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The COVID-19 pandemic has put significant pressure on health systems all around the world. The drastic measures established to contain its spread are creating serious impediments to economic activity (including agrifood systems) and, consequently, to livelihoods and food security and nutrition.
PHARMA’S RESPONSE TO THE COVID-19 VACCINES CRISIS. Update Feb., 14, 2022. In September 2021, Amnesty International published A Double Dose of Inequality, which assessed the extent to which the pharmaceutical industry was restricting access to Covid-19 vaccines. This report updates that assessment
...
of five leading vaccine manufacturers, AstraZeneca plc, BioNTech SE, Johnson & Johnson, Moderna Inc., and Pfizer Inc. It also includes for the first time an assessment of the two largest Chinese vaccine producers, China National Pharmaceutical Group Co., Ltd. (Sinopharm) and Sinovac Biotech Ltd. (Sinovac).
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English Analysis on World about Agriculture, Climate Change and Environment, Drought, Flood and more; published on 27 Oct 2021 by GCA
Interconnected Disaster Risks is a new science-based report for the general public from United Nations University – Institute for Environment and Human Security. It was first published in 2021, and is set to become an annual report.
This document is the third iteration of the Flash Appeal for Ukraine, which was originally published on 1 March 2022 and revised once in mid-April. This updated Flash Appeal covers the period of 10 months following the onset of the war in Ukraine that started on 24 February 2022 (i.e., from March to
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December 2022). The financial requirement of this Flash Appeal reflects the humanitarian needs from March until the end of 2022, taking into account the funding status and the response achievements to date, as well as the realistic projection of response capacity in the second half of the year.
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Emergency in Ukraine: external situation report
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Here you can download the latest Situation Reports
Weekly updates on the current situation in Ukraine and refugee-receiving countries, priority public health concerns and WHO’s actions to rapidly respond to the health emergency triggered by the conflict and to minimize disruptions to the delivery
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of critical health services.
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Climate change and variability is affecting maize (Zea mays L.) production in eastern Ethiopia but how farmers perceive the challenge and respond to it is not well documented. A study was conducted to analyze smallholder maize farmers’ perception of climate change/variability and identify their ad
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aptation approaches and barriers for adaptation in the eastern highlands of
Ethiopia.
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PlosOne https://doi.org/10.1371/journal.pone.0165797; Food production is a major driver of greenhouse gas (GHG) emissions, water and land use, and dietary risk factors are contributors to non-communicable diseases. Shifts in dietary patterns can therefore potentially provide benefits for both the en
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vironment and health. However, there is uncertainty about the magnitude of these impacts, and the dietary changes necessary to achieve them.
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Key messages
● Pre-crisis Infant and Young Child Feeding (IYCF) Practices:
The Code has not been adequately implemented and enforced in Ukraine.
Multiple Indicator Cluster Survey (MCIS) data from 2012: Child ever breastfed (95.4%); early initiation of breastfeeding (EIBF) within 1
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hr of birth (65.7%); children under 6 months exclusively breastfed (EBF)(19.7%); continued breastfeeding at 1 (37.9%) and 2 years of age (22%); children under 6 months predominantly breastfed (51.6%); children 0-23 months bottle fed (66.6%); introduction of solid, semi-solid or soft foods for children 6-8 months (43.2%).
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In 2007, WHO warned that infectious diseases are emerging and re-emerging at a rate that has not been seen before. The potential for infectious diseases to spread rapidly results in high morbidity and mortality, causing a potential global public health treat of major concern.
Several factors are
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contributing to the (re)emergence of infectious diseases such as population growth, living in close contact with animals, frequent travelling, poverty, destructive ecological changes due to economic development and land use and climate change result in global warming.
Especially Africa is at a threat for (re)emerging infectious diseases due to the huge population growth (expected to reach 2.5 billion by 2050) with rapid urbanisation. Additionally, people across and beyond the continent are excessively mobile which is combined with a weak health system. Moreover, the risk of (re)emerging infectious disease is further heightened by three newly adopted continental initiatives: African Continental Free Trade Area, Free Movement of Persons and African Passport and Single African Air Transport Market.
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The arrival and rapid spread of the mosquito-borne viral disease Chikungunya across the Americas is one of the most significant public health developments of recent years, preceding and mirroring the subsequent spread of Zika. Globalization in trade and travel can lead to the importation of these vi
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ruses, but climatic conditions strongly affect the efficiency of transmission in local settings. In order to direct preparedness for future outbreaks, it is necessary to anticipate global regions that could become suitable for Chikungunya transmission. Here, we present global correlative niche models for autochthonous Chikungunya transmission. These models were used as the basis for projections under the representative concentration pathway (RCP) 4.5 and 8.5 climate change scenarios. In a further step, hazard maps, which account for population densities, were produced. The baseline models successfully delineate current areas of active Chikungunya transmission. Projections under the RCP 4.5 and 8.5 scenarios suggest the likelihood of expansion of transmission-suitable areas in many parts of the world, including China, sub-Saharan Africa, South America, the United States and continental Europe. The models presented here can be used to inform public health preparedness planning in a highly interconnected world.
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The World Climate and Security Report 2021
Brock, S.; Barrett, O.L.; Birkman, L.; et al.
International Military Council on Climate and Security
(2021)
CC
The World Climate and Security Report (WCSR) 2021 from the Expert Group of the International
Military Council on Climate and Security is a global assessment of the security dimensions of a changing
climate and effective means to address them. It is intended to inform timely climate and security po
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licy
and action, and builds upon the analysis in the first WCSR, released in February 2020.
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The World Climate and Security Report 2021_2
Brock, S.; Barrett, O.L.; Birkman, L.; et al.
International Military Council on Climate and Security
(2021)
C1
The World Climate and Security Report (WCSR) 2021 from the Expert Group of the International Military Council on Climate and Security is a global assessment of the security dimensions of a changing climate and effective means to address them. It is intended to inform timely climate and security poli
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cy and action, and builds upon the analysis in the first WCSR, released in February 2020.
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This report, which involved input from across WaterAid, in particular from the Programme Support Unit (PSU) of WaterAid UK, includes case studies from a variety of countries, including Bangladesh, Burkina Faso, Eswatini, Ethiopia, Ghana, India and Nepal, each demonstrating what must be done now to i
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mprove WASH services and address current challenges, in order to increase community resilience to climate change.
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Extreme heat events (EHEs) are a leading cause of weather-related injury and death in the United States, and under a changing climate, these meteorological episodes are predicted to increase in both frequency and intensity. Prolonged heat exposure from EHEs places an increased strain on the heart an
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d may lead to heat-related illness if the cardiovascular system fails to properly thermoregulate internal body temperature. Every individual is susceptible to heat-related illness, however, those with reduced cardiovascular function and pre-existing cardiovascular diseases are at a greater risk for morbidity and mortality during EHEs. This document gives an overview of our current understanding of heat exposure and its impact on cardiovascular health outcomes, an overview of the medications that may exacerbate heat-related cardiovascular illness, and asummary of the interaction between extreme heat and air pollutants, and their collective impact on cardiovascular health. Additionally, this document summarizes epidemiologic evidence and identifies gaps in the extant peer-reviewed literature on the effectiveness of strategies and interventions to protect against heat-related cardiovascular disease and death. This information is intended to aid health departments and other health professionals in understanding and responding to the impacts of heat exposure on cardiovascular health.
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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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Briefing Note no. 80 November 2015
Transformation and outlook
The Lab identifies, develops, and launches sustainable finance
instruments that can drive billions to a low-carbon economy. The
2019 Global Lab Cycle targets four specific sectors across
mitigation and adaptation: blue carbon in marine & coastal
ecosystems; sustainable agriculture for smallholde
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rs in West and
Central Africa; sustainable energy access; and sustainable cities
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