1000 resultados para Kinetic Art


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Dass der Weg der parlamentarischen Mitwirkung im Bereich der Aussenpolitik steinig werden sollte, widerspiegelte sich bereits in der Entstehungsgeschichte der Aussenpolitischen Kommissionen (APK). Diese haben zum heutigen Zeitpunkt unter anderem dafür zu sorgen, dass das Parlament seine Mitwirkungsrechte in auswärtigen Angelegenheiten frühzeitig und wirk¬sam wahrnehmen kann. Nebst verschiedensten Instrumenten auf Verfassungs- und Gesetzesebene steht den APK ein wichtiges Mitwirkungsinstrument zur Verfügung: die Information und Konsultation gemäss Art. 152 Parlamentsgesetz (ParlG). Seit Inkrafttreten dieser Bestimmung im Dezember 2003 offenbart sich jedoch, dass sich die praktische Umsetzung des Gesetzesartikels mit den damaligen Vorstellungen des Gesetzgebers anlässlich der Erarbeitung dieses parlamentarischen Instrumentes nicht deckt. Der Gesetzgeber wies seiner¬zeit auf das für die Umsetzung bedeutende Vertrauensverhältnis zwischen Bundesrat und Parlament hin. Allerdings beeinflussen nun Spannungen und Konkurrenz zwischen der Exekutive und der Legislative die Umsetzung von Art. 152 ParlG. Die vorliegende Arbeit versucht, die geschichtlichen Hintergründe, die Entstehung, den Sinn und Zweck sowie die Praxis von Art. 152 ParlG vor dem Hintergrund des erwähnten Spannungsfelds und im Zusammenspiel mit den weiteren Mitwirkungsinstrumenten im Bereich der Aussenpolitik darzulegen. Comme le montre déjà l'historique des Commissions de politique extérieure (CPE), la participation du Parlement à la politique extérieure n'est pas dénuée d'obstacles. A l'heure actuelle, les CPE doivent notamment faire en sorte que le Parlement puisse faire valoir, en amont et avec efficacité, son droit de participation dans le domaine de la politique étrangère de la Suisse. Outre divers instruments figurant dans la Constitution et les lois, les CPE disposent d'un important moyen de participation: l'information et la consultation au sens de l'art. 152 de la loi sur le Parlement (LParl). Depuis l'entrée en vigueur de cette disposition en décembre 2003, il s'avère toutefois que l'application concrète de cet article de loi ne ré¬pond pas entièrement aux attentes du législateur lors de l'élaboration de cet instrument parlementaire. En effet, le législateur s'était alors basé sur la relation de confiance entre le Conseil fédéral et le Parlement, relation essentielle à la mise en oeuvre de cet article. La pratique montre cependant que la mise en oeuvre de l'art. 152 LParl est influencée par des tensions et par une relation de concurrence existant entre l'exécutif et le législatif. Le présent travail entend exposer le contexte historique de l'art. 152 LParl, son élaboration, son but et sa mise en oeuvre, tout en tenant compte des éléments de tension et des autres instruments permettant la participation en matière de politique extérieure.

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There is little information on how neuropeptide Y (NPY) proteolysis by peptidases occurs in serum, in part because reliable techniques are lacking to distinguish different NPY immunoreactive forms and also because the factors affecting the expression of these enzymes have been poorly studied. In the present study, LC-MS/MS was used to identify and quantify NPY fragments resulting from peptidolytic cleavage of NPY(1-36) upon incubation with human serum. Kinetic studies indicated that NPY(1-36) is rapidly cleaved in serum into 3 main fragments with the following order of efficacy: NPY(3-36) >> NPY(3-35) > NPY(2-36). Trace amounts of additional NPY forms were identified by accurate mass spectrometry. Specific inhibitors of dipeptidyl peptidase IV, kallikrein, and aminopeptidase P prevented the production of NPY(3-36), NPY(3-35), and NPY(2-36), respectively. Plasma kallikrein at physiological concentrations converted NPY(3-36) into NPY(3-35). Receptor binding assays revealed that NPY(3-35) is unable to bind to NPY Y1, Y2, and Y5 receptors; thus NPY(3-35) may represent the major metabolic clearance product of the Y2/Y5 agonist, NPY(3-36).

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Soil β-glucosidase participates in the final step of cellulose biodegradation. It is significant in the soil C cycle and is used as an indicator of the biological fertility of soil. However, the response of its kinetic parameters to environmental temperature and moisture regimes is not well understood. This study tested the β-glucosidase response in the main agricultural soils (black soil, albic soil, brown soil, and cinnamon soil) of Northeast China. Incubation tests were conducted to measure the kinetic parameters Km, Vmax or Vmax/Km of soil β-glucosidase at environmental temperatures of 10, 20 and 30 ºC and at 10, 20 and 30 % soil moisture content. The insensitive response of the kinetic parameters to temperature changes indicates that soil β-glucosidase was present primarily in immobilized form. The significant response of the kinetic parameters of soil β-glucosidase to soil moisture rather than to environmental temperatures suggests that the catalytic ability of soil β-glucosidase was sensitive to changing soil moisture regimes.

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In fluid dynamical models the freeze-out of particles across a three-dimensional space-time hypersurface is discussed. The calculation of final momentum distribution of emitted particles is described for freeze-out surfaces, with both spacelike and timelike normals, taking into account conservation laws across the freeze-out discontinuity.

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The problem of freeze-out (FO) in relativistic heavy-ion reactions is addressed. We develop and analyze an idealized one-dimensional model of FO in a finite layer, based on the covariant FO probability. The resulting post FO phase-space distributions are discussed for different FO probabilities and layer thicknesses.

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Integrated approaches using different in vitro methods in combination with bioinformatics can (i) increase the success rate and speed of drug development; (ii) improve the accuracy of toxicological risk assessment; and (iii) increase our understanding of disease. Three-dimensional (3D) cell culture models are important building blocks of this strategy which has emerged during the last years. The majority of these models are organotypic, i.e., they aim to reproduce major functions of an organ or organ system. This implies in many cases that more than one cell type forms the 3D structure, and often matrix elements play an important role. This review summarizes the state of the art concerning commonalities of the different models. For instance, the theory of mass transport/metabolite exchange in 3D systems and the special analytical requirements for test endpoints in organotypic cultures are discussed in detail. In the next part, 3D model systems for selected organs--liver, lung, skin, brain--are presented and characterized in dedicated chapters. Also, 3D approaches to the modeling of tumors are presented and discussed. All chapters give a historical background, illustrate the large variety of approaches, and highlight up- and downsides as well as specific requirements. Moreover, they refer to the application in disease modeling, drug discovery and safety assessment. Finally, consensus recommendations indicate a roadmap for the successful implementation of 3D models in routine screening. It is expected that the use of such models will accelerate progress by reducing error rates and wrong predictions from compound testing.