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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
...
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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A Guide to the Application of the WHO Multimodal Hand HygieneImprovement Strategy and the “My Five Moments for Hand Hygiene”Αpproach
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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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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Handbook of COVID-19 Prevention and Treatment
recommended
Handbook of COVID-19 Prevention and Treatment, expecting to share their invaluable practical advice and references with medical staff around the world. This handbook compared and analyzed the experience of other experts in China, and provides good reference to key departments such as hospital infect
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ion management, nursing, and outpatient clinics. This handbook provides comprehensive guidelines and best practices by China's top experts for coping with COVID-19.
This handbook, provided by the First Affiliated Hospital of Zhejiang University, describes how organizations can minimize the cost while maximizing the effect of measures to manage and control the coronavirus outbreak. The handbook also discusses why hospitals and other healthcare institutions should have command centers when encountering a large-scale emergency in the context of COVID-19. This handbook also includes the following:
- Technical strategies for addressing issues during emergencies.
- Treatment methods to treat the critically ill.
- Efficient clinical decision-making support.
- Best practices for key departments like inflection management and outpatient clinics.
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Antimicrobial resistance (AMR) is a serious public health concern with economic, social and political implications that are global in scope, and cross all environmental and ethnic boundaries. As a global threat, AMR risks the achievements of modern medicine, and has the po
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tential to impact overall global development. It is important, therefore, to elevate AMR beyond health as part of a larger development agenda in the context of the Sustainable Development Goals (SDGs). This report provides in-depth technical discussions in areas that have direct implications to the containment of AMR as a development agenda. The report is organized in five chapters which served as the technical background documents for the Biregional Technical Consultation on AMR in Asia, 14-15 April 2016. More information from the meeting is available in the WHO Meeting Report: Biregional Technical Consultation on Antimicrobial Resistance in Asia. The meeting was the first time senior officials from the Ministry of Health and Ministry of Agriculture across Asia came together to tackle AMR
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This paper was developed to support AMR coordination committees and others tasked with addressing AMR at country level to do just that. Drawing on the published literature and the operational experience and expertise of different LMICs, the paper points to six key strategies for success and offers a
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series of practical tips and suggestions on how to implement each one.
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The global emergence of antimicrobial resistance (AMR) is posing a threat to human health. Putting resources into the containment of AMR – including surveillance – is one of the highest-yield investments a country can make to mitigate its impact. In 2015, WHO launched the Global Antimicrobial Re
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sistance Surveillance System (GLASS), the first global collaborative effort to foster AMR surveillance in bacteria causing acute infections. As of December 2018, 71 countries are enrolled in GLASS. The aim of this report is to document participation efforts and outcomes across these countries, and highlight differences and constraints identified to date. This report follows on from the first GLASS Report – Early implementation 2016-17, published in January 2018, and drawing on data from GLASS first data call in 2017.
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Following the high-level meeting of the UN General Assembly on antimicrobial resistance held in September 2016 which called for national, regional and international political commitment to address the issue, member countries agreed on the importance of moving forward to develop national action plans
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by May 2017.
Iraq; represented by the Ministry of Health (MOH) and Ministry of Agriculture (MOA); responded by developing a comprehensive plan to control AMR by analysing the current situation of health, veterinary and environment and determining the strategic priorities for Iraq, which are in accordance with the WHO Global Action Plan objectives
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The objectives of NAP are aligned with the global action plan based on national needs and priorities. The emphasis is on One Health approach with all sectors especially human health, animal health and environment contributing towards minimizing the emergence and impact of AMR in Jordan.
ຢາຕ້ານເຊື້ອຈຸລະຊີບ (Antimicrobial medicines) ມີຄວາມສໍາຄັນຫຼາຍຕໍ່ວຽກງານການແພດ, ສາທາລະນະສຸກ, ສຸຂະພາບສັດ ແລະ ການຜະລິດອາຫານ. ເນ
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່ອງຈາກວ່າ ຢາດັ່ງກ່າວນີ້ ແມ່ນໃຊ້ເພື່ອປ້ອງກັນ ແລະ ປິ່ນປົວພະຍາດຊືມເຊື້ອ ທີ່ມີ ຈໍາພວກເຊື້ອຈຸລິນຊີ (Bacteria) ເປັນຫນື່ງໃນສາເຫດທີ່ເຮັດໃຫ້ຄົນ ແລະ ສັດເສຍຊີວິດ ໃຫ້ຫຼຸດລົງໄດ້ ແລະ ມີບົດບາດຫຼາຍໃນວົງ ການແພດແຜນປະຈຸບັນ ເປັນຕົ້ນແມ່ນ ການຜ່າຕັດ ຊຶ່ງມີຄວາມສ່ຽງຕໍ່ການຕິດເຊື້ອໄດ້ງ່າຍຈຶ່ງຈໍາເປັນຕ້ອງໄດ້ເພິ່ງພາຢາຕ້ານເຊື້ອຈຸລະ ຊີບ ທີ່ມີປະສິດທິພາບເພື່ອປ້ອງກັນ ແລະ ປິ່ນປົວການຕິດເຊື້ອທີ່ອາດເກີດຂຶ້ນ. ນອກຈາກນີ້ແລ້ວ ມັນຍັງມີຄວາມຈໍາເປັນສໍາລັບ ປ້ອງກັນ ແລະ ປິ່ນປົວ ໃນວຽກງານສັດຕະວະແພດ ແລະ ການກະສິກໍາ ເປັນຕົ້ນ: ການລ້ຽງສັດ, ການປະມົງ, ການປູກຝັງ ແລະ ມີຄວາມສໍາຄັນຕໍ່ ສຸຂະພາບສັດ ພືດ ຕ່ອງໂສ້ການຜະລິດອາຫານ ແລະ ເສດຖະກິດຂອງຊາດອີກດ້ວຍ.
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Using the WHO model list of essential medicines to update a national essential medicines list
Since 1977, WHO has been working with countries to design the package of essential medicines as an integral component of treatment within the continuum of care, developing and disseminating the Model List
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of Essential Medicines (Model List). WHO is committed to supporting Member States in sharing best practices in selecting
essential medicines, and in developing processes for the selection of medicines for national essential medicines lists (national EMLs, or NEMLs) consistent with the evidence-based methods used for updating the WHO Model List.
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Antimicrobials have been a critical public health tool since the discovery of penicillin in 1928, saving the lives of millions of people around the world. Today, however, the emergence of drug resistance is reversing the miracles of the past eighty years, with drug choices for the treatment of many
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infections becoming increasingly limited, expensive, and, in some cases, non-existent.
Conscious of the public health threats of AMR to both humans, animals and the environment, the ministries of health and sanitation, agriculture forestry and food security and the environmental protection agency put together a national multi-sectoral coordinating group tasked with the responsibility of establishing mechanisms to integrate all initiatives into a single concerted action and development of the national AMR strategic plan (2018-2022). The National Strategic Plan on Antimicrobial Resistance is the first approach which addresses AMR specifically.
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Infection Prevention and Control Programmes
January 2020
COVID -19 Outbreak Guidelines for Setting up Isolation Facility/Ward
Ministry of Health & Family Welfare Government of India; National Centre for Disease Control
Ministry of Health & Family Welfare Government of India; National Centre for Disease Control
(2020)
C2
Accessed: 16.04.2020
Massoda Tonye et al. Malar J (2018) 17:156
https://doi.org/10.1186/s12936-018-2284-7
Background: In 2011, the demographic and health survey (DHS) in Cameroon was combined with the multiple indicator
cluster survey. Malaria parasitological data were collected, but the survey period did not overl
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ap with the high
malaria transmission season. A malaria indicator survey (MIS) was also conducted during the same year, within the
malaria peak transmission season. This study compares estimates of the geographical distribution of malaria parasite
risk and of the effects of interventions obtained from the DHS and MIS survey data.
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COVID Reference 2021.6 EN
recommended
6th edition 13 January 2021 CR 2021.6.10, uploaded on 27 May 2021
Find eight editions: Deutsch | English | Español | Français | Italiano | Português | Tiếng Việt | Türkçe
https://covidreference.com/download