@article{AlmajhdiSengerAmeretal.2014, author = {Almajhdi, Fahad N. and Senger, Tilo and Amer, Haitham M. and Gissmann, Lutz and {\"O}hlschl{\"a}ger, Peter}, title = {Design of a highly effective therapeutic HPV16 E6/E7-specific DNA vaccine: optimization by different ways of sequence rearrangements (Shuffling)}, series = {PLOS one}, volume = {11}, journal = {PLOS one}, number = {9}, publisher = {PLOS}, address = {San Francisco}, issn = {1932-6203}, doi = {10.1371/journal.pone.0113461}, pages = {e113461}, year = {2014}, abstract = {Persistent infection with the high-risk Human Papillomavirus type 16 (HPV 16) is the causative event for the development of cervical cancer and other malignant tumors of the anogenital tract and of the head and neck. Despite many attempts to develop therapeutic vaccines no candidate has entered late clinical trials. An interesting approach is a DNA based vaccine encompassing the nucleotide sequence of the E6 and E7 viral oncoproteins. Because both proteins are consistently expressed in HPV infected cells they represent excellent targets for immune therapy. Here we report the development of 8 DNA vaccine candidates consisting of differently rearranged HPV-16 E6 and E7 sequences within one molecule providing all naturally occurring epitopes but supposedly lacking transforming activity. The HPV sequences were fused to the J-domain and the SV40 enhancer in order to increase immune responses. We demonstrate that one out of the 8 vaccine candidates induces very strong cellular E6- and E7- specific cellular immune responses in mice and, as shown in regression experiments, efficiently controls growth of HPV 16 positive syngeneic tumors. This data demonstrates the potential of this vaccine candidate to control persistent HPV 16 infection that may lead to malignant disease. It also suggests that different sequence rearrangements influence the immunogenecity by an as yet unknown mechanism.}, language = {en} } @book{KernWettingfeld2014, author = {Kern, Alexander and Wettingfeld, J{\"u}rgen}, title = {Blitzschutzsysteme 1 : allgemeine Grunds{\"a}tze, Risikomanagement, Schutz von baulichen Anlagen und Personen ; Erl{\"a}uterungen zu den Normen DIN EN 62305-1 (VDE 0185-305-1):2011-10, DIN EN 62305-2 (VDE 0185-305-2):2013-02, DIN EN 62305-3 (VDE 0185-305-3):2011-10. (VDE-Schriftenreihe Normen verst{\"a}ndlich ; 44)}, publisher = {VDE-Verl.}, address = {Berlin [u.a.]}, isbn = {978-3-8007-3511-2}, pages = {308 S.}, year = {2014}, language = {de} } @book{Tietze2014, author = {Tietze, J{\"u}rgen}, title = {{\"U}bungsbuch zur angewandten Wirtschaftsmathematik : Aufgaben, Testklausuren und ausf{\"u}hrliche L{\"o}sungen. - 9., {\"u}berarb. u. erw. Aufl.}, edition = {9., {\"u}berarb. u. erw. Aufl.}, publisher = {Vieweg + Teubner}, address = {Wiesbaden}, isbn = {978-3-658-06874-5 ; 978-3-658-06873-8}, pages = {VIII, 444 S.}, year = {2014}, language = {de} } @article{Wollert2014, author = {Wollert, J{\"o}rg}, title = {Der Embedded Wireless-Report}, series = {Elektronik : Fachmedium f{\"u}r industrielle Anwender und Entwickler ; Sonderh. Wireless : Fachmedium f{\"u}r Entwicklungen funkbasierter Systeme}, journal = {Elektronik : Fachmedium f{\"u}r industrielle Anwender und Entwickler ; Sonderh. Wireless : Fachmedium f{\"u}r Entwicklungen funkbasierter Systeme}, publisher = {WEKA-Fachmedien}, address = {Haar}, issn = {0013-5658}, pages = {18 -- 25}, year = {2014}, language = {de} } @article{Wollert2014, author = {Wollert, J{\"o}rg}, title = {Feldbustechnologie}, series = {Factory : der Durchblick in der Technik}, journal = {Factory : der Durchblick in der Technik}, publisher = {WEKA-Industriemedien}, address = {Wien}, pages = {Publ. online}, year = {2014}, language = {de} } @article{DemnyHebel2014, author = {Demny, Andreas and Hebel, Christoph}, title = {Rechnergest{\"u}tzte Ermittlung der Verbindungsfunktionsstufen und der verbindungsbezogenen Angebotsqualit{\"a}t nach den Richtlinien f{\"u}r integrierte Netzgestaltung nach RIN 2008}, series = {Straßenverkehrstechnik : Organ der Forschungsgesellschaft f{\"u}r Straßen- und Verkehrswesen, der Bundesvereinigung der Straßenbau- und Verkehrsingenieure und der {\"O}sterreichischen Forschungsgesellschaft Straße und Verkehr ; Zeitschrift f{\"u}r Verkehrsplanung, Verkehrsmanagement, Verkehrssicherheit, Verkehrstechnik}, volume = {Jg. 58}, journal = {Straßenverkehrstechnik : Organ der Forschungsgesellschaft f{\"u}r Straßen- und Verkehrswesen, der Bundesvereinigung der Straßenbau- und Verkehrsingenieure und der {\"O}sterreichischen Forschungsgesellschaft Straße und Verkehr ; Zeitschrift f{\"u}r Verkehrsplanung, Verkehrsmanagement, Verkehrssicherheit, Verkehrstechnik}, number = {H. 12}, publisher = {Kirschbaum Verlag}, address = {Bonn}, issn = {0039-2219}, pages = {811 -- 820}, year = {2014}, language = {de} } @incollection{Hebel2014, author = {Hebel, Christoph}, title = {Mehrwert}, series = {Unser Dorf hat Zukunft}, booktitle = {Unser Dorf hat Zukunft}, publisher = {St{\"a}dteRegion Aachen}, address = {Aachen}, pages = {6 -- 7}, year = {2014}, language = {de} } @inproceedings{FateriGebhardt2014, author = {Fateri, Miranda and Gebhardt, Andreas}, title = {Jewelry fabrication via selective laser melting of glass}, series = {ASME 2014 12th Biennial Conference on Engineering Systems Design and Analysis Volume 1: Applied Mechanics; Automotive Systems; Biomedical Biotechnology Engineering; Computational Mechanics; Design; Digital Manufacturing; Education; Marine and Aerospace Applications}, booktitle = {ASME 2014 12th Biennial Conference on Engineering Systems Design and Analysis Volume 1: Applied Mechanics; Automotive Systems; Biomedical Biotechnology Engineering; Computational Mechanics; Design; Digital Manufacturing; Education; Marine and Aerospace Applications}, isbn = {978-0-7918-4583-7}, doi = {10.1115/ESDA2014-20380}, pages = {V001T06A005}, year = {2014}, abstract = {Selective Laser Melting (SLM) is one of the Additive Manufacturing (AM) technologies applicable for producing complex geometries which are typically expensive or difficult to fabricate using conventional methods. This process has been extensively investigated experimentally for various metals and the fabrication process parameters have been established for different applications; however, fabricating 3D glass objects using SLM technology has remained a challenge so far although it could have many applications. This paper presents a summery on various experimental evaluations of a material database incorporating the build parameters of glass powder using the SLM process for jewelry applications.}, language = {en} } @incollection{Benner2014, author = {Benner, Joachim}, title = {Berechnungsmethoden der W{\"a}lzlagerreibung und Einflussgr{\"o}ßen}, series = {SMK 2014 : Schweizer Maschinenelemente Kolloquim 25. und 26. November 2014}, booktitle = {SMK 2014 : Schweizer Maschinenelemente Kolloquim 25. und 26. November 2014}, publisher = {TUDpress Verl. der Wissenschaften}, address = {Dresden}, isbn = {978-3-944331-81-2}, pages = {151 -- 170}, year = {2014}, language = {de} } @article{Thomas2014, author = {Thomas, Axel}, title = {Generation Y}, series = {P.T. : Magazin f{\"u}r Wirtschaft und Gesellschaft}, volume = {10}, journal = {P.T. : Magazin f{\"u}r Wirtschaft und Gesellschaft}, number = {3}, publisher = {OPS Netzwerk}, address = {Leipzig}, issn = {1860-501X}, pages = {6 -- 9}, year = {2014}, language = {de} }