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2
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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This survey is part of a series of eight country surveys conducted in the context of the People that Deliver Initiative (peoplethatdeliver.org). This global initiative, which brings together the world’s largest organizations, aims to improve health services performance through the professionalizat
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ion of logistics managers.
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Molecular methods for antimicrobial resistance (AMR)diagnostics to enhance the Global Antimicrobial Resistance Surveillance System
An essential participant in antimicrobial stewardship who has been unrecognized and underutilized is the“staff nurse.”Although the role of staff nurses has not formally been recognized in guidelines for implementing and operating antimicrobial stewardship programs (ASPs) or defined in the medica
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l literature, they have always performed numerous functions that are integral to successful antimicrobial stewardship. Nurses are antibiotic first responders, central communicators, coordinators of care, as well as 24-hour monitors of patient status, safety, and response to antibiotic therapy. An operational analysis of inpatient admissions evaluates these nursing stewardship activities and analyzes the potential benefits of nurses’formal education about, and inclusion into, ASPs.
Clinical Infectious Diseases - CID 2016:62 (1 January)•CLINICAL PRACTICE
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Internationally, there is a growing concern over antimicro-bial resistance (AMR) which is currently estimated to ac-count for more than 700,000 deaths per year worldwide. If no appropriate measures are taken to halt its pro-gress, AMR will cost approximately 10 million lives andabout US$100 trillion
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per year by 2050. In contrast tosome other health issues, AMR is a problem that con-cerns every country irrespective of its level of incomeand development as resistant pathogens do not respect borders.Despite the threat presented by AMR, the 2014 WorldHealth Organization (WHO) and the recent O’Neill re-port describe significant gaps in surveillance, standardmethodologies and data sharing. The 2014 WHOreport identified Africa and South East Asia as the regions without established AMR surveillance systems.
Tadesseet al. BMC Infectious Diseases (2017) 17:616 DOI 10.1186/s12879-017-2713-1
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The Government of India is embarking on a mammoth task to prevent COVID-19 spread among communities. The Rapid Evidence Synthesis team received a request to support the planning and development of resources for ensuring preparedness of FLHWs for COVID-19 . The rapid evidence synthesis was conducted
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in a period of three days.
The findings highlight what we can learn from recent pandemics such that we are prepared for potential scenarios and challenges due to COVID-19. Key issues which decision-makers need to consider, based on available evidence
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This document provides guidance on infection prevention and control (IPC) measures for people with suspected or confirmed coronavirus disease (COVID-19) who are experiencing mild symptoms that do not require hospitalisation, therefore self-isolating at home.
Guidelines on Clinical Management of COVID – 19
Government of India Ministry of Health & Family Welfare Directorate General of Health Services (EMR Division)
Government of India Ministry of Health & Family Welfare Directorate General of Health Services (EMR Division)
(2020)
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17th March 2020
Myanmar, as a country going through rapid socio-political transition and institutional development also suffers with a high burden of infectious disease. An ongoing challenge has been to effectively reach its 51 million population, most of whom battle tuberculosis, acute respiratory infections, diar
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rhoea and malaria including amongst under-five children.
Limited research data on the occurrence of resistant organisms in the nation have, makes it hard to estimate the exact antimicrobial resistance (AMR) scenario. Limited peer reviewed evidence indicates significant divergence from the average resistance trends in APAC region. Nevertheless, several key steps by Government of Myanmar have been instrumental in paving the way for the country to join other nations in the South East Asia Region to speed up its plan on addressing the AMR crisis. Combating antimicrobial resistance would, however, require highest political commitment, multi-sectoral coordination, sustained investment and technical assistance.
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This document is updated.
Please check the document:Priority medical devices list for the COVID-19 response and associated technical specifications
National Guideline for Health Care Provider On Infection Prevention and Control of COVID-19 pandemic in Healthcare Setting
Ministry of Health & Family Welfare of Bangladesh, Directorate General of Health Services
Ministry of Health & Family Welfare of Bangladesh, Directorate General of Health Services
(2020)
C2
Version: 2.0 Date: 19.3.2020
The following protocol has been designed to investigate the extent of infection, as determined by seropositivity in the general population, in any country in which COVID-19 virus infection has been reported. Each country may need to tailor some aspects of this protocol to align with public health, l
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aboratory and clinical systems, according to capacity, availability of resources and cultural appropriateness. However, using a standardized protocol such as this one below, epidemiological exposure data and biological samples can be systematically collected and shared rapidly in a format that can be easily aggregated, tabulated and analyzed across many different settings globally for timely estimates of COVID-19 virus infection severity and attack rates, as well as to inform public health responses and policy decisions. This is particularly important in the context of a novel respiratory pathogen, such as COVID-19 virus
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Supporting the continuity of health and nutrition services in the context of COVID-19 in refugee settings
recommended
The 2014–2015 Ebola outbreak was catastrophic in West Africa but the indirect impact of increasing the mortality rates of other conditions was also substantial. The increased number of deaths caused by malaria, HIV/AIDS, and tuberculosis attributable to health system failures exceeded deaths from
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Ebola.
With a relatively limited COVID-19 caseload, health systems may have the capacity to maintain routine service delivery in addition to managing COVID-19 cases. When caseloads are high, and/or health workers are directly affected, strategic adaptations are required to ensure that increasingly limited resources provide maximum benefit for the refugees and surrounding host population. The following are key considerations for UNHCR operations on prioritized health care services in the event of a COVID-19 outbreak. These are based on WHO Guidance for Maintaining Essential Health Services and UNHCR guidance for operations and where relevant operation or site level outbreak preparedness and response plans.
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The speed of developing diagnostics for SARS-CoV-2, the causative agent of coronavirus disease 2019 (COVID-19), has been quite remarkable. Diagnostics have focused on nucleic acid amplification testing (NAAT) to identify infected individuals in acute-phase disease for timely implementation of mitiga
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tion strategies and case management. More and more immunodiagnostics, mostly rapid diagnostic tests, are being made available as an alternative to NAATs. This type of test can be used out-of-laboratory conditions at large scale.
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In December 2019 a novel coronavirus (2019-nCoV) was identified as the causative agent of a severe acute respiratory illness among people exposed in a seafood market in Wuhan, China; • Human-to-human transmission has been documented, including in healthcare workers, and aerosol-generating procedur
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es (AGP)† may play a role in the spread of the disease; • There are uncertainties in the natural history of the 2019-nCoV, including source(s), transmissibility mechanisms, viral shedding, and persistence of the virus in the environment and on fomites; • As of 6 February 2020, the following precautions are recommended for the care of patients with suspected or confirmed cases of 2019-nCoV: o For any suspected or confirmed cases of 2019-nCoV: standard + contact + droplet precautions o For any suspected or confirmed cases of 2019-nCoV and AGP: standard + contact + airborne precautions • The use of personal protective equipment (PPE) by healthcare workers requires an evaluation of the risk related to healthcare-related activities;
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High levels of storage iron may increase malaria susceptibility. This risk has not been investigated in semi-immune adolescents. We investigated whether baseline iron status of nonpregnant adolescent girls living in a high malaria transmission area in Burkina Faso affected malaria risk during the fo
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llowing rainy season. For this prospective study, we analysed data from an interim safety survey, conducted six months into a randomised iron supplementation trial. We used logistic regression to model the risk of P. falciparum infection prevalence by microscopy, the pre-specified interim safety outcome, in relation to iron status, nutritional indicators and menarche assessed at recruitment.
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A total of 18 laboratories from 13 countries participated in the four rounds of EQA: 10 laboratories from eight African endemic countries, four of which participated in all four rounds and three in three rounds. The overall results showed that the median performance of these laboratories improved ov
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er the four rounds. However, the proportion of laboratories reporting false–positive cases remains high and indicates a problem of specificity probably due to contamination. The proportion of laboratories reporting both false–positive and false–negative results raises the issue of the quality of the data reported by WHO in Africa as well as the results of the studies carried out in these different laboratories in various countries.
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