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Publication Years
1
2104
4539
752
51
3
Category
3047
528
448
375
312
193
70
11
2
2
Toolboxes
736
459
343
330
278
274
258
240
226
208
192
190
189
167
151
129
115
71
62
59
43
28
27
15
2
1
The Arab region in the Middle East and North Africa (MENA) represents a substantial area of the terrestrial landmass encompassing several countries and ecosystems. This area is generally drier and warmer compared to the rest of the world and has extreme resource limitations that are highly vulnerabl
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e to a changing climate, geopolitical instability and land degradation (Slimani & Aidoud, 2004). Agriculture (crops and livestock) is a critical source of employment and a potential option for engaging rural youth. However, environmental degradation coupled with declining and variable agricultural productivity may pose a massive challenge already beset by instability and declining oil reserves (Tagliapietra, 2017). The Arab region is also subjected to short and long-duration climate extreme events, and the overall impact of their cascading effects on ecosystems, societies and economies is still an open question. Climate change, along with post-war geopolitical complexities, has greatly affected the Arab region in terms of its economy and social balance. Climate change has penetrating effects on the region’s agriculture sector and hence its economy. These are mainly manifested via changes in water resources and extreme weather conditions such as heatwaves and a drastic decline in precipitation.
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Trachoma is a bacterial eye infection found in poor, isolated communities lacking basic hygiene, clean water, and adequate sanitation.
Trachoma is easily spread from person to person through eye-seeking flies, hands, and clothes. Repeated infecti
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on over time leads to scarring and inward turning of the eyelid, causing the eyelashes to scratch the cornea — a very painful condition called trachomatous trichiasis — which eventually causes blindness if left untreated.
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Trachoma is a neglected tropical disease. It occurs in some of the poorest populations with limited access to clean water, sanitation, and healthcare, and is the leading cause of blindness in the world. Based on 2020 data, it is estimated that 137 m
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illion people are at risk of trachoma in 44 endemic countries.
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Schistosomiasis, also known as Bilharzia, is an infection caused by a parasitic worm that lives in fresh water in subtropical and tropical regions. Schistosomiasis is second only to malaria as the most devastating parasitic disease. The parasites th
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at cause schistosomiasis live in certain types of freshwater snails. The infectious form, known as cercariae, emerge from the snail and then contaminate the water. People become infected when their skin comes into contact with the contaminated freshwater. Most human infections are caused by Schistosoma mansoni, Schistosoma haematobium, or Schistosoma japonicum.
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Schistosomiasis, also known as bilharzia, is an infection caused by a parasitic worm that lives in fresh water in subtropical and tropical regions.
Female Genital Schistosomiasis (FGS) is a gynaecological disease caused by Schistosoma haematobium, a parasitic worm that is acquired by skin contact with freshwater contaminated by schistosome cerceriae. Communities in which the infection is most endemic have limited access to clean
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water and healthcare services. Up to 150 million adolescent girls and women are estimated to be at risk of FGS and about 16–56 milion womens are living with FGS, with the majority of these in sub-Saharan Africa. The variability of these estimates points to the fact that this neglected tropical disease is not well studied and frequently not prioritized by local, regional, and global health policy makers.
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Human schistosomiasis, a parasitic and often chronic illness, is one of the major neglected tropical diseases worldwide. It is estimated that 240 million people suffer from schistosomiasis, with more than 200000 fatalities recorded each year. Schistosomiasis is caused by an infection of the blood fl
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uke Schistosoma and is transmitted to humans through direct contact with infected water.
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Food security, human health and wellbeing largely depend on biodiversity. Biodiversity supports agriculture through ecosystem services such as pollination and water purification, and provides access to natural medicines,
which are the primary sourc
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e of health care for 4 billion people worldwide
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Dracunculiasis, also known as Guinea-worm disease is a parasitic disease caused by the nematode Dracunculus medinensis. The infection is transmitted to humans by drinking water contaminated with the small crustacean copepods (Cyclops) which contain
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the larvae of D. medinensis. Humans are the principal definitive host and Cyclops being the intermediate host. The disease is endemic to the rural and poorer areas of the world and is most common in African countries like Chad, South Sudan, Ethiopia, and Mali. Efforts are underway towards global eradication of this disease. Due to its rarity in developed countries, this activity describes the interprofessional team's role in the assessment and treatment of patients with this condition.
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Considered a neglected tropical disease, Guinea worm disease (dracunculiasis) is a parasitic infection caused by the nematode roundworm parasite Dracunculus medinensis. It is contracted when people consume water from stagnant sources contaminated wi
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th Guinea worm larvae. Inside a human's abdomen, Guinea worm larvae mate and female worms mature and grow. After about a year of incubation, the female Guinea worm, one meter long, creates an agonizingly painful lesion on the skin and slowly emerges from the body. Guinea worm sufferers may try to seek relief from the burning sensation caused by the emerging worm and immerse their limbs in water sources, but this contact with water stimulates the emerging worm to release its larvae into the water and begin the cycle of infection all over again.
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About a year after infection, a painful blister forms – 90% of the time on the lower leg – and one or more worms emerge accompanied by a burning sensation. To soothe the burning pain, patients often immerse the infected part of the body in water
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. The worm(s) then releases thousands of larvae (baby worms) into the water. These larvae reach the infective stage after being ingested by tiny crustaceans or copepods, also called water fleas.
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WASH in schools during a cholera response is important due to the strong correlation between WASH and IPC. Not only can it impact the health and well-being of students and staff but also facilitate the potential spread of the disease via the congregation of children and adults from multiple househol
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ds. Hygiene can often be more difficult to control with young children and therefore efforts to put in place systems to encourage good practices are essential.
To prevent the spread of cholera in schools, it is important to have clean and safe water sources, proper sanitation facilities, and good hygiene practices in place. This includes providing clean drinking water, hand-washing stations with soap, and education on hygiene and sanitation practices and implement Risk Communication and Community Engagement (RCCE) including dissemination of Information, Education and Communication materials (IEC).
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Soil-transmitted helminth (STH) infections are among the most common infections worldwide with an estimated 1.5 billion infected people or 24% of the world’s population. These infections affect the poorest and most deprived communities with poor access to clean
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water, sanitation and hygiene in tropical and subtropical areas, with the highest prevalence reported from sub-Saharan Africa, China, South America and Asia. They are transmitted by eggs present in human faeces, which in turn contaminate soil in areas where sanitation is poor. Over 260 million preschool-age children, 654 million school-age children,108 million adolescent girls and 138.8 million pregnant and lactating women live in areas where these parasites are intensively transmitted, and are in need of treatment and preventive interventions.
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The response to a cholera outbreak must focus on limiting mortality and reducing the spread of the disease. It should be comprehensive and multisectoral, including epidemiology, case management, water, sanitation and hygiene, logistics, community en
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gagement and risk communication. All efforts must be well coordinated to ensure a rapid and effective response across sectors.
This document provides a framework for detecting and monitoring cholera outbreaks and organizing the response. It also includes a short section linking outbreak response to both preparedness and long-term prevention activities.
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This report describes the results of the Lao People's Democratic Republic (LAO PDR) National WASH Survey 2021. The survey examined water, sanitation and hygiene (WASH) and waste management services, as well as climate resilience, in Lao PDR he
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alth-care facilities. The survey reveals that while most facilities (70%) have basic water services, there are significant gaps in the delivery of sanitation, hygiene and health-care waste services, and few facilities are climate resilient, despite a majority being impacted by extreme weather events. Based on these results, the report presents a monitoring framework and national- and HCF-level measures to further enhance WASH services and climate resilience in the country.
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Control of pollution from antibiotic manufacturing is a key part of safeguarding the longevity of antibiotics for all. Pollution contributes to antibiotic resistance and potentially undermines the effectiveness of medicines. High levels of antibiotics in w
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ater bodies downstream of manufacturing sites have been widely documented. Currently, antibiotic pollution from manufacturing is largely unregulated and quality assurance criteria typically do not address environmental emissions.
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Women, girls and marginalized groups who are largely dependent on natural resources for livelihoods are among the hardest hit by extreme weather patterns. These weather patterns limit their access to food, water, shelter, education and access to ess
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ential health services, including those that address sexual and reproductive health and rights (SRHR), gender-based violence (GBV) and preventing harmful practices such as child marriage and female genital mutilation.
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Trends in under-five mortality rate in Malawi: Child health; Child protection ; Child survival ;Early childhood ;Education ;HIV/AIDS
Maternal and newborn health ;Nutrition ;Sanitation ;Drinking water;MICS
Humanitarian emergencies result in a breakdown of critical health-care services and often make vulnerable communities dependent on external agencies for care. In resource-constrained settings, this may occur against a backdrop of extreme poverty, malnutrition, insecurity, low literacy and poor infra
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structure. Under these circumstances, providing food, water and shelter and limiting communicable disease outbreaks become primary concerns. Where effective and safe vaccines are available to mitigate the risk of disease outbreaks, their potential deployment is a key consideration in meeting emergency health needs. Ethical considerations are crucial when deciding on vaccine deployment. Allocation of vaccines in short supply, target groups, delivery strategies, surveillance and research during acute humanitarian emergencies all involve ethical considerations that often arise from the tension between individual and common good. The authors lay out the ethical issues that policy-makers need to bear in mind when considering the deployment of mass vaccination during humanitarian emergencies, including beneficence (duty of care and the rule of rescue), non-maleficence, autonomy and consent, and distributive and procedural justice
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These draft guidelines are designed to encourage humanitarian and development non-governmental organisation (NGO) practitioners to think about the types of scientific information and expertise they may need, how to access and use them, and how to ensure that they are applied in an ethical and accoun
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table manner. The publication addresses the need to defines the problem and the purpose of integrating science with the users of science, issues around access to science and understanding scientific information, how to apply the science and the important of monitoring and evaluation of impact. Case studies include a project from Christian Aid and the Evangelical Association of Malawi which brought together community members from Village Civil Protection Committees with scientists from the Department of Climate Change and Meteorology and District Council staff responsible for water management and disaster risk reduction in order to tackle a problem of flooding
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