88 resultados para Bergman, Solveig


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Soitinnus: lauluääni, piano.

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Soitinnus: lauluääni, piano.

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Nästan dagligen tar vi del av olika typer av medierade våldshandlingar och bl.a. sådana som benämns attentat av självmordsbombare. De våldshandlingarna får även religiösa och etniska förtecken. Men vad är det som sker inom människan när hon tar del av det medierade våldet och framförallt sådant våld som är definierat som terrorism? Med grund i människors egna upplevelser, känslor och tankar lyfter den här studien av filmreception fram komplexiteten i människors tolkning av en självbombare. Filmen i fråga är Möte med ondskan av Johan Lindfors Bergman och Reza Parza. Studien baserar sig på en undersökning av vad flera olika personer i åtta olika grupper har uppfattat och upplevt filmen. De personer som har deltagit i studien har skrivit om filmen utifrån frågorna: Vad såg du? Hur uppfattade du filmen? Vad kände du när du såg filmen? Med utgångspunkt i hermeneutisk metod och symbolteori lyfts stereotypiers roll i receptionen fram. För att ytterligare belysa djupare skikt av receptionen stöder sig studien även på rollteori som kombineras med den analytiska psykologin. Här stiger arketypernas roll fram på den inre scenen. Den analytiska psykologin har följaktligen på ett väsentligt sätt bidragit till en djupare förståelse av vad som sker inom människan i en situation där våld på ett eller annat sätt presenteras för henne.

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Soitinnus: klarinetti, piano.

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Soitinnus: huilu, orkesteri.

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Soitinnus: orkesteri.

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Bound with: Undersökning, om Nyland och Tavastehus län ... Andra delen / Samuel Gabriel Mellenius, and Undersökning, om Nyland och Tavastehus län ... Tredje delen / Carl Bergman. [Åbo] : tryckt i Frenckellska boktryckeriet, 1789.

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Soitinnus: cembalo.

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Soitinnus: orkesteri.

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Personalized nanomedicine has been shown to provide advantages over traditional clinical imaging, diagnosis, and conventional medical treatment. Using nanoparticles can enhance and clarify the clinical targeting and imaging, and lead them exactly to the place in the body that is the goal of treatment. At the same time, one can reduce the side effects that usually occur in the parts of the body that are not targets for treatment. Nanoparticles are of a size that can penetrate into cells. Their surface functionalization offers a way to increase their sensitivity when detecting target molecules. In addition, it increases the potential for flexibility in particle design, their therapeutic function, and variation possibilities in diagnostics. Mesoporous nanoparticles of amorphous silica have attractive physical and chemical characteristics such as particle morphology, controllable pore size, and high surface area and pore volume. Additionally, the surface functionalization of silica nanoparticles is relatively straightforward, which enables optimization of the interaction between the particles and the biological system. The main goal of this study was to prepare traceable and targetable silica nanoparticles for medical applications with a special focus on particle dispersion stability, biocompatibility, and targeting capabilities. Nanoparticle properties are highly particle-size dependent and a good dispersion stability is a prerequisite for active therapeutic and diagnostic agents. In the study it was shown that traceable streptavidin-conjugated silica nanoparticles which exhibit a good dispersibility could be obtained by the suitable choice of a proper surface functionalization route. Theranostic nanoparticles should exhibit sufficient hydrolytic stability to effectively carry the medicine to the target cells after which they should disintegrate and dissolve. Furthermore, the surface groups should stay at the particle surface until the particle has been internalized by the cell in order to optimize cell specificity. Model particles with fluorescently-labeled regions were tested in vitro using light microscopy and image processing technology, which allowed a detailed study of the disintegration and dissolution process. The study showed that nanoparticles degrade more slowly outside, as compared to inside the cell. The main advantage of theranostic agents is their successful targeting in vitro and in vivo. Non-porous nanoparticles using monoclonal antibodies as guiding ligands were tested in vitro in order to follow their targeting ability and internalization. In addition to the targeting that was found successful, a specific internalization route for the particles could be detected. In the last part of the study, the objective was to clarify the feasibility of traceable mesoporous silica nanoparticles, loaded with a hydrophobic cancer drug, being applied for targeted drug delivery in vitro and in vivo. Particles were provided with a small molecular targeting ligand. In the study a significantly higher therapeutic effect could be achieved with nanoparticles compared to free drug. The nanoparticles were biocompatible and stayed in the tumor for a longer time than a free medicine did, before being eliminated by renal excretion. Overall, the results showed that mesoporous silica nanoparticles are biocompatible, biodegradable drug carriers and that cell specificity can be achieved both in vitro and in vivo.

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Nimiösivulla myös: med wederbörandes tilstånd under oeconomie professorens ... Pehr Kalms inseende, för lager-kranzen utgifwen och til allmän granskning öfwerlämnad i Åbo Academiens öfra läro-sal för middagen den 4. augusti 1760.