The emergence of multifrug-resistant malaria in the Greater Mekong Subregion (GMS) has been identified as an emergency issue that may have catastrophic consequences on the future of malaria elimination in the GMS as well as globally. In recognition of the need for a cohesive regional response,
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GMS countries have committed to a shared goal of eliminating malaria from the GMS by 2030 working within the framework of the Strategy for Malaria Elimination in the Greater Mekong Subregion 2015-2030. Population mobility has been identified as a key concern in the context of multidrug-resistant malaria; and in a region of highly porous borders where the majority of intra-Mekong migration occurs through informal channels, addressing the health needs of migrant populations has never been more critical.
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This FY 2018 Malaria Operational Plan (MOP) presents a detailed implementation plan for Ethiopia, based on the strategies of PMI and the National Malaria Control Program (NMCP). It was developed in consultation with the Federal Ministry of Health (FMOH), NMCP, Ethiopian Public Health Institute (EP
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HI), and regional health bureaus, and with the participation of national and international partners involved in malaria prevention and control in the country. The activities that PMI is proposing to support align with the National Malaria Strategic Plan (NMSP 2014-2020) and build on investments made by PMI and other partners to improve and expand malaria-related services, including the Global Fund to Fight AIDS, Tuberculosis, and Malaria (Global Fund) malaria grants. This document briefly reviews the current status of malaria control policies and interventions in Ethiopia, describes progress to date, identifies challenges and unmet needs to achieving the targets of the NMCP and PMI, and provides a description of activities that are planned with FY 2018 funding.
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This toolkit for integrated vector management (IVM) is designed to help national and regional programme managers coordinate across sectors to design and run large IVM programmes.
The toolkit provides the technical detail required to plan, implement, monitor and evaluate an IVM approach. IVM can
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be used when the aim is to control or eliminate vector-borne diseases and can also contribute to insecticide resistance management. This toolkit provides information on where vector-borne diseases are endemic and what interventions should be used, presenting case studies on IVM as well as relevant guidance documents for reference.
The diseases that are the focus of this toolkit are malaria, lymphatic filariasis, dengue, leishmaniasis, onchocerciasis, human African trypanosomiasis and schistosomiasis. It also includes information on other viral diseases (Rift Valley fever, West Nile fever, Chikungunya, yellow fever) and trachoma. If other vector-borne diseases appear in a country or area, vector control with an IVM approach should be adopted, as per national priorities.
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Au Sénégal, la LAV repose principalement sur deux interventions majeures: la promotion de l’utilisation des Moustiquaires Imprégnées d’Insecticide à longue durée d’Action (MILDA) et l’Aspersion Intra Domiciliaire d’
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insecticide à effet rémanent (AID). Même si ces deux interventions restent efficaces dans la plupart des zones, la résistance croissante des vecteurs aux insecticides appelle d’urgence à une action coordonnée. Dès lors, la gestion de la résistance devient un impératif pour maintenir l’efficacité des stratégies de LAV. C’est dans ce cadre que le PNLP a élaboré ce présent Plan National de Gestion de la Résistance des Vecteurs aux Insecticides (PNGRVI) pour la période 2017-2020.
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L’ampleur de la résistance aux insecticides chez les vecteurs du paludisme met en péril l’efficacité des programmes de lutte anti-vectorielle. Si cette résistance n’est pas atténuée, le
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taux de morbidité palustre va s’accroître, entraînant une hausse significative des coûts liés à la prévention de la maladie. Ce nouveau cadre est un guide pour l’élaboration d’un plan national de suivi et de gestion de la résistance aux insecticides chez les vecteurs du paludisme, lequel doit considéré comme partie intégrante du plan stratégique national de lutte contre le paludisme.
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This document compiles the recommendations made by the World Health Organization (WHO) and the Pan American Health Organization (PAHO) to help professionals in charge of vector control programs in Latin America and the Caribbean at the national, subnational, and local level update their knowledge in
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order to make evidence-based decisions on the most appropriate control measures for each specific situation. IVM can be used for surveillance and control or for elimination of VBDs and can help reduce the development of insecticide resistance through the rational use of these products. This document provides instructions for fulfillment of the 2008 PAHO mandate set forth in CD 48/13 (Integrated Vector Management).
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In the context of limited resources, national malaria programmes may need to decide on how to prioritize all WHO-recommended interventions . This guidance document has been developed to support national malaria programmes in prioritization decisions, specifically on the deployment scope and product
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choice of insecticide-treated nets (ITNs). This guidance is to be
followed when programmes do not have sufficient budget to deploy the most effective ITNs to all populations at risk.
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El presente documento reúne un conjunto de recomendaciones formuladas por la Organización Mundial de la Salud (OMS) y la Organización Panamericana de la Salud (OPS) para ayudar, a los profesionales encargados de los programas de control de vectores de Latinoamérica y el Caribe a nivel nacional,
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subnacional y local, a actualizar y tomar decisiones basadas en la evidencia sobre las medidas de control más apropiadas para cada situación específica. El MIV puede utilizarse cuando la meta es la vigilancia y el control o la eliminación (dependiendo de la situación específica) de las ETV y puede contribuir a reducir el desarrollo de la Resistencia a los insecticidas mediante el uso racional de estos productos. Este documento contiene las instrucciones para llevar a cabo el mandato de la OPS del 2008 sobre el control integrado de vectores (resolución CD48.R8, documento CD48/13) y, en particular, complementa una serie de guías de la OMS publicadas en el 2012
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This FY 2017 Malaria Operational Plan presents a detailed implementation plan for Senegal, based on the strategies of PMI and the National Malaria Control Program (NMCP) strategy. It was developed in consultation with the NMCP and with the participation of national and international partners involve
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d in malaria prevention and control in the country. The activities that PMI is proposing to support fit in well with the new National Malaria Control strategy and plan (2016-2020) and build on investments made by PMI and other partners to improve and expand malaria-related services, including the Global Fund to Fight AIDS, Tuberculosis, and Malaria (Global Fund) malaria grants. This document briefly reviews the current status of malaria control policies and interventions in Senegal, describes progress to date, identifies challenges and unmet needs to achieving the targets of the NMCP and PMI, and provides a description of activities that are planned with FY 2017 funding.
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The conditionality of this recommendation is largely driven by the current higher unit cost of pyrethroid-PBO ITNs compared
to pyrethroid-only LLINs and therefore the uncertainty of their cost-effectiveness. Furthermore, as PBO is less wash-resistant
than pyrethroids, its bioavailability declines
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faster over the three-year estimated life of an ITN; therefore, the added impact of
pyrethroid-PBO ITNs over that of pyrethroid-only LLINs may decline over time. The evidence comes from two sites in
eastern Africa with pyrethroid resistance and not from other geographies where transmission levels and vector characteristics
may vary. PBO acts by inhibiting certain metabolic enzymes, primarily oxidases, and so are likely to provide greater protection
than pyrethroid-only LLINs where mosquitoes display mono-oxygenase-based insecticide resistance mechanisms.
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This FY 2019 Malaria Operational Plan presents a detailed implementation plan for Burkina Faso, based on the strategies of PMI and the National Malaria Control Program (NMCP). It was developed in consultation with the NMCP and with the participation of national and international partners involved in
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malaria prevention and control in the country. The activities that PMI is proposing to support fit in well with the national malaria control strategy and plan and build on investments made by PMI and other partners to improve and expand malaria-related services, including malaria grants from the Global Fund to Fight AIDS, Tuberculosis, and Malaria. This document briefly reviews the current status of malaria control policies and interventions in Burkina Faso, describes progress to date, identifies challenges and unmet needs to achieving the targets of the NMCP and PMI, and provides a description of activities that are planned with FY 2019 funding.
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With this World Health Day, WHO is drawing attention to a group of diseases that are spread by insects and other vectors, the heavy health and economic burdens they impose, and what needs to be done to reduce these burdens. Many of these diseases have been historically confined to distinct geographi
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cal areas, but this situation has become more fluid due to a host of ills, including climate change, intensive farming, dams, irrigation, deforestation, population movements, rapid unplanned urbanization, and phenomenal increases in international travel and trade. The control of vector-borne diseases can make a major contribution to poverty reduction, as it precisely targets the poor
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Lancet Planet Health 2022;6: e760–68
The emergence of COVID-19 has drawn the attention of health researchers sharply back to the role that food systems can play in generating human disease burden. But emerging pandemic threats are just one dimension of the complex relationship between agriculture
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and infectious disease, which is evolving rapidly, particularly in low-income and middle-income countries (LMICs) that are undergoing rapid food system transformation. This changing relationship is examined through four current disease issues.
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