@incollection{KochPoghossianWegeetal.2018, author = {Koch, Claudia and Poghossian, Arshak and Wege, Christina and Sch{\"o}ning, Michael Josef}, title = {TMV-Based Adapter Templates for Enhanced Enzyme Loading in Biosensor Applications}, series = {Virus-Derived Nanoparticles for Advanced Technologies}, booktitle = {Virus-Derived Nanoparticles for Advanced Technologies}, editor = {Wege, Christina}, publisher = {Humana Press}, address = {New York, NY}, isbn = {978-1-4939-7808-3}, doi = {10.1007/978-1-4939-7808-3}, pages = {553 -- 568}, year = {2018}, abstract = {Nanotubular tobacco mosaic virus (TMV) particles and RNA-free lower-order coat protein (CP) aggregates have been employed as enzyme carriers in different diagnostic layouts and compared for their influence on biosensor performance. In the following, we describe a label-free electrochemical biosensor for improved glucose detection by use of TMV adapters and the enzyme glucose oxidase (GOD). A specific and efficient immobilization of streptavidin-conjugated GOD ([SA]-GOD) complexes on biotinylated TMV nanotubes or CP aggregates was achieved via bioaffinity binding. Glucose sensors with adsorptively immobilized [SA]-GOD, and with [SA]-GOD cross-linked with glutardialdehyde, respectively, were tested in parallel on the same sensor chip. Comparison of these sensors revealed that TMV adapters enhanced the amperometric glucose detection remarkably, conveying highest sensitivity, an extended linear detection range and fastest response times. These results underline a great potential of an integration of virus/biomolecule hybrids with electronic transducers for applications in biosensorics and biochips. Here, we describe the fabrication and use of amperometric sensor chips combining an array of circular Pt electrodes, their loading with GOD-modified TMV nanotubes (and other GOD immobilization methods), and the subsequent investigations of the sensor performance.}, language = {en} } @incollection{GollandSchneidereit2018, author = {Golland, Alexander and Schneidereit, Peter}, title = {Rechtliche Rahmenbedingungen des Identit{\"a}tsmangements im Cloud Computing}, series = {Identit{\"a}tsmanagement Im Cloud Computing : Evaluation {\"o}konomischer und Rechtlicher Rahmenbedingungen}, booktitle = {Identit{\"a}tsmanagement Im Cloud Computing : Evaluation {\"o}konomischer und Rechtlicher Rahmenbedingungen}, editor = {Borges, Georg and Werners, Brigitte}, publisher = {Springer}, address = {Berlin}, isbn = {978-3-662-55584-2}, doi = {10.1007/978-3-662-55584-2_4}, pages = {53 -- 104}, year = {2018}, abstract = {Cloud Computing wirft in zahlreichen Rechtsbereichen neuartige juristische Fragestellungen auf. Ziel der Darstellung der rechtlichen Rahmenbedingungen ist, die das Identit{\"a}tsmanagement in der Cloud betreffenden Rechtsgrundlagen aus den unterschiedlichen Rechtsgebieten vorzustellen und einzuordnen, bevor im Rahmen des sechsten Kapitels die Darstellung der hieraus resultierenden Verpflichtungen in ihrer konkreten Form erfolgt.}, language = {de} } @incollection{RoethPielen2018, author = {R{\"o}th, Thilo and Pielen, Michael}, title = {Personal Public Vehicle - ein urbanes Fahrzeugkonzept f{\"u}r die „Shared Mobility" der Zukunft}, series = {Karosseriebautage Hamburg 2018, 16. ATZ-Fachtagung}, booktitle = {Karosseriebautage Hamburg 2018, 16. ATZ-Fachtagung}, publisher = {Springer Vieweg}, address = {Wiesbaden}, doi = {10.1007/978-3-658-22038-9_13}, pages = {189 -- 199}, year = {2018}, abstract = {Die urbane Mobilit{\"a}t ist im Wandel und insbesondere neue innovative Gesch{\"a}ftsmodelle werden einen wesentlichen Teil zur L{\"o}sung von k{\"u}nftigen Mobilit{\"a}tsbed{\"u}rfnissen beitragen. Die sogenannte „Shared Mobility" gilt aktuell neben der Elektrifizierung des Antriebes und autonomem Fahrzeugtechnologien als einer der wichtigsten Trendthemen in der Automobilindustrie. Neue Mobilit{\"a}tsdienstleistungen verlangen dabei verst{\"a}rkt auch neue Fahrzeugkonzepte.}, language = {de} } @incollection{Finkenberger2018, author = {Finkenberger, Isabel Maria}, title = {Schwellenreiten}, series = {Prozesse reflexiven Entwerfens : Entwerfen und Forschen in Architektur und Landschaft}, booktitle = {Prozesse reflexiven Entwerfens : Entwerfen und Forschen in Architektur und Landschaft}, editor = {Buchert, Margitta}, publisher = {JOVIS Verlag}, address = {Berlin}, isbn = {978-3-86859-558-1}, pages = {208 -- 226}, year = {2018}, language = {de} } @incollection{Fabo2018, author = {Fabo, Sabine}, title = {Einspr{\"u}che gegen den informierten Himmel ; Wegsehen; Distanzschaffen, Spielen}, series = {Orbitale Irritationen / Herausgeber: REMOTEWORDS: Achim Mohn{\´e} \& Uta Kopp}, booktitle = {Orbitale Irritationen / Herausgeber: REMOTEWORDS: Achim Mohn{\´e} \& Uta Kopp}, publisher = {Herbert von Halem Verlag}, address = {K{\"o}ln}, isbn = {978-3-86962-302-3}, pages = {20 -- 45}, year = {2018}, language = {de} } @incollection{Finkenberger2018, author = {Finkenberger, Isabel Maria}, title = {Die Stadt als st{\"a}dtisch-theatrale Versuchsanordnung: Wie wollen wir in Zukunft leben und welche Stadt brauchen wir daf{\"u}r?}, series = {Un/Certain Futures - Rollen des Designs in gesellschaftlichen Transformationsprozessen}, booktitle = {Un/Certain Futures - Rollen des Designs in gesellschaftlichen Transformationsprozessen}, publisher = {transcript}, address = {Bielefeld}, isbn = {9783839443323}, doi = {https://doi.org/10.1515/9783839443323-009}, pages = {86 -- 95}, year = {2018}, language = {de} } @incollection{Fabo2018, author = {Fabo, Sabine}, title = {Eine dekonstruktive Erinnerungsarbeit}, series = {Doris Frohnapfel, bewaffnete G{\"o}tter = Doris Frohnapfel, armed gods}, booktitle = {Doris Frohnapfel, bewaffnete G{\"o}tter = Doris Frohnapfel, armed gods}, publisher = {RpB Richter-Br{\"u}ckner}, address = {K{\"o}ln}, isbn = {978-3-9817241-2-7}, pages = {31 -- 35}, year = {2018}, language = {de} } @incollection{ChwallekGoelzerReichert2018, author = {Chwallek, Constanze and G{\"o}lzer, Kaan and Reichert, Walter}, title = {Faymonville - Wachstum als Komplexit{\"a}tstreiber}, series = {Fallstudienkompendium Hidden Champions - Innovationen f{\"u}r den Weltmarkt}, booktitle = {Fallstudienkompendium Hidden Champions - Innovationen f{\"u}r den Weltmarkt}, publisher = {Springer Gabler}, isbn = {978-3-658-17829-1}, doi = {10.1007/978-3-658-17829-1_18}, pages = {299 -- 312}, year = {2018}, abstract = {Die Fallstudie FAYMONVILLE besch{\"a}ftigt sich damit, wie es dem Familienunternehmen Faymonville aus Ostbelgien gelungen ist, sich zu einem der f{\"u}hrenden Hersteller in seiner Branche zu entwickeln. Die gezielte Identifizierung neuer M{\"a}rkte, die Fokussierung auf die relevanten Kundenbed{\"u}rfnisse und eine konsistente Produktpolitik mit einem abgestimmten Fertigungskonzept legen die Grundsteine f{\"u}r den Erfolg. Das vorliegende Fallbeispiel zeigt anschaulich, wie es gelingen kann, den prinzipiellen Widerspruch zwischen wirtschaftlicher und kundenindividueller Fertigung erfolgreich aufzul{\"o}sen.}, language = {de} } @incollection{GiresiniButenweg2019, author = {Giresini, Linda and Butenweg, Christoph}, title = {Earthquake resistant design of structures according to Eurocode 8}, series = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, booktitle = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, publisher = {Springer}, address = {Berlin}, isbn = {978-3-662-57550-5 (Online)}, doi = {10.1007/978-3-662-57550-5_4}, pages = {197 -- 358}, year = {2019}, abstract = {The chapter initially provides a summary of the contents of Eurocode 8, its aim being to offer both to the students and to practising engineers an easy introduction into the calculation and dimensioning procedures of this earthquake code. Specifically, the general rules for earthquake-resistant structures, the definition of design response spectra taking behaviour and importance factors into account, the application of linear and non-linear calculation methods and the structural safety verifications at the serviceability and ultimate limit state are presented. The application of linear and non-linear calculation methods and corresponding seismic design rules is demonstrated on practical examples for reinforced concrete, steel and masonry buildings. Furthermore, the seismic assessment of existing buildings is discussed and illustrated on the example of a typical historical masonry building in Italy. The examples are worked out in detail and each step of the design process, from the preliminary analysis to the final design, is explained in detail.}, language = {en} } @incollection{MeskourisButenwegHinzenetal.2019, author = {Meskouris, Konstantin and Butenweg, Christoph and Hinzen, Klaus-G. and H{\"o}ffer, R{\"u}diger}, title = {Stochasticity of Wind Processes and Spectral Analysis of Structural Gust Response}, series = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, booktitle = {Structural Dynamics with Applications in Earthquake and Wind Engineering}, publisher = {Springer}, address = {Berlin}, isbn = {978-3-662-57550-5 (Online)}, doi = {10.1007/978-3-662-57550-5_3}, pages = {153 -- 196}, year = {2019}, abstract = {Wind loads have great impact on many engineering structures. Wind storms often cause irreparable damage to the buildings which are exposed to it. Along with the earthquakes, wind represents one of the most common environmental load on structures and is relevant for limit state design. Modern wind codes indicate calculation procedures allowing engineers to deal with structural systems, which are susceptible to conduct wind-excited oscillations. In the codes approximate formulas for wind buffeting are specified which relate the dynamic problem to rather abstract parameter functions. The complete theory behind is not visible in order to simplify the applicability of the procedures. This chapter derives the underlying basic relations of the spectral method for wind buffeting and explains the main important applications of it in order to elucidate part of the theoretical background of computations after the new codes. The stochasticity of the wind processes is addressed, and the analysis of analytical as well as measurement based power spectra is outlined. Short MATLAB codes are added to the Appendix 3 which carry out the computation of a single sided auto-spectrum from a statistically stationary, discrete stochastic process. Two examples are presented.}, language = {en} }