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  • Bousquet, J, et al. (författare)
  • CHRODIS criteria applied to the MASK (MACVIA-ARIA Sentinel NetworK) Good Practice in allergic rhinitis : A SUNFRAIL report
  • 2017
  • Ingår i: Clinical and Translational Allergy. - : Wiley. - 2045-7022. ; 7:1
  • Forskningsöversikt (refereegranskat)abstract
    • A Good Practice is a practice that works well, produces good results, and is recommended as a model. MACVIA-ARIA Sentinel Network (MASK), the new Allergic Rhinitis and its Impact on Asthma (ARIA) initiative, is an example of a Good Practice focusing on the implementation of multi-sectoral care pathways using emerging technologies with real life data in rhinitis and asthma multi-morbidity. The European Union Joint Action on Chronic Diseases and Promoting Healthy Ageing across the Life Cycle (JA-CHRODIS) has developed a checklist of 28 items for the evaluation of Good Practices. SUNFRAIL (Reference Sites Network for Prevention and Care of Frailty and Chronic Conditions in community dwelling persons of EU Countries), a European Union project, assessed whether MASK is in line with the 28 items of JA-CHRODIS. A short summary was proposed for each item and 18 experts, all members of ARIA and SUNFRAIL from 12 countries, assessed the 28 items using a Survey Monkey-based questionnaire. A visual analogue scale (VAS) from 0 (strongly disagree) to 100 (strongly agree) was used. Agreement equal or over 75% was observed for 14 items (50%). MASK is following the JA-CHRODIS recommendations for the evaluation of Good Practices.
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3.
  • Roller-Wirnsberger, R, et al. (författare)
  • Massive open online courses (MOOCs) for long-distance education in geriatric medicine across Europe : A pilot project launched by the consortium of the project "Screening for Chronic Kidney Disease among Older People": SCOPE project
  • 2019
  • Ingår i: European geriatric medicine. - : Springer Science and Business Media LLC. - 1878-7649 .- 1878-7657. ; 10:6, s. 989-994
  • Tidskriftsartikel (refereegranskat)abstract
    • PurposeTo cover the increasing need for professional knowledge, skills and competences in the care of older people, new learning techniques have been developed. Using the Internet to provide educational material has come into focus of many academic institutions as the learning content can easily be transferred to a larger audience. Since the first launch of a “massive open online course” (MOOC) in 2008, this educational format has raised increasing interest among education experts. The current publication provides insight into the new format of MOOCs in general and specifically describes a MOOC developed by a Pan-European Consortium “Screening for Chronic Kidney Disease (CKD) among Older People across Europe” (SCOPE), a project funded by the European Commission under the umbrella of the Horizon 2020 program.MethodsTechnical background, learning theories and content of the MOOC of the SCOPE project are presented in this overview.ResultsThe MOOC of the SCOPE project is provided on the MOOC ICT platform iMoox. The courses are built up of video clips, textual descriptions, graphics, animations and audio designed with a clear structure and learning goals. The concise video clips with a maximum length of 15–20 min are equipped with additional learning material such as documents, links and asynchronous communication opportunities.ConclusionMOOCs are recognized as a contemporary approach to transfer required knowledge and skills not only in general but also in geriatric medicine, as the health and social care environment is ever-changing and becoming more complex.
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4.
  • Wilson, Rachel M., et al. (författare)
  • Hydrogenation of organic matter as a terminal electron sink sustains high CO2 : CH4 production ratios during anaerobic decomposition
  • 2017
  • Ingår i: Organic Geochemistry. - : Elsevier BV. - 0146-6380 .- 1873-5290. ; 112, s. 22-32
  • Tidskriftsartikel (refereegranskat)abstract
    • Once inorganic electron acceptors are depleted, organic matter in anoxic environments decomposes by hydrolysis, fermentation, and methanogenesis, requiring syntrophic interactions between microorganisms to achieve energetic favorability. In this classic anaerobic food chain, methanogenesis represents the terminal electron accepting (TEA) process, ultimately producing equimolar CO2 and CH4 for each molecule of organic matter degraded. However, CO2:CH4 production in Sphagnum-derived, mineral-poor, cellulosic peat often substantially exceeds this 1:1 ratio, even in the absence of measureable inorganic TEAs. Since the oxidation state of C in both cellulose-derived organic matter and acetate is 0, and CO2 has an oxidation state of +4, if CH4 (oxidation state -4) is not produced in equal ratio, then some other compound(s) must balance CO2 production by receiving 4 electrons. Here we present evidence for ubiquitous hydrogenation of diverse unsaturated compounds that appear to serve as organic TEAs in peat, thereby providing the necessary electron balance to sustain CO2:CH4 > 1. While organic electron acceptors have previously been proposed to drive microbial respiration of organic matter through the reversible reduction of quinone moieties, the hydrogenation mechanism that we propose, by contrast, reduces CAC double bonds in organic matter thereby serving as (1) a terminal electron sink, (2) a mechanism for degrading complex unsaturated organic molecules, (3) a potential mechanism to regenerate electron-accepting quinones, and, in some cases, (4) a means to alleviate the toxicity of unsaturated aromatic acids. This mechanism for CO2 generation without concomitant CH4 production has the potential to regulate the global warming potential of peatlands by elevating CO2:CH4 production ratios.
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