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Publication Years
1
1997
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6
2
1
Baseline Mapping of Neglected Tropical Diseases in Africa: The Accelerated WHO/AFRO Mapping Project
Rebollo M.P., Onyeze A.N., Tiendrebeogo A. et al
The American Society of Tropical Medicine and Hygiene
(2021)
C2
ajtmh.20-1538 Volume 104, 6. Mapping is a prerequisite for effective implementation of interventions against neglected tropical diseases (NTDs). Before the accelerated World Health Organization (WHO)/Regional Office for Africa (AFRO) NTD Mapping Project was initiated in 2014, mapping efforts in man
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y countries were frequently carried out in an ad hoc and nonstandardized fashion. In 2013, there were at least 2,200 different districts (of the 4,851 districts in the WHO African region) that still required mapping, and in many of these districts, more than one disease needed to be mapped. During its 3-year duration from January 2014 through the end of 2016, the project carried out mapping surveysfor one ormore NTDs in at least 2,500 districts in 37 African countries. At the end of 2016, most (90%) of the 4,851 districts had completed the WHO-required mapping surveys for the five targeted Preventive Chemotherapy (PC)-NTDs, and the impact of this accelerated WHO/AFRO NTD Mapping Project proved to be much greater than just the detailed mapping results themselves. Indeed, the AFRO Mapping
Project dramatically energized and empowered national NTD programs, attracted donor support for expanding these programs, and developed both a robust NTD mapping database and data portal. By clarifying the prevalence and burden
of NTDs, the project provided not only the metrics and technical framework for guiding and tracking program implementation and success but also the research opportunities for developing improved diagnostic and epidemiologic sampling tools for all 5 PC-NTDs—lymphatic filariasis, onchocerciasis, schistosomiasis, soil-transmitted helminthiasis, and trachoma.
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Chagas heart disease (CHD) affects approximately 30% of patients chronically infected with the protozoa Trypanosoma cruzi. CHD is classified into four stages of increasing severity according to electrocardiographic, echocardiographic, and clinical criteria. CHD presents with a myriad of clinical man
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ifestations, but its main complications are sudden cardiac death, heart failure, and stroke. Importantly, CHD has a higher incidence of sudden cardiac death and stroke than most other cardiopathies, and patients with CHD complicated by heart failure have a higher mortality than patients with heart failure caused by other etiologies. Among patients with CHD, approximately 90% of deaths can be attributed to complications of Chagas disease. Sudden cardiac death is the most common cause of death (55%-60%), followed by heart failure (25%-30%) and stroke (10%-15%). The high morbimortality and the unique characteristics of CHD demand an individualized approach according to the stage of the disease and associated complications the patient presents with. Therefore, the management of CHD is challenging, and in this review, we present the most updated available data to help clinicians and cardiologists in the care of these patients. We describe the clinical manifestations, diagnosis and classification criteria, risk stratification, and approach to the different clinical aspects of CHD using diagnostic tools and pharmacological and non-pharmacological treatments.
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Antimicrobial resistance (AMR) is a global human, animal, plant and environment health threat that needs to be addressed by every country. The impacts of AMR are wide-ranging in terms of human health, animal health, food security and safety, environmental effects on ecosystems and biodiversity, and
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socioeconomic development. Just like the climate crisis, AMR poses a significant threat to the delivery of the 2030 Agenda for Sustainable Development. The response to the AMR crisis has been spearheaded through the global action plan on antimicrobial resistance (GAP-AMR), developed by the World Health Organization (WHO) in 2015, in close collaboration with the Food and Agriculture Organization of the United Nations (FAO) and the World Organisation for Animal Health (WOAH), and formally endorsed by the three organizations’ governing bodies and by the Political Declaration of the high-level meeting of the United Nations General Assembly on AMR in 2016. In 2022, the three organizations officially became the Quadripartite by welcoming the United Nations Environment Programme (UNEP) into the alliance “to accelerate coordination strategy on human, animal and ecosystem health”.
The aim of the GAP-AMR is to ensure the continuity of successful treatment with effective and safe medicines.
Its strategic objectives include:
• improving the awareness and understanding of AMR;
• strengthening the knowledge and evidence base through surveillance and research;
• reducing the incidence of infection through effective sanitation, hygiene and infection prevention measures; optimizing the use of antimicrobial medicines in human and animal health; and
• developing the economic case for sustainable investment that takes account of the needs of all countries and increasing investment in new medicines, diagnostic tools, vaccines and other interventions.
With the adoption of the GAP-AMR, countries agreed to develop national action plans (NAPs) aligned with the GAP-AMR to mainstream AMR interventions nationally. Individually, the Quadripartite took action to advance AMR interventions in their respective sectors. FAO adopted a resolution on AMR recognizing that it poses an increasingly serious threat to public health and sustainable food production, and developed an AMR action plan to support the resolution’s implementation. For its part, WOAH developed a strategy on AMR aligned with the GAP-AMR, acknowledging the importance of a One Health approach to AMR. Similarly, more recently, UNEP’s governing body, the United Nations Environment Assembly, recognized that AMR is a current and increasing threat and a challenge to global health, food security and the sustainable development of all countries, and welcomed the GAP-AMR and the NAPs developed in accordance with its five overarching strategic objectives
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Fully functioning water, sanitation, hygiene (WASH) and health care waste management services are a critical aspect of infection prevention and control (IPC) practices, and ensuring patient safety and quality of care. Such services are also essential for creating an environment that supports the dig
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nity and human rights of all care seekers, especially mothers, newborns, children and care providers.
WASH and waste services are also critical for preventing and effectively responding to disease outbreaks. The COVID-19 pandemic has exposed gaps in these basic services (Box 1). These gaps threaten the safety of patients and caregivers, and have environmental consequences, especially as a result of large increases in plastic health care waste. In short, WASH is a critical foundation for improving quality across the health system (1).
Many facilities lack plans and budgets for WASH, which has impacts on IPC. This lack of services, and of systems to improve them, compromises the ability to provide safe and quality care, and places health care providers and those seeking care at substantial risk of infection and loss of dignity. Unhygienic health care facilities without drinking water or functional toilets are also a disincentive to seeking care and undermine staff morale – these factors can have a critical impact on controlling infectious disease outbreaks.
Climate change and its impacts on WASH and health services, gender-specific needs, and equity in service provision and management all require rigorous attention, adaptable tools and regular monitoring.
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Today, the World Health Organization (WHO) is advancing the global fight against acute malnutrition in children under 5 with the launch of its new guideline on the prevention and management of wasting and nutritional oedema (acute malnutrition). This milestone is a crucial response to the persistent
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global issue of acute malnutrition, which affects millions of children worldwide.
In 2015, the world committed to achieving the Sustainable Development Goals (SDGs), including the ambitious target of eliminating malnutrition in all of its forms by 2030. However, despite these commitments, the proportion of children with acute malnutrition has persisted at a worrying level, affecting an estimated 45 million children under five worldwide in 2022.
In 2022, approximately 7.3 million children received treatment for severe acute malnutrition (SAM). Although treatment coverage has increased, children with SAM in many of the worst affected countries are still unable to access the full necessary care for them to recover.
The Global Action Plan (GAP) on child wasting recognized the need for updated normative guidance to support governments in the prevention and management of acute malnutrition. WHO answered this call to action and developed a comprehensive guideline that provides evidence-based recommendations and good practice statements and will be followed by guidance and tools for implementation.
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Cholera is a transmissible diarrhoeal infection caused by Vibrio cholerae. Endemic and/or epidemic in over 40 countries (mainly in Africa and Asia), cholera continues to be a major global public health issue.
The World Health Organization (WHO) estimates that the number of cases reported worldwid
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e represents in reality only 5 to 10% of actual cases.
This guide is intended for medical and non-medical staff responding to a cholera outbreak. It attempts to provide concrete answers to the questions and problems faced by staff, based on the recommendations of reference organisations, such as WHO and UNICEF, as well as Médecins Sans Frontières’ experience in the field.
It is divided into 8 chapters. Chapter 1, Cholera overview, outlines the epidemiological and clinical features of cholera. Chapter 2, Outbreak investigation, explains the method and stages of a field investigation, from the alert to implementation of initial activities. Chapter 3, Cholera control measures, details measures and tools to prevent and/or control cholera transmission and mortality in populations affected, or at risk of being affected, by an epidemic (curative care, prevention means and health promotion activities). Chapter 4, Strategies for epidemic response, addresses the roll-out strategies of the measures described in Chapter 3 which depend on context (e.g. urban, rural, endemic, non-endemic setting, etc.), resources and particular constraints. Chapter 5, Cholera case management, details the different stages of cholera treatment, from diagnosis through to cure.
Chapter 6, Setting up cholera treatment facilities, focuses on the installation of treatment facilities that vary in size and complexity according to operational requirements (treatment centres and units and oral rehydration points). Chapter 7, Organisation of cholera treatment facilities, describes the organisation of these specialized facilities in terms of human resources, supply, water, hygiene and sanitation, etc. Chapter 8, Monitoring and evaluation, presents the key data to be collected and analysed during an epidemic to facilitate a tailored response and evaluate its quality and effectiveness.
The guide includes various practical tools in the appendices to facilitate activities (e.g. water quality tests, job descriptions, documents, etc.). Moreover, the toolbox also contains additional tools in editable formats (individual patient file, cholera case register, pictograms).
Despite all efforts, it is possible that certain errors may have been overlooked in this guide. Please inform the authors of any errors detected.
To ensure that this guide continues to evolve while remaining adapted to field realities, please send any comments or suggestions.
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Médecins Sans Frontières (MSF) Guidance App
recommended
For those with smartphones, you can install the free ‘MSF Guidance’ app by the Open Medicine Project from the app store. It includes the MSF guidelines on Ebola and Marburg virus disease. MSF guidance is an easily searchable app with all the latest MSF clinical protocols and essential drug info
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rmation for medical field workers. All content can be downloaded before mission and accessed at any time.
MSF Guidance for Android devices:
https://play.google.com/store/apps/details?id=org.msf.medical.guidelines&hl=en_US&gl=US
MSF Guidance for Apple devices:
https://apps.apple.com/si/app/msf-medical-guidelines/id1282995934
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ResistanceSim is a simulation game for public health professionals. Gamers must take on a resistant virtual mosquito population and improve the health in the Province.
A web-based portal that connects the data and information generated through coordination processes to the managers and leaders who rely on it for decision-making. Using Humanitarian InSight, anyone can, for the first-time, access publicly available information on needs, response, funding and gaps th
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rough one innovative and intuitive online portal. Humanitarian InSight will help strengthen our commitment to greater transparency and accountability, and increasingly allow us to showcase collective achievements in coordinated humanitarian response.
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A smartphone app, the Humanitarian Hands-on Tool (HHoT), provides step-by-step practical guidance on how to implement a disability inclusive emergency response.
Developed and launched by CBM in 2017, the HHoT is free, easy to use, fully accessible and is the first application of its kind.
HHoT pr
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ovides step-by-step guidance on how to adapt and improve emergency response by simple one-page guidance on how-to make humanitarian action inclusive and accessible to all people with disabilities. For the first time ever, the Tool also integrates Mental Health and Psychosocial Support throughout in a smartphone app targeted towards humanitarian aid.
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1-2-3- Servie COVID-19 Information
recommended
WHO is working with Viamo, a global social enterprise improving lives via mobile, to provide WHO’s COVID-19 information, including vaccines, to the hardest to reach populations, in their languages, through the mobile phones they own. This includes people with simple phones (feature phones) or with
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limited access to the internet. Since the onset of COVID-19, Viamo’s 3-2-1 Service has become a trusted, toll-free source of life-saving COVID-19 health information for people in 19 countries. Listeners dial in and access important messages that help them make better informed decisions to live healthier lives.
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The RehApp is specifically designed for fieldworkers in low-and middle-income countries and aims to enhance their capacity to work with people with disabilities within the community: assess their abilities and inabilities, design rehabilitation interventions, provide care and support and refer appro
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priately. It consists of different chapters – covering various types of impairments – organised according to the International Classification of Functioning, Disability and Health, commonly known as the ICF.
The RehApp is available for free, and once downloaded, it can be used in any setting without internet access. It is currently available in English, French, Nepali, and Portuguese. Several chapters area also available in Amharic, Burmese, Khmer, Spanish, Tajik and Vietnamese. The App is available for Apple and for Android.
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OpenWHO is WHO’s new interactive, web-based, knowledge-transfer platform offering online courses to improve the response to health emergencies. OpenWHO enables the Organization and its key partners to transfer life-saving knowledge to large numbers of frontline responders.
On this platform you fi
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nd online courses on: Pandemic and epidemic-prone diseases; Incident Management System; MERS; Ebola; Public Health Interventions; Risk communication; Predeployment training GO; ZIKA; Influenza
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HelpAge has been raising awareness among humanitarian actors and government institutions about the vulnerabilities of older men and women during humanitarian crises in the region since 2009.
This digital learning platform was established for the purpose of remote humanitarian response for hard to r
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each areas. HelpAge International is utilizing expertise to train international and national organizations, government agencies, and the private sector on Age Inclusive Interventions.
These series of trainings on 'Helping Older People in Emergencies (HOPE)' is designed to strengthen the capacity of humanitarian actors to ensure that their humanitarian action is evidence-based and responds to the distinct needs and priorities of crisis-affected to older men, women, and other vulnerable groups.
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AVADAR is a mobile sms-based software application designed to improve the quality and sensitivity of Acute Flaccid Paralysis (AFP) surveillance by health workers and key informants within hospital facilities and local communities.
The idea is simple: Health workers visit remote villages to check if
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local inhabitants have any symptoms of a range of life-threatening infectious diseases, including polio and measles. Then, with the mobile app, they quickly and easily alert WHO.
The AFP video component was developed by World Health Organization (WHO) and eHA, and the software design component was handled by Novel-T. To date, eHA has translated the app into 17 languages.
Informant Selection & Capacity Building
The selection of informants (including health workers) was led by the WHO and each country’s Ministry of Health team. Once selected, screening and training was jointly conducted by WHO, the Ministries of Health, and eHealth Africa team.
In several countries, “special informants” with limited literacy participate in the project via a simplified version of the app that only requires a “yes” or “no” response to having seen a child with AFP symptoms
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Medical Learning Hub
recommended
Medical Learning Hub is a product of Tech Care for All, a social impact company that owns and commercializes digital health solutions across Africa and Asia.
medPPE Medical Personal Protection Equipment App
recommended
MedPPE emphasizes the role and timing of health workers jobs and offers specific information to prevent the spread of COVID-19. The guidelines are aimed at all personnel working in health facilities, including security guards, administrative and cleaning personnel, transfer assistants, nurses, biome
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dical and imaging technicians, surgeons, and physicians, among others.
MedPPE provides guidance for the use of PPE according to workers’ function, the level of care they provide, and the multiple environments of primary health care and hospitals. The tool also clarifies the type of PPE needed when performing aerosol-generating procedures and other activities related to the care of patients infected or suspected of being infected with COVID-19.
However, use of PPE alone is not enough to protect against COVID-19. Hand hygiene and proper PPE dressing and undressing procedures must also be followed, along with the proper disposal and management of waste.
MedPPE is available in Spanish, English, Portuguese and French for iOS and Android devices.
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medPPE es una aplicación para dispositivos iOS y Android donde el personal de salud encontrará la información necesaria sobre los equipos de protección personal (EPP) sugeridos por la OPS/OMS, que deben ser utilizados de acuerdo con la función y la actividad que desempeña en el proceso de aten
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ción de pacientes con enfermedades, como la COVID-19, transmitidas por gotas y contacto, o durante procedimientos generadores de aerosoles.
Es importante recordar que usar el EPP no es suficiente para estar protegido y que son varias las condiciones a considerar, tales como: seguir las indicaciones sobre el tipo de EPP a utilizar, usarlo por el tiempo y de la manera adecuada, conocer y señalar los flujos de pacientes establecidos, igual que los procedimientos de atención que va a realizar.
Hay que cumplir con las medidas de higiene de manos y con los procedimientos de vestido-desvestido de los EPP y la disposición y manejo de residuos. Es igualmente importante difundir la información y mantener el entrenamiento al personal sanitario y a los funcionarios administrativos. Además, se debe señalizar los flujos de circulación, e informar y educar a los pacientes y allegados.
Puede descargar el aplicativo para iOS e Android
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medPPE é um aplicativo para dispositivos iOS e Android em que o trabalhador de saúde encontrará as informações necessárias sobre equipamentos de proteção individual (EPI) sugeridos pela OPAS/OMS, que devem ser utilizadas de acordo com o papel e atividade que desempenha no cuidado de paciente
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s com doenças, como a COVID-19, transmitidas por gotas e contato, ou durante procedimentos de geração de aerossóis (PGA).
Medidas de higiene das mãos e procedimentos de retirada do EPI e o descarte e o gerenciamento de resíduos devem ser cumpridos. É igualmente importante disseminar informações e manter a formação de trabalhadores da saúde e funcionários administrativos. Além disso, os fluxos de circulação devem ser sinalizados, e pacientes e familiares informados e educados.
Você pode baixar o aplicativo para iOS e Android
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