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3646
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Dengue is a mosquito-borne viral disease that occurs mainly in the tropics and subtropics but has a high potential to spread to new areas. Dengue infections are climate sensitive, so it is important to better understand how changing climate factors affect the potential for geographic spread and futu
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re dengue epidemics. Vectorial capacity (VC) describes a vector's propensity to transmit dengue taking into account human, virus, and vector interactions. VC is highly temperature dependent, but most dengue models only take mean temperature values into account. Recent evidence shows that diurnal temperature range (DTR) plays an important role in influencing the behavior of the primary dengue vector Aedes aegypti. In this study, we used relative VC to estimate dengue epidemic potential (DEP) based on the temperature and DTR dependence of the parameters of A. aegypti. We found a strong temperature dependence of DEP; it peaked at a mean temperature of 29.3°C when DTR was 0°C and at 20°C when DTR was 20°C. Increasing average temperatures up to 29°C led to an increased DEP, but temperatures above 29°C reduced DEP. In tropical areas where the mean temperatures are close to 29°C, a small DTR increased DEP while a large DTR reduced it. In cold to temperate or extremely hot climates where the mean temperatures are far from 29°C, increasing DTR was associated with increasing DEP. Incorporating these findings using historical and predicted temperature and DTR over a two hundred year period (1901-2099), we found an increasing trend of global DEP in temperate regions. Small increases in DEP were observed over the last 100 years and large increases are expected by the end of this century in temperate Northern Hemisphere regions using climate change projections. These findings illustrate the importance of including DTR when mapping DEP based on VC.
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Environment International Volume 146, January 2021, 106245.
We use soils to provide 98.8% of our food, but we must ensure that the pressure we place on soils to provide this food in the short-term does not inadvertently push the Earth into a less hospitable state in the long-term. Using the planeta
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ry boundaries framework, we show that soils are a master variable for regulating critical Earth-system processes. Indeed, of the seven Earth-systems that have been quantified, soils play a critical and substantial role in changing the Earth-systems in at least two, either directly or indirectly, as well as smaller contributions for a further three.
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Global Fund Strategy 2023-2028
Available in different languages from the website https://www.theglobalfund.org/en/publications/
This catalogue serves the purpose of connecting stakeholders from the
energy and health sectors with solutions providers, to help meet the
energy needs of healthcare facilities in response to COVID-19 and
beyond. The solutions provided herein represent a sample of a larger
group of solution prov
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iders who can contribute to addressing this
challenge
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The Kigali Declaration on neglected tropical diseases (NTDs) is a high-level, political declaration which aims to mobilise political will and secure commitments to achieve the Sustainable Development Goal 3 (SDG3) target on NTDs and to deliver the targets set out in the World Health Organization’s
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Neglected Tropical Disease Roadmap (2021-2030).
Available in English, French, Spanish, Portuguese, German, Kiswahli, Chinese,
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Transformation and outlook
Climate Smart Agriculture provides an excellent opportunity for the transformation by uniting agriculture, development and climate change under a common agenda through integrating the three dimensions of sustainable development (economic, social and environmental) by jointly addressing food security
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and climate challenge
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The Kenya Climate Smart Agriculture Implementation Framework 2018-2027 (KCSAIF) has been developed to provide a guide to various innovative and transformative initiatives and best practices that will strive to address challenges brought about by climate change. It is envisioned to ensure increased a
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gricultural productivity and sustainably build resilience of the national agricultural systems.
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The Executive Board at its 150th session noted an earlier version of this report.1 The present report provides an update on the implementation of the Strategic Action Plan on Polio Transition (2018–2023)2 at the start of 2022, within the context of the coronavirus disease (COVID-19) pandemic.
The disruptions in imports, production and the related surge in food prices induced by the current conflict in Ukraine have the potential to worsen the food security situation in the Eastern Africa Region, which is already been impacted by the effect of three consecutive below-normal rainfall season
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s.
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A global food crisis fuelled by conflict, climate shocks and the COVID-19 pandemic is growing because of the ripple effects of the war in Ukraine driving rising prices of food, fuel and fertilizer. Millions of people across the world are at risk of being driven into starvation unless action is taken
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now to respond together and at scale. Due to the unprecedented overlap of crises, WFP’s annual operational requirements are at an all-time high of US$22.2 billion, with confirmed contributions so far at US$4.8 billion (22 percent). WFP is calling for coordinated action to address this crisis.
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The Investment guidelines for youth in agrifood systems in Africa, developed jointly by FAO and the African Union Commission (AUC) through a multi-stakeholder and participatory process, highlight the importance of youth as change agents and key stakeholders contributing to sustainable agrifood syste
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ms. The guidelines aim to accelerate investments in and by youth in agrifood systems by providing practical guidance - including tools and examples - to design, develop, implement, monitor and evaluate youth-focused and youth-sensitive investment programmes and to engage youth fully as partners in the entire process.
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The Lancet Planetary Health Volume 6, ISSUE 4, e342-e349, April 01, 2022. Human impacts on earth-system processes are overshooting several planetary boundaries, driving a crisis of ecological breakdown. This crisis is being caused in large part by global resource extraction, which has increased dra
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matically over the past half century. We propose a novel method for quantifying national responsibility for ecological breakdown by assessing nations’ cumulative material use in excess of equitable and sustainable boundaries.
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The Lancet Planetary Health, Vol.5 Issue 2, Feb. 1,2021.
Nationally determined contributions (NDCs) serve to meet the goals of the Paris Agreement of staying “well below 2°C”, which could also yield substantial health co-benefits in the process. However, existing NDC commitments are inadequa
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te to achieve this goal. Placing health as a key focus of the NDCs could present an opportunity to increase ambition and realise health co-benefits. We modelled scenarios to analyse the health co-benefits of NDCs for the year 2040 for nine representative countries (ie, Brazil, China, Germany, India, Indonesia, Nigeria, South Africa, the UK, and the USA) that were selected for their contribution to global greenhouse gas emissions and their global or regional influence.
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Annals of Global Health, 87(1), p.30. DOI: http://doi.org/10.5334/aogh.2647
this publication serves as a practical guide and useful resource for practitioners, farmers, scientists, and technicians to better understand the initiative undertaken by GGGI. In this compendium, GGGI provides the latest knowledge and capacity building materials on these topics and offers informati
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on on the most relevant topics on technologies related to climate-smart agriculture and solar irrigation – both of which can be used as training materials.
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