Auswahl der wissenschaftlichen Literatur zum Thema „Århus (Denmark)“

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Zeitschriftenartikel zum Thema "Århus (Denmark)"

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Walheim, Gert. „Proceedings of the Scandinavian Foot Society: Århus, Denmark, June 8, 1988“. Acta Orthopaedica Scandinavica 59, Nr. 6 (Januar 1988): 748–52. http://dx.doi.org/10.3109/17453678809149442.

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Skov, Torsten. „Summary of the public hearing,‘Environment and Cancer -how to reduce the risk', Århus Musikhus, Århus, Denmark, May 13 1992.“ Pharmacology & Toxicology 72 (Februar 1993): 180–84. http://dx.doi.org/10.1111/j.1600-0773.1993.tb01689.x.

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la Cour Jansen, Jes, Bodil Mose Pedersen und Erik Moldt. „Evaluation of Small Wastewater Treatment Plants in the County of Århus – Denmark“. Water Science and Technology 28, Nr. 10 (01.11.1993): 33–41. http://dx.doi.org/10.2166/wst.1993.0201.

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Influent and effluent data from about 120 small wastewater treatment plants (100 - 2000 PE) have been collected and processed. Seven different types of plants are represented. The effluent quality and the treatment efficiency have been evaluated. The most common type of plant is mechanical/biological treatment plants. Some of them are nitrifying and some are also extended for chemical precipitation of phosphorus. Constructed wetlands and biological sandfilters are also represented among the small wastewater treatment plants.
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Jeppesen, Peter, und Toke Bek. „The occurrence and causes of registered blindness in diabetes patients in Århus County, Denmark“. Acta Ophthalmologica Scandinavica 82, Nr. 5 (28.09.2004): 526–30. http://dx.doi.org/10.1111/j.1600-0420.2004.00313.x.

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Jensen, J. B., und O. Bennike. „Geological setting as background for methane distribution in Holocene mud deposits, Århus Bay, Denmark“. Continental Shelf Research 29, Nr. 5-6 (März 2009): 775–84. http://dx.doi.org/10.1016/j.csr.2008.08.007.

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Geleijns, J., S. Golding, H. G. Menzel und H. Schibilla. „A workshop on quality criteria for computed tomography held in Århus, Denmark, November 1998“. European Radiology 10, Nr. 3 (24.02.2000): 544–45. http://dx.doi.org/10.1007/s003300050095.

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Geboers, Jef, Jozef V. Joossens und Ken K. Carroll. „Proceedings of a joint ECP‐IUNS workshop on diet and human carcinogenesis (Århus, Denmark; June 1985)“. Nutrition and Cancer 8, Nr. 1 (Januar 1986): 1–2. http://dx.doi.org/10.1080/01635588609513864.

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Gotzsche, Liv Bjorn-Hansen, und Hans Ørskov. „Cardiac triiodothyronine nuclear receptor binding capacities in amiodarone-treated, hypo- and hyperthyroid rats“. European Journal of Endocrinology 130, Nr. 3 (März 1994): 281–90. http://dx.doi.org/10.1530/eje.0.1300281.

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Gotzsche LBH, Ørskov H. Cardiac triiodothyronine nuclear receptor binding capacities in amiodaronetreated, hypo- and hyperthyroid rats. Eur J Endocrinol 1994;130:281–90. ISSN 0804–4643 Parameters that are assumed to be under direct control by thyroid hormonal state were evaluated in amiodarone-treated, hypo- and hyperthyroid rats. Special attention was paid to evaluating similarities between hypothyroid and amiodarone-treated rats, with special focus on myocardial nuclear triiodothyronine (T3) receptor binding characteristics. Rats were rendered hypothyroid by adding KCIO4 to the drinking water for 6 weeks (N = 14). Hyperthyroidism was induced by adding 0.003% l-thyroxine to the drinking water for 6 weeks (N = 14). Fourteen rats were treated orally for 6 weeks with amiodarone, whereas 14 rats served as untreated controls. Equilibrium binding characteristics for T3 nuclear receptors were determined by means of a simple and rapid method with excellent reproducibility and sensitivity. Body temperature and heart rate were lowered in hypothyroid and amiodarone-treated rats. Maximum binding capacities ofβ-adrenergic receptors were reduced by 39% and 14% (p < 0.05) in hypothyroid and amiodarone-treated rats, respectively, and increased by 28% (p < 0.05) in hyperthyroid rats. Maximum binding capacities for voltage-operated Ca2+ channels were increased by 35% and 16% in hypothyroid and amiodarone-treated rats (p < 0.05), respectively, and decreased by 24% in hyperthyroid rats (p < 0.05). Maximum binding capacities for T3 receptors (expressed per unit of DNA) were reduced by 39% and 32% in hypothyroid and amiodarone-treated rats (p < 0.05), respectively, and increased by 63% in hyperthyroid rats (p < 0.05). In hypothyroid and amiodarone-treated rats, myocardial T3 content was extremely reduced (less than 0.05 nmol/kg and 0.06 ± 0.08 nmol/kg, respectively, compared with control levels of 1.55 ± 0.46 nmol/kg). In vitro competition studies of amiodarone and its desethylanalogue revealed that both drugs are potentially capable of displacing T3 from its nuclear receptor at concentrations close to what are considered therapeutic drug levels. Myocardial nuclear T3 receptor maximum binding capacities decreased to a similar degree in hypothyroid and amiodarone-treated rats and increased in hyperthyroid rats. Several other similarities between hypothyroid and amiodarone-treated rats suggest that amiodarone may act by inducing a state of thyroid hormonal resistance. Liv Bjørn-Hansen Gøtzsche, Medical Department (Diabetes and Endocrinology), Århus Kommunehospital, University Hospital of Århus, DK-8000 Århus C, Denmark
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Gøtzsche, Liv Bjørn-Hansen. „l-Triiodothyronine acutely increases Ca2+ uptake in the isolated, perfused rat heart. Changes in l-type Ca2+ channels and β-receptors during short- and long-term hyper- and hypothyroidism“. European Journal of Endocrinology 130, Nr. 2 (Februar 1994): 171–79. http://dx.doi.org/10.1530/eje.0.1300171.

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Gøtzsche LB-H. l-Triiodothyronine acutely increases Ca2+ uptake in the isolated, perfused rat heart. Changes in l-type Ca2+ channels and β-receptors during short- and long-term hyper- and hypothyroidism. Eur J Endocrinol 1994;130:171–9. ISSN 0804–4643 Acutely administered triiodothyronine (T3) in supraphysiological doses has been shown to exert an acute positive inotropic effect in vivo a few minutes after intravenous administration. To investigate whether this effect could be explained by an acutely increased Ca2+ uptake in the myocardium, an isolated perfused rat heart model ad modum Langendorff was established. The acute stimulative effect of T3 on myocardial Ca2+ uptake was determined indirectly by measuring changes in Ca2+ concentration in the perfusate following coronary perfusion with 45Ca2+-containing buffer. Perfusion with T3 gave rise to dose-dependent reductions in perfusate Ca2+ within 20 s. Following 10−9 and 10−11 mol/l T3, the effect was small and usually lasted less than 1 min. Perfusion with 10−6 and 10−7 mmol/l T3 resulted in a decrease in perfusate Ca2+, which remained stable throughout 4–6 min of observation. Calcium channel blockade with nifedipine prevented the decrease in perfusate Ca2 +, suggesting that voltage-operated Ca2+ channels are involved in the increased Ca2 + uptake. A washout period with T3-free buffer re-established the Ca2+ concentration in the perfusate, suggesting that the effect is reversible. Calcium channels have been suggested to be regulated directly by T3. Maximum binding capacities for myocardial Ca2+ channels and β-receptors were determined by binding studies with [3H]PN200-110 and [125I]iodocyanopindolol in short-term and long-term hyper- and hypothyroid rats. After 2 and 8 weeks, Ca2+-channel maximum binding capacities were reduced by 25% and 23% in hyperthyroid rats (p<0.05) and increased by 33% and 23% in hypothyroid rats (p<0.05). β-Receptor binding capacities were increased by 33% and 50% in hyperthyroid rats (p<0.05) and reduced by 28% and 47% (p<0.05) in hypothyroid rats. The reduced Ca2+-channel maximum binding capacity during chronic hyperthyroidism is hypothesized to be a secondary event to a T3-induced increase in myocardial Ca2+ uptake in hyperthyroid rats, serving a protective role against Ca2+ overloading of the cell. The acute increase in Ca2+ uptake following T3 administration may explain the reported acute inotropic effect of T3. Liv Bjørn-Hansen Gøtzsche, Medical Department (Diabetes and Endocrinology), Århus Kommunehospital, University Hospital of Århus, DK-8000 Århus C, Denmark
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Christensen, Kjeld. „Forhistorisk dendrokronologi i Danmark“. Kuml 56, Nr. 56 (31.10.2007): 217–36. http://dx.doi.org/10.7146/kuml.v56i56.24682.

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Prehistoric dendrochronology in DenmarkSince dendrochronological work began in Denmark around 1970, both the Archaeological Sciences Department at the National Museum in Copenhagen and the Dendrochronological Laboratory at the periodical Skalk near Århus (now WM Dendrochronological Laboratory) have worked independently on the construction of a master chronology for Danish oak trees from prehistoric times. In 2004 a joint effort was launched between the two laboratories. As a result, the master chronology from 109 BC-AD 1980, constructed at the National Museum, has been extended back in time to 352 BC, although the oldest part still needs futher consolidation. Furthermore, three mean curves, dated with the help of a German master chronology, have now been constructed, resulting in a total of 4566 years BC being covered by absolutely dated mean curves (Fig. 4). These curves are separated by gaps totalling 1565 years; the youngest gap of only 50 years (402-353 BC) will hopefully soon be closed. In addition to the absolutely dated curves, a number of mean curves, dated by radiocarbon and some covering 4-500 years, have been constructed. As a further consequence, a large number of archaeological objects and sites have now been dated.Kjeld ChristensenWM Trædateringslaboratoriet / WM Dendrochronological Laboratory
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Bücher zum Thema "Århus (Denmark)"

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Bender, Johan. Marselisborg slot. Risskov]: Klematis, 2012.

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Hessov, Ib. Rum og kunst: En vision blev til virkelighed. Aarhus: Trykværket, 2021.

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Skriver, Poul Erik. Friis & Moltke. København: Arkitektens forlag, 1997.

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Nørgaard, Steen. Publikum på Svalegangen. Århus [Denmark]: Teatret Svalegangen, 1992.

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Council on Library and Information Resources., Hrsg. Århus Public Libraries: Embracing diversity, empowering citizens in Denmark. Washington: Council on Library and Information Resources, 2005.

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Clematide, Bruno. Edb konsekvensvurdering på Statsbiblioteket og Risø bibliotek: Delrapport fra første fase. Lyngby: Forskningsbibliotekernes edb-konsekvensvurderingsprojekt, 1985.

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Charlotte, Fabech, und Ringtved Jytte, Hrsg. Settlement and landscape: Proceedings of a conference in Århus, Denmark, May 4-7 1998. Moesgård, Højbjerg: Jutland Archaeological Society, 1999.

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Røn, Gitte Kidmose. Lægeplanter fra apotekerhaven i Den gamle by. Herausgegeben von Frandsen Allan Leth, Palermo Edith, Paulli Simon 1603-1680, Mogensen Kamma und Købstadmuseet "Den gamle by" (Århus, Denmark). Århus]: Den gamle by, 2007.

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Schwandt, Jörg. Svend Weihrauch: Sølv : 1928-1956 : en dansk funktionalist = Svend Weihrauch : silber : 1928-1956 : ein dänischer Funktionalist. Kolding [Denmark]: Museet på Koldinghus, 1998.

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EF-projektet i Århus kommune (Denmark), Hrsg. En Ulykke kommer sjældent alene: Erfaringer fra EF-projektet i Århus kommune. København: Socialstyrelsen, 1988.

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Buchteile zum Thema "Århus (Denmark)"

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Fallesen, Grethe, und Henning M. Jørgensen. „Distribution of Nephtys hombergii and N. ciliata (Polychaeta: Nephtyidae) in Århus Bay, Denmark, with Emphasis on the Effect of severe Oxygen Deficiency“. In Systematics, Biology and Morphology of World Polychaeta, 443–50. BRILL, 1991. http://dx.doi.org/10.1163/9789004629745_044.

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