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6
Since 2001, local NGO Dakupa,1 with the support of WaterAid, began to implement a water, sanitation and hygiene (WASH) project in several urban municipalities in the Central East region of Burkina Faso. In line with the principles of equity and inclusion, the objective of this project was to improve
...
access to WASH services for people with
disabilities (PWD) through the construction of accessible water points and latrines. To date, about ten wheelchair accessible standpipes have been constructed in places such as the town of Tenkodogo, the subject of this study.
more
As the number of transboundary pest and animal and foodborne disease outbreaks rises, so does the number of people who are chronically hungry due to these and other factors. The correlation can be explained by the link between our health and that of the planet. We rely on land and sea for the produc
...
tion of safe and quality foods for our daily nourishment. Pests and disease epidemics negatively impact the quality, quantity and safety of our food sources, and cripple economic growth and efficiencies in production. Furthermore, the epidemic and endemic levels of the pathogens and disease vectors can be difficult to control. This is why FAO stresses and promotes the special efforts required for cost-effective preventive measures rather than the more expensive control, disinfestation, treatment and disposal measures. When preventive measures are late or difficult, preparedness and contingency plans must be in place to enable rapid response. Early warning systems, based on close monitoring, surveillance, and timely reporting are fundamental to warn and empower communities to safeguard their livelihoods and assets by enhancing disease and pest prevention measures and for government services to take immediate measures to protect communities and national economies.
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Healthcare-associated infections (HAI) are a significant burden globally, with millions of patients affected each year. These infections affect both high- and limited-resource healthcare settings, but in limited-resource settings, rates are approximately twice as high as high-resource settings (15 o
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ut of every 100 patients versus 7 out of every 100 patients). Furthermore, rates of infections within certain patient populations are significantly higher in limited-resource settings, including surgical patients, patients in intensive-care units (ICU) and neonatal units. It is well documented that environmental contamination plays a role in the transmission of HAIs in healthcare settings. Therefore, environmental cleaning is a fundamental intervention for infection prevention and control (IPC).It is a multifaceted intervention that involves cleaning and disinfection (when indicated) of the environment alongside other key program elements to support successful implementation (e.g., leadership support, training, monitoring, and feedback mechanisms). To be effective, environmental cleaning activities must be implemented within the framework of the facility IPC program, and not as a standalone intervention. It is also essential that IPC programs advocate for and work with facility administration and government officials to budget, operate and maintain adequate water, sanitation and hygiene (WASH) infrastructure to ensure that environmental cleaning can be performed according to best practices.
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Guía práctica para mejorar la calidad de la atención mediante los servicios de agua, saneamiento e higiene en los establecimientos de salud
Guide pratique pour l'amélioration de la qualité des soins grâce à de meilleurs services d'eau, d'assainissement et d'hygiène dans les établissements de santé
A Guide to the Application of the WHO Multimodal Hand HygieneImprovement Strategy and the “My Five Moments for Hand Hygiene”Αpproach
Risk Communication and Community Engagement (RCCE) is an essential component of your health emergency preparedness and response action plan. This tool is designed to support risk communication, community engagement staff and responders working with national health authorities, and other partners to
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develop, implement and monitor an effective action plan for communicating effectively with the public, engaging with communities, local partners and other stakeholders to help prepare and protect individuals, families and the public’s health during early response to COVID-19.
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Water, sanitation, hygiene, and waste management for SARS-CoV-2, the virus that causes COVID-19
recommended
Updated Interim guidance 29 July 2020
The provision of safe water, sanitation and waste management and hygienic conditions is essential for preventing and for protecting human health during all infectious disease outbreaks, including of coronavirus disease 2019 (COVID-19). Ensuring evidenced-based
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and consistently applied WASH and waste management practices in communities, homes, schools, marketplaces, and healthcare facilities will help prevent human-to-human transmission of pathogens including SARS-CoV-2, the virus that causes COVID-19.
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Interim guidance 19 March 2020
The second ECDC/EFSA/EMA joint report on the integrated analysis of antimicrobial consumption (AMC) and antimicrobial resistance (AMR) in bacteria from humans and food-producing animals addressed data obtained by the Agencies’ EU-wide surveillance networks for 2013–2015. AMC in both sectors, exp
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ressed in mg/kg of estimated biomass, were compared at country and European level. Substantial variations between countries were observed in both sectors. Estimated data on AMC for pigs and poultry were used for the first time. Univariate and multivariate analyses were applied to study associations between AMC and AMR. In 2014, the average AMC was higher in animals (152 mg/kg) than in humans (124 mg/kg), but the opposite applied to the median AMC (67 and 118 mg/kg, respectively). In 18 of 28 countries, AMC was lower in animals than in humans. Univariate analysis showed statistically-significant (p < 0.05) associations between AMC and AMR for fluoroquinolones and Escherichia coli in both sectors, for 3rd- and 4th-generation cephalosporins and E. coli in humans, and tetracyclines and polymyxins and E. coli in animals. In humans, there was a statistically-significant association between AMC and AMR for carbapenems and polymyxins in Klebsiella pneumoniae. Consumption of macrolides in animals was significantly associated with macrolide resistance in Campylobacter coli in animals and humans. Multivariate analyses provided a unique approach to assess the contributions of AMC in humans and animals and AMR in bacteria from animals to AMR in bacteria from humans. Multivariate analyses demonstrated that 3rd- and 4th-generation cephalosporin and fluoroquinolone resistance in E. coli from humans was associated with corresponding AMC in humans, whereas resistance to fluoroquinolones in Salmonella spp. and Campylobacter spp. from humans was related to consumption of fluoroquinolones in animals. These results suggest that from a ‘One-health’ perspective, there is potential in both sectors to further develop prudent use of antimicrobials and thereby reduce AMR.
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Los servicios de emergencias médicas prehospitalarias (SEM) facilitan atención inicial de soporte vital básico y/o avanzado y traslado de heridos o enfermos desde el lugar donde ocurre la emergencia hasta el centro sanitario donde le van a prestar cuidados definitivos. Los SEM también pueden pre
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star traslado de pacientes desde una instalación de salud a otra de mayor nivel o complejidad, en lo que se conoce como traslado interhospitalario. Los servicios de ambulancia es el componente más conocido y puede ser prestado por diferentes proveedores que pueden ir desde departamentos de bomberos, organizaciones de voluntarios o servicios adscritos a universidades hasta hospitales que cuentan con su propio servicio de ambulancias para cubrir a sus usuarios. Los SEM prehospitalarios también incluyen otros componentes como los centros tipo 911 o los Centro Reguladores de Urgencia y Emergencias (CRUE) y los programas de primer respondiente. Todos ellos deben integrase de una forma coordinada con las redes integradas de servicios de salud para asegurar una continuidad de los cuidados de salud prestados a la persona herida o enferma. Durante emergencias de salud pública, los servicios de emergencia medicas prehospitalarias pueden verse superados por el número de llamadas o demanda de traslados médicos.
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La capacidad de respuesta de un hospital puede ser superada por la llegada masiva de pacientes que soliciten atención médica como consecuencia de una situación de emergencia. Ante este escenario, se debe considerar si el establecimiento de salud está organizado para garantizar la gestión integr
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al de la respuesta hospitalaria, el funcionamiento de los mecanismos de coordinación, el manejo integral de la información, las capacidades logísticas para facilitar la respuesta, y los recursos necesarios para su ejecución, así como para una respuesta integral a los pacientes, precautelando la salud y bienestar de los trabajadores de salud. (7)
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Objetivos
• Los dispositivos médicos enumerados en este documento proporcionan estándares mínimos y descripciones técnicas y especificaciones de dispositivos médicos para el tratamiento de soporte de COVID-19.§ • Estos dispositivos médicos no son limitados y son adaptables a todos los p
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aíses de la región, independientemente de sus diferentes sistemas de atención médica y disparidades socioeconómicas. Además, se recomiendan para: o Terapia de soporte temprana y monitoreo de infecciones respiratorias agudas graves (IRAG) cuando se sospecha de infección por COVID-19; o Tratamiento de la insuficiencia respiratoria hipoxémica y el síndrome de dificultad respiratoria aguda (SDRA) en pacientes con COVID-19; o Manejo del shock séptico en pacientes con COVID-19.
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MICROBIAL DRUG RESISTANCEVolume 24, Number 5, 2018ªMary Ann Liebert, Inc.DOI: 10.1089/mdr.2017.0383
Antibiotic resistance (ABR) is a worldwide publichealth concern, with serious health, economic, and so-cietal repercussions. Its emergence is attributed to the se-lective pressure exerted by antib
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iotic use in the community, hospitals, veterinary health, agriculture, aquaculture, and the environment. Additionally aggravating the situation is the fact that very few new antibiotics have recently been produced by pharmaceutical companies. It is widely acknowledged that food animals are key reservoirs of antibiotic-resistant bacteria and that antibiotic usage in this population favors the emergence, selection, and spread of resistance among animals and humans, both through zoonoses (infectious diseases trans-mitted between animals and humans) and the food chain.
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Comprehensive Reviews in Food Science and Food Safety, Vol.12 (2013) pp.234-248
In 2006, the Institute of Food Technologists (IFT) published an Expert Report entitled “Antimicrobial Resistance: Implications for the Food System” (IFT 2006). That report summarized current scientific knowledge pe
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rtaining to the public-health impact of antimicrobial use in the food system and the development and control of antimicrobial resistance. Since that time, intense interest in this topic has continued within the regulatory and scientific communities as well as the general public. This IFT Scientific Status Summary serves to update that 2006 IFT Expert Report by briefly reviewing new scientific evidence relevant to the goals of the initial report and providing a number of key observations and conclusions.
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Stewardship is defined as “the careful and responsible management of something entrusted to one’s care”. It was originally applied in the health-care setting as a tool for optimizing antimicrobial use, termed “antimicrobial stewardship” (AMS). Stewardship has since be
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en applied in the context of governance of the health sector as a whole, taking responsibility for the health and well-being of the population and guiding health systems at the national and global level.
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Antibiotic Stewardship (AS) is a coordinated program that promotes the appropriate use of antimicrobials to improve patient outcomes, reduce microbial resistance, and decrease the spread of multi-drug resistant organisms. In clinical settings, stewardship activities focus on measuring and improving
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how antibiotics are prescribed by clinicians and used by patients. Improving antibiotic prescribing involves implementing effective strategies to modify prescribing practices to align them with evidence-based recommendations for diagnosis and management.
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La résistance aux antimicrobiens (ou RAM, cette abréviation étant est ici également employée en mode adjectif pour désigner les organismes « résistants aux antimicrobiens ») est une préoccupation majeure pour la santé publique mondiale et une question de sécurité san
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itaire des aliments. Lorsque des pathogènes deviennent résistants aux agents antimicrobiens, ils peuvent présenter un risque plus important pour la santé découlant d’un éventuel échec thérapeutique, de la diminution de choix thérapeutiques et de la probabilité accrue d’apparition et de gravité de la maladie. Les problèmes en rapport avec la RAM sont liés de façon inhérente à l’usage des antimicrobiens dans tous les types d’environnements, y compris les utilisations humaines et non humaines. L'utilisation d’agents antimicrobiens dans la production alimentaire animale et végétale représente un facteur de risque important pour la sélection et la transmission de micro-organismes résistants aux antimicrobiens (micro-organismes RAM) et de déterminants de la résistance aux antimicrobiens (déterminants de la RAM) des animaux et des plantes alimentaires à l’humain par sa consommation d’aliments.
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The purpose of this guidance is to assist WHO Member States, and other stakeholders, in the establishment and development of programmes of integrated surveillance of antimicrobial resistance in foodborne bacteria (i.e., bacteria commonly transmitted by food). In this guidance, “integrated surveill
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ance of antimicrobial resistance in foodborne bacteria” is defined as the collection, validation, analyses and reporting of relevant microbiological and epidemiological data on antimicrobial resistance in foodborne bacteria from humans, animals, and food, and on relevant antimicrobial use in humans and animals. Integrated surveillance of antimicrobial resistance in foodborne bacteria therefore includes data from relevant food chain sectors (animals, food and humans) and includes data on both antimicrobial resistance and antimicrobial use. Integrated surveillance of antimicrobial resistance for foodborne bacteria expands on traditional public health surveillance to include multiple elements of the food chain, and to include antimicrobial use data, to better understand the sources of infection and transmission routes.
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