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Accessed Febr. 6, 2020
A role for nuclear techniques
Antimicrobials play a critical role in the treatment of human and animal (aquatic and terrestrial) diseases, which has led to their widespread application and use. Antimicrobial resistance (AMR) is the ability of microorganisms to stop an antibiotic, such as an antimic
...
robial, antiviral or antimalarial, from working against them. Globally, about 700 000 deaths per year arise from resistant infections as a result of the fact that antimicrobial drugs have become less effective at killing resistant pathogens. Antimicrobial chemicals that are present in environmental compartments can trigger the development of AMR. These chemicals can also cause antibiotic-resistant bacteria (ARB) to further spread antibiotic resistance genes (ARG) because they may have an evolutionary advantage over non-resistant bacteria.
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In aquaculture, antibiotics have been used mainly for therapeutic purposes and as prophylactic agents. The contribution to antimicrobial resistance of antibiotics used in aquaculture is reviewed here, using a risk analysis framework. Some recommendations on responsible conduct in this context are pr
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oposed, aimed at diminishing the threat of build up of antimicrobial resistance.
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The toolkit presents step-by-step guidance that district health teams (DHTs), district leaders, MOH/UNEPI, immunisation partners, and civil society organisations (CSOs) can use to engage NHS and maximise the benefits of their participation in strengthening RI through activities such as community dia
...
logue meetings. Tables and annexes outline this process
more
Antimicrobial resistance (AMR) is a threat to human and animal health and refers to the ability of microorganisms to defy the medicines prescribed. For instance when antibiotics are used improperly, such as an incorrect dose, insufficient duration or wrong frequency, resistance is heightened. The mi
...
suse of antimicrobials affects their efficacy, and increasingly more infections and diseases become untreatable. Many gains made in modern medicine throughout the 20th century will be lost, making AMR a global public and animal health issue that requires concerted action. AMR and the use of antimicrobials (AMU) affect food safety and security, people’s livelihoods, as well as economic and agricultural development.
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In this paper we aim to provide information on the importance of efficiency measurement of health care facilities in developing countries. We state that efficiency measurement can be a substantial contribution to saving lives. Therefore we analyse the performance of health centres in rural Burkina F
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aso making use of data which were taken from a comprehensive long-term cost information system. In the subsequent parts of this article, the study site is described and the DEA method outlined. The ensuing analysis of the data is carried out in two stages. Firstly, quantitative aspects concerning relative efficiency are presented. Secondly, the measures of performance are explained. The implications of the results are then discussed.
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To understand the national situation, Ethiopia did a situation assessment, launched its first strategy in 2011, and took action to contain AMR, as detailed in the blue boxes found throughout this strategy. This updated version of the strategy was in response to the revised health and medicines polic
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ies, health sector transformation plan, and the resolutions of the 68th World Health Assembly
of May 2015 and so that Ethiopia’s efforts could be coordinated with global initiatives in the prevention and containment of AMR.
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The Global Fund is a worldwide partnership to defeat AIDS, tuberculosis (TB) and malaria and ensure a healthier, safer and more equitable future for all. We raise and invest up to US$5 billion a year to fight deadly infectious diseases, challenge the injustice that fuels them, and strengthen health
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and community systems in more than 100 of the hardest hit countries.
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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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Health care-associated infection (HCAI) places a serious disease burden and has a significant economic impact on patients and health-care systems throughout the world. Yet good hand hygiene, the simple task of cleaning hands at the right times and in the right way, can save lives. World Health O
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rganization (WHO) has developed evidence-based WHO Guidelines on Hand Hygiene in Health Care to support health-care facilities to improve hand hygiene and thus reduce HCAI.
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18 March 2020
WHO and public health authorities around the world are acting to contain the COVID-19 outbreak. However, this time of crisis is generating stress throughout the population. The considerations presented in this document have been developed by the WHO Department of Mental Health and S
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ubstance Use as a series of messages that can be used in communications to support mental and psychosocial well-being in different target groups during the outbreak.
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Interim Version 24, February 2020
This checklist has been prepared with the aim of supporting hospital managers and emergency planners in achieving the above by defining and initiating actions needed to ensure a rapid response to the COVID-19 outbreak. The checklist is structured on eleven key co
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mponents; under each component, there is a list of questions regarding the status of implementation of the recommended action specific to that component. Hospitals at risk of increased health service demand should be prepared to initiate the implementation of each action promptly. The section on “Recommended reading” lists selected tools, guidelines and strategies relevant to each component, as well as other supporting documentation.
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A Step-by-Step, Research-Informed and Faith-Based Planning Manual
In Kenya, the bacterial infections that contribute most to human disease are often those in which re-‐sistance is most evident. Examples are multidrug-‐resistant enteric bacterial pathogens such as typhoid,
...
diarrhoeagenic Escherichia coli and invasive non-‐typhi salmonella, penicillin-‐resistant Streptococcus pneu-‐moniae, vancomycin-‐resistant enterococci, methicillin-‐resistant Staphylococcus aureus and multidrug-‐re-‐sistant Mycobacterium tuberculosis. Resistance to medicines commonly used to treat malaria is of particu-‐lar concern, as is the emerging resistance to anti-‐HIV drugs. Often, more expensive medicines are required to treat these infections, and this becomes a major challenge in resource-‐poor settings.
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The article "Time to Align: Development Cooperation for the Prevention and Control of Non-Communicable Diseases" argues for greater international cooperation and investment in addressing non-communicable diseases (NCDs), especially in low- and middle-income countries. Traditionally, global health fu
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nding has focused on infectious diseases, but the growing burden of NCDs—such as cardiovascular diseases, cancer, and diabetes—necessitates new approaches to development assistance.
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Care for persons with noncommunicable diseases (NCDs), such as cardiovascular disease, diabetes, cancer, and chronic obstructive pulmonary disease, is a major health priority for most countries worldwide, particularly for low-middle income countries where the problem seems to be worsening. Globally,
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research demonstrates that the vast majority of people with NCDs receive suboptimal care. Many people living with chronic conditions remain undiagnosed and unaware of their condition, while many others remain untreated or with inadequate control. Meanwhile the premature mortality caused by NCDs remains high in many countries. In response to the global epidemic of NCDs, the World Health Organization (WHO) launched the Global Strategy for the Prevention and Control of Noncommunicable Diseases in 2012, which establishes 9 voluntary global targets and indicators to be considered by Member States when formu- lating national plans to combat NCDs.
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