Accountability for the global health sector strategies, 2016–2021
WHO/CDS/HIV/19.7
UNAIDS | 2016–2021 Strategy
Accessed: 20.11.2019
Washington, D.C., USA, 23-27 September 2018
Provisional Agenda Item 4.6
CD56/10, Rev. 1 31 August 2018
Original: Spanish
Downloaded from https://aidsinfo.nih.gov/guidelines on 11/27/2019
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The classification of digital health interventions (DHIs) categorizes the different ways in which digital and mobile technologies are being used to support health system needs. Historically, the diverse communities working in digital health—including government stakeholders, technologists, clinic...ians, implementers, network operators, researchers, donors— have lacked a mutually understandable language with which to assess and articulate functionality. A shared and standardized vocabulary was recognized as necessary to identify gaps and duplication, evaluate effectiveness, and facilitate alignment across different digital health implementations. Targeted primarily at public health audiences, this Classification framework aims to promote an accessible and bridging language for health program planners to articulate functionalities of digital health implementations.
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Rutstein SE et al. Journal of the International AIDS Society 2017, 20:21579 http://www.jiasociety.org/index.php/jias/article/view/21579 | http://dx.doi.org/10.7448/IAS.20.1.21579
Review Article
Granich et al. Int J Virol AIDS 2018, 5:043 DOI: 10.23937/2469-567X/1510043 Volume 5 | Issue 1
The GAP articulates five objectives for tackling AMR, and sets out the tasks required to achieve them, highlighting
roles and responsibilities for country governments, the One Health Tripartite organizations (FAO, OIE and WHO) and other national and international partners. To ensure that all stakeh...olders assume their roles and responsibilities, and to assess whether they are collectively effecting the necessary change in AMR, the implementation of the GAP needs to be routinely monitored and evaluated. To that end, the Tripartite organizations co-developed a monitoring and evaluation (M&E) framework for the GAP, as outlined in this document
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This short paper aims to identify key evidence gaps in our knowledge of livestock- and fisheries-linked antimicrobial resistance in the developing world, and to document on-going or planned research initiatives on this topic by key stakeholders.
The antimicrobial resistant (AMR) infections in anima...ls that are of most potential risk to human health are likely to be zoonotic pathogens transmitted through food, especially Salmonella and Campylobacter. In addition, livestock associated methicillin resistant Staphylococcus aureus (LA MRSA) and extended spectrum beta lactamase E. coli (ESBL E. coli) are emerging problems throughout the world.
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Developed by the HHS Panel on Treatment of Pregnant Women with HIV Infection and Prevention of Perinatal Transmission—
A Working Group of the Office of AIDS Research Advisory Council (OARAC)
Accessed: 12.02.2020
30th World AIDS Day Report
STAR Initiative, Unitaid and World Health Organization December 2018
Antimicrobials are precious agents for combating infectious diseases and had saved millions of lives throughout the world. However, the current trend of increasing antimicrobial resistance (AMR) has become a global health problem with increased morbidity and mortality in infectious diseases. Sri La...nka is not an exemption and face many health related issues with multidrug resistant (MDR) organisms. Currently there is a global effort in combating antimicrobial resistance. WHO extends its fullest support and plays a major role in motivating the countries to combat antimicrobial resistance with national action plans in place. Sri Lanka has initiated combating AMR with multisectoral collaboration, under one health concept. The development of the National Strategic Plan (NSP) 2017-2022 provides the roadmap to combat AMR.
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Infectious diseases are constantly in transition. New diseases develop, known dis-eases become widespread or reemerge, and occasionally a disease is eradicated.Infectious diseases such as HIV, tuberculosis, and cholera are significant causes ofillness and death in many parts of the world. Health car...e personnel are on thefront lines, helping to protect their clients from infectious diseases and treatingthem when infections occur. During the course of their work, health care person-nel perform clinical procedures or other activities that can expose both them andtheir clients to potentially infectious microorganisms. Many of their clients aresick and thus may be more susceptible to infections or may have infections thatcan be transmitted to others. Fortunately, all staff working at health care facilities can perform simple proce-dures to minimize risk—to themselves and clients—and reduce the spread ofinfections. These practices can be integrated at minimal cost into the routineworkday at clinics and hospitals around the world. This reference booklet isspecifically designed for use at all levels of the health care system, from thelargest hospitals to the smallest dispensaries or health posts, in settings whereresources are scarce. This booklet, which was first published in 1999, has now been updated. Whilemost practices remain the same, there have been a few important changes—forexample, in recommendations related to hand hygiene and standard precautions.Nonetheless, this booklet continues to present practical recommendations forsimple and relatively low-cost procedures that can be implemented anywhere,with basic supplies and little to no high-technology equipment.
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In 1998 the Swedish Veterinary Association decided to adopt a general policy for the use of antibiotics in animals. Since then specifi c policies for the use of antibiotics in dogs and cats have been adopted and in 2011 Guidelines for the use of Antibiotics in Production animals – Cattle and Pigs,... were accepted. By decision of the board of the Swedish Veterinary Society (SVS) these guidelines have been updated. Th e over-arching goal of SVS is to achieve a low and controlled use of antibiotics in Swedish animal production so that the fi rst-hand choices of treatment remain effi cient and that the spread of antimicrobial resistance – among animals and herds as well as in the food chain – is kept at a minimum. Keeping antimicrobial resistance in animals low is important also for human health, since we are all part of the same ecosystem. Th e authors of these guidelines hope that they may be useful for veteri-narians in clinical practice when deciding on treatments for common diseases and ailments caused by bacteria. Sometimes the decision may even be to refrain from use of antibiotics and chose other ways of improving herd health.
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The Ghanaian Cabinet approved the antimicrobial resistance (AMR)Policy and Implementation plan(hereafter referred to as the national action plan or NAP)in December 2017, whilst the country case study was in progress. This has set in motion the implementation phase for Ghana, which is a long awaited... event since the drafting of the Policy started in 2011. This case study, whilst limited in its ability to interact with all stakeholders, has identified entrypoints within the operational divisions of Ghana Health Services,as potential areas where the AMR policy platform may seek to embed AMR activities. Much work has already been done within Ghana to identify the key entrypoints within the various ministries and government agencieswhere AMR can be incorporated. These stakeholders already form part of the AMR Policy Platform which is the governance structure for AMR and have been participating actively in the development of the AMR Policy and NAP activities formulation.
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