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26篇 您的检索式:作者名="Vorndran"
    题名 作者 年代 出处 被引量
13D powder printing of 显示文摘Vorndran E Klarner M Klammert U 2008Advanced Engineering Materials2008,10,12:1
2Low temper- ature direct 3D printed bioeeramics and biocomposites as drug release matrices 显示文摘Gbureck U Vorndran E Muller F A 2007J Control Release2007,122,2:1
3New fluorescent calcium indicators designed for cytasolic retention or measuring calcium near membranes显示文摘Vorndran C Minta A Poenie M 1995Biophys J1995,69,:1
4I,ow temperature fahricalion of magnesium phosphate cement seaftolds hy 3D powder printing显示文摘Klammerl U Vorndran E Reuther T el al 2010Journal of Materials ~ience: Materials in Medicine2010,21,11:1
5Capillary zone electrophoretic analysis of carbohydrates by direct and indirect UV detection显示文摘P. J. Oefner A. E. Vorndran E. Grill C. Huber G. K. Bonn 1992Chromatographia (-)1992,,5:1
6Capillary zone electrophoresis of aldroses, ketoses and uronic acids derivatized with ethyl P-aminobenzoate显示文摘Vorndran A E 1992Chromatographia1992,34,:1
7A choice of task sequence to reduce problem behaviors显示文摘Kern L Mantegna ME Vorndran CM 0,,01:1
8Low temperature direct 3D printed bioceramics and biocomposites as drug release matrices 显示文摘GBURECK U VORNDRAN E MULLER F A 2007J Controlled Release2007,122,2:1
9Modeling vancomycin release ki- netics from microporous calcium phosphate ceramics comparing static and dynamic immersion conditions显示文摘Gbureck U Vorndran E Barralet JE 2008Acta Biomater2008,4,5:1
10Dual setting α-tricalcium phosphate cements显示文摘T. Christel M. Kuhlmann E. Vorndran J. Groll U. Gbureck 2013Journal of Materials Science: Materials in Medicine2013,,3:1
11Low temperature fabrication of magnesium phosphate cement scaffolds by 3D powder printing显示文摘Klammert U Vorndran E Reuther T 2010Journal of Materials Science: Materials in Medicine2010,21,11:1
12Nanopositioning:fighting the myths 显示文摘 2004Opto &Laser Europe2004,,122:1
133D powder printed calcium phosphate implants for reconstruction of cranial and maxillofacial defects显示文摘Klammert U Gbureck U Vorndran E 2010J Craniomaxillofac Surg2010,38,8:1
14TiO2 nanotubearraysdepositedonTisubstratebyanodicoxidationandtheirpotentialasalong-termdrugdeliverysystemforantimicrobialagents 显示文摘MosekeC HageF VorndranE etal 2012ApplSurfSci2012,258,:1
15Direct 3D powder printing of biphasic calcium phosphate scaffolds for substitution of complex bone defects显示文摘Miguel Castilho Claus Moseke Andrea Ewald Uwe Gbureck Jürgen Groll Inês Pires J?rg Te?mar Elke Vorndran 2014Biofabrication2014,,1:1
16Degradation of 3D-printed magnesium phosphate ceramics in vitro and a prognosis on their bone regeneration potential显示文摘Regenerative bone implants promote new bone formation and ideally degrade simultaneously to osteogenesis.Although clinically established calcium phosphate bone grafts provide excellent osseointegration and osteoconductive efficacy,they are limited in terms of bioresorption.Magnesium phosphate(MP)based ceramics are a promising alternative,because they are biocompatible,mechanically extremely stable,and degrade much faster than calcium phosphates under physiological conditions.Bioresorption of an implant material can include both chemical dissolution as well as cellular resorption.We investigated the bioresorption of 3D powder printed struvite and newberyite based MP ceramics in vitro by a direct human osteoclast culture approach.The osteoclast response and cellular resorption was evaluated by means of fluorescence and TRAP staining,determination of osteoclast activities(CA II and TRAP),SEM imaging as well as by quantification of the ion release during cell culture.Furthermore,the bioactivity of the materials was investigated via SBF immersion,whereas hydroxyapatite precipitates were analyzed by SEM and EDX measurements.This bioactive coating was resorbed by osteoclasts.In contrast,only chemical dissolution contributed to bioresorption of MP,while no cellular resorption of the materials was observed.Based on our results,we expect an increased bone regeneration effect of MP compared to calcium phosphate based bone grafts and complete chemical degradation within a maximum of 1.5-3.1 years.Gefel Eugen Moseke Claus Schmitt Anna-Maria Dümmler Niklas Stahlhut Philipp Ewald Andrea Meyer-Lindenberg Andrea Vorndran Elke 2023Bioactive Materials2023,,1:1
17Modeling vancomycin release kinetics from mieroporous calcium phosphate ceramics comparing static and dynamic immersing conditions 显示文摘GBURECK U VORNDRAN E BARRALET J E 2008Acta Biomater2008,4,5:1
18Tumor oxygenation: a new predictive parameter in locally advanced cancer of the uterine cervix显示文摘Hockel M Vorndran B Schlenger K 1993Gynecol Oncol1993,51,2:1
19Low temperature fabrication of magnesium phosphate cement scaffolds by 3D powder printing显示文摘Uwe Klammert Elke Vorndran Tobias Reuther Frank A. Müller Katharina Zorn Uwe Gbureck 2010Journal of Materials Science: Materials in Medicine2010,,11:1
20Low temperature direct 3D printed bioceramics and biocomposites as drug release matrices 显示文摘Gbureck U Vorndran E Muller FA 2007J Control Release2007,122,2:1
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