998 resultados para Kaufmann, Bruno


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Pauline.--Murat.--Pascal Bruno.

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Sequel to Sylvie and Bruno.

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Inaugural dissertation at Münster (Ger.) university.

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Thesis (doctoral)--Friedrich-Alexanders-Universitat Erlangen.

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"The Noroff collection of manuscripts": p. [341]-369.

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von Karl Grün

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This works sheds light on the technical challenges regarding the use of extended techniques at the piece “Traçado Íntimo e Hesitante” by Bruno Angelo and the use of some of these techniques in the cello initiation. The main goal of the research is to provide cellists interested in the performance of the piece with ideas to surpass the technical difficulties as well as to introduce new ideas of using sound materials of contemporary music in the beginner cello teaching.

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Rezension von: Buholzer, Alois / Joller-Graf Klaus / Kummer Wyss, Annemarie / Zobrist, Bruno (Hrsg.): Kompetenzprofil zum Umgang mit heterogenen Lerngruppen, Wien, Zürich, Berlin, Münster: LIT Verlag 2012 (77 S.; ISBN 978-3-643-80084-8)

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Bone marrow is organized in specialized microenvironments known as 'marrow niches'. These are important for the maintenance of stem cells and their hematopoietic progenitors whose homeostasis also depends on other cell types present in the tissue. Extrinsic factors, such as infection and inflammatory states, may affect this system by causing cytokine dysregulation (imbalance in cytokine production) and changes in cell proliferation and self-renewal rates, and may also induce changes in the metabolism and cell cycle. Known to relate to chronic inflammation, obesity is responsible for systemic changes that are best studied in the cardiovascular system. Little is known regarding the changes in the hematopoietic system induced by the inflammatory state carried by obesity or the cell and molecular mechanisms involved. The understanding of the biological behavior of hematopoietic stem cells under obesity-induced chronic inflammation could help elucidate the pathophysiological mechanisms involved in other inflammatory processes, such as neoplastic diseases and bone marrow failure syndromes.

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Intermittent fasting (IF) is an often-used intervention to decrease body mass. In male Sprague-Dawley rats, 24 hour cycles of IF result in light caloric restriction, reduced body mass gain, and significant decreases in the efficiency of energy conversion. Here, we study the metabolic effects of IF in order to uncover mechanisms involved in this lower energy conversion efficiency. After 3 weeks, IF animals displayed overeating during fed periods and lower body mass, accompanied by alterations in energy-related tissue mass. The lower efficiency of energy use was not due to uncoupling of muscle mitochondria. Enhanced lipid oxidation was observed during fasting days, whereas fed days were accompanied by higher metabolic rates. Furthermore, an increased expression of orexigenic neurotransmitters AGRP and NPY in the hypothalamus of IF animals was found, even on feeding days, which could explain the overeating pattern. Together, these effects provide a mechanistic explanation for the lower efficiency of energy conversion observed. Overall, we find that IF promotes changes in hypothalamic function that explain differences in body mass and caloric intake.