3 resultados para Precision and recall

em Dalarna University College Electronic Archive


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Bakgrund: Diabetes typ 2 är en endokrin sjukdom och är en av de största folksjukdomarna i världen. Förhöjda blodsockervärden gör att både små och stora blodkärl tar skada och detta leder till olika komplikationer såsom hjärtinfarkt, stroke och njurskador. Med hjälp av viktnedgång, kostreglering, regelbundet fysisk aktivitet och övervakning av blodglukosnivåerna kan risken för komplikationer förebyggas. Genom att förebygga komplikationer kan livskvaliteten främja patientens dagliga liv. En del av diabetesvården består av egenvårdsprogram där patienten får stöd och rådgivning att hantera sin diabetes. Syfte: Denna litteraturstudie syftar till att studera vilka faktorer i egenvårdsprogram som främjar livskvaliteten hos patienter med diabetes typ 2. Metod: Litteraturstudie, artiklarna söktes i databaserna CINAHL, PubMed och Web of Science. 14 kvantitativa artiklar inkluderades. Resultat: Resultatet visade att information, individuell målsättning och uppföljning var viktiga faktorer i egenvårdsprogrammen för att främja livskvaliteten hos patienter med diabetes typ 2. Slutsats: Att leva med diabetes typ 2 kräver noggrannhet och planering i det dagliga livet. Egenvårdsprogram kan minska risken för komplikationer där följsamhet till egenvården främjas och livskvaliteten gynnas.

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Energy auditing can be an important contribution for identification and assessment of energy conservation measures (ECMs) in buildings. Numerous tools and software have been developed, with varying degree of precision and complexity and different areas of use.   This paper evaluates PHPP as a versatile, easy-to-use energy auditing tool and gives examples of how it has been compared to a dynamic simulation tool, within the EU-project iNSPiRe. PHPP is a monthly balance energy calculation tool based on EN13790. It is intended for assisting the design of Passive Houses and energy renovation projects and as guidance in the choice of appropriate ECMs.   PHPP was compared against the transient simulation software TRNSYS for a single family house and a multi-family house. It should be mentioned that dynamic building simulations might strongly depend on the model assumptions and simplifications compared to reality, such as ideal heating or real heat emission system. Setting common boundary conditions for both PHPP and TRNSYS, the ideal heating and cooling loads and demands were compared on monthly and annual basis for seven European locations and buildings with different floor area, S/V ratio, U-values and glazed area of the external walls.   The results show that PHPP can be used to assess the heating demand of single-zone buildings and the reduction of heating demand with ECMs with good precision. The estimation of cooling demand is also acceptable if an appropriate shading factor is applied in PHPP. In general, PHPP intentionally overestimates heating and cooling loads, to be on the safe side for system sizing. Overall, the agreement with TRNSYS is better in cases with higher quality of the envelope as in cold climates and for good energy standards. As an energy auditing tool intended for pre-design it is a good, versatile and easy-to-use alternative to more complex simulation tools.

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Speech perception runs smoothly and automatically when there is silence in the background, but when the speech signal is degraded by background noise or by reverberation, effortful cognitive processing is needed to compensate for the signal distortion. Previous research has typically investigated the effects of signal-to-noise ratio (SNR) and reverberation time in isolation, whilst few have looked at their interaction. In this study, we probed how reverberation time and SNR influence recall of words presented in participants' first- (L1) and second-language (L2). A total of 72 children (10 years old) participated in this study. The to-be-recalled wordlists were played back with two different reverberation times (0.3 and 1.2 s) crossed with two different SNRs (+3 dBA and +12 dBA). Children recalled fewer words when the spoken words were presented in L2 in comparison with recall of spoken words presented in L1. Words that were presented with a high SNR (+12 dBA) improved recall compared to a low SNR (+3 dBA). Reverberation time interacted with SNR to the effect that at +12 dB the shorter reverberation time improved recall, but at +3 dB it impaired recall. The effects of the physical sound variables (SNR and reverberation time) did not interact with language. © 2016 Hurtig, Keus van de Poll, Pekkola, Hygge, Ljung and Sörqvist.