria impact models for three future time periods (2030s, 2050s, and 2080s). We evaluated three malaria outcome metrics at global and regional levels: climate suitability, additional population at risk and additional person-months at risk across the model outputs. The malaria projections were based on five different global climate models, each run under four emission scenarios (Representative Concentration Pathways, RCPs) and a single population projection. We also investigated the modeling uncertainty associated with future projections of populations at risk for malaria owing to climate change. Our findings show an overall global net increase in climate suitability and a net increase in the population at risk, but with large uncertainties. The model outputs indicate a net increase in the annual person-months at risk when comparing from RCP2.6 to RCP8.5 from the 2050s to the 2080s. The malaria outcome metrics were highly sensitive to the choice of malaria impact model, especially over the epidemic fringes of the malaria distribution.
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SOP- Quality Assurance of Malaria Diagnostic Tests