@article{SchneiderSchneider2012, author = {Schneider, Bettina and Schneider, Wilhelm}, title = {Due Diligence - Grundlagen und Checkliste f{\"u}r KMU}, series = {Betriebswirtschaft im Blickpunkt}, journal = {Betriebswirtschaft im Blickpunkt}, publisher = {IWW Institut f{\"u}r Wissen in der Wirtschaft}, address = {Nordkirchen}, issn = {2191-1118}, pages = {148 -- 149}, year = {2012}, abstract = {Im Folgenden sollen Anlass und Inhalt einer Due Diligence erl{\"a}utert werden. Im Rahmen einer Checkliste werden Beratern und Unternehmen Hinweise zu m{\"o}glichen Pr{\"u}fungsgebieten sowie zu vorzuhaltenden oder zu pr{\"u}fenden Unterlagen gegeben. Entstanden ist die Checkliste aus der langj{\"a}hrigen praktischen T{\"a}tigkeit der Autoren bei einer großen Wirtschaftspr{\"u}fungsgesellschaft bzw. einer deutschen Großbank.}, language = {de} } @article{BleckenHolthausSellheier2012, author = {Blecken, Udo and Holthaus-Sellheier, Ursula}, title = {Quantitative Prognoseverfahren f{\"u}r Mietpreise von Bueroimmobilien am Beispiel D{\"u}sseldorf}, series = {GuG : Grundst{\"u}cksmarkt und Grundst{\"u}ckswert}, volume = {23}, journal = {GuG : Grundst{\"u}cksmarkt und Grundst{\"u}ckswert}, number = {1}, publisher = {Werner}, address = {K{\"o}ln}, issn = {0938-0175}, pages = {12 -- 21}, year = {2012}, language = {de} } @article{KurulganDemirciDemirciLinderetal.2012, author = {Kurulgan Demirci, Eylem and Demirci, Taylan and Linder, Peter and Trzewik, J{\"u}rgen and Gierkowski, Jessica Ricarda and Gossmann, Matthias and Kayser, Peter and Porst, Dariusz and Digel, Ilya and Artmann, Gerhard and Temiz Artmann, Ayseg{\"u}l}, title = {rhAPC reduces the endothelial cell permeability via a decrease of contractile tensions induced by endothelial cells}, series = {Journal of Bioscience and Bioengineering}, volume = {113}, journal = {Journal of Bioscience and Bioengineering}, number = {2}, publisher = {Elsevier}, address = {Amsterdam}, issn = {1347-4421}, doi = {10.1016/j.jbiosc.2012.03.019}, pages = {212 -- 219}, year = {2012}, abstract = {All cells generate contractile tension. This strain is crucial for mechanically controlling the cell shape, function and survival. In this study, the CellDrum technology quantifying cell's (the cellular) mechanical tension on a pico-scale was used to investigate the effect of lipopolysaccharide (LPS) on human aortic endothelial cell (HAoEC) tension. The LPS effect during gram-negative sepsis on endothelial cells is cell contraction causing endothelium permeability increase. The aim was to finding out whether recombinant activated protein C (rhAPC) would reverse the endothelial cell response in an in-vitro sepsis model. In this study, the established in-vitro sepsis model was confirmed by interleukin 6 (IL-6) levels at the proteomic and genomic levels by ELISA, real time-PCR and reactive oxygen species (ROS) activation by florescence staining. The thrombin cellular contraction effect on endothelial cells was used as a positive control when the CellDrum technology was applied. Additionally, the Ras homolog gene family, member A (RhoA) mRNA expression level was checked by real time-PCR to support contractile tension results. According to contractile tension results, the mechanical predominance of actin stress fibers was a reason of the increased endothelial contractile tension leading to enhanced endothelium contractility and thus permeability enhancement. The originality of this data supports firstly the basic measurement principles of the CellDrum technology and secondly that rhAPC has a beneficial effect on sepsis influenced cellular tension. The technology presented here is promising for future high-throughput cellular tension analysis that will help identify pathological contractile tension responses of cells and prove further cell in-vitro models.}, language = {en} } @incollection{Laack2012, author = {Laack, Walter van}, title = {Elektro- und Ultraschalltherapie}, series = {Leitfaden Naturheilverfahren : f{\"u}r die {\"a}rztliche Praxis}, booktitle = {Leitfaden Naturheilverfahren : f{\"u}r die {\"a}rztliche Praxis}, editor = {Beer, Andr{\´e}-Michael and Adler, Martin}, publisher = {Elsevier}, address = {Amsterdam}, isbn = {978-3-437-56103-0}, doi = {10.1016/B978-3-437-56103-0.10013-5}, pages = {285 -- 299}, year = {2012}, language = {de} } @book{Laack2012, author = {Laack, Walter van}, title = {Schnittstelle Tod: Warum auf ein Danach vertrauen?}, publisher = {Books on Demand}, address = {Norderstedt}, isbn = {978-3-936624-14-4}, pages = {120 S. : Ill.,graph. Darst.}, year = {2012}, language = {de} } @book{WosnitzaHilgers2012, author = {Wosnitza, Franz and Hilgers, Hans Gerd}, title = {Energieeffizienz und Energiemanagement : Ein {\"U}berblick heutiger M{\"o}glichkeiten und Notwendigkeiten}, publisher = {Vieweg + Teubner}, address = {Wiesbaden}, isbn = {978-3-8348-8671-2}, pages = {Elektronische Ressource}, year = {2012}, language = {de} } @inproceedings{FeuerriegelWittenhorstHoffmannetal.2012, author = {Feuerriegel, Uwe and Wittenhorst, Simon and Hoffmann, Ulrich and Pook, Michael}, title = {Simulation von W{\"a}rme{\"u}bertragungsprozessen}, series = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, booktitle = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, publisher = {Oldenbourg Industrieverlag}, address = {M{\"u}nchen}, isbn = {978-3-8356-3305-6}, pages = {127 -- 136}, year = {2012}, language = {de} } @inproceedings{LuszczynskiEngels2012, author = {Luszczynski, K. and Engels, Elmar}, title = {Vergleichende Untersuchung zur Topologie von zelloptimalen, elektromobilit{\"a}ts-optimierten Ladungsausgleichsvorrichtungen}, series = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, booktitle = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, publisher = {Oldenbourg Industrieverlag}, address = {M{\"u}nchen}, isbn = {978-3-8356-3305-6}, pages = {165 -- 174}, year = {2012}, language = {de} } @inproceedings{EngelsGabler2012, author = {Engels, Elmar and Gabler, T.}, title = {Universelle Programmierschnittstelle f{\"u}r Motion-Logic Systeme}, series = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, booktitle = {Tagungsband zur AALE-Tagung 2012 : 9. Fachkonferenz}, publisher = {Oldenbourg Industrieverlag}, address = {M{\"u}nchen}, isbn = {978-3-8356-3305-6}, pages = {37 -- 46}, year = {2012}, language = {de} } @article{SpelthahnKirsanovLeginetal.2012, author = {Spelthahn, Heiko and Kirsanov, Dmitry and Legin, Andrey and Osterrath, Thomas and Schubert, J{\"u}rgen and Zander, Willi and Sch{\"o}ning, Michael Josef}, title = {Development of a thin-film sensor array for analytical monitoring of heavy metals in aqueous solutions}, series = {Physica Status Solidi (a)}, volume = {209}, journal = {Physica Status Solidi (a)}, number = {5}, publisher = {Wiley-VCH}, address = {Weinheim}, isbn = {1862-6319}, doi = {10.1002/pssa.201100733}, pages = {885 -- 891}, year = {2012}, abstract = {In industrial processes there is a variety of heavy metals (e.g., copper, zinc, cadmium, and lead) in use for wires, coatings, paints, alloys, batteries, etc. Since the application of these transition metals for industry is inevitable, it is a vital task to develop proper analytical techniques for their monitoring at low activity levels, especially because most of these elements are acutely toxic for biological organisms. The determination of ions in solution by means of a simple and inexpensive sensor array is, therefore, a promising task. In this work, a sensor array with heavy metal-sensitive chalcogenide glass membranes for the simultaneous detection of the four ions Ag⁺, Cu2⁺, Cd2⁺, and Pb2⁺ in solution is realized. The results of the physical characterization by means of microscopy, profilometry, Rutherford backscattering spectroscopy (RBS), and scanning electron microscopy (SEM) as well as the electrochemical characterization by means of potentiometric measurements are presented. Additionally, the possibility to expand the sensor array by polymeric sensor membranes is discussed.}, language = {en} }