Full name Familienname, Vorname
Hofstetter, Christoph
 
Main Affiliation Organisations­zuordnung
 

Results 1-20 of 22 (Search time: 0.001 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Nistler, Sarah ; Hofstetter, Christoph ; Baudis, Stefan ; Schwentenwein, Martin ; Stampfl, Jürgen Hydroxyapatite and Tricalcium Phosphate in Combination with Zirconia Manufactured by Digital Light Processing-based Vat Polymerization to Treat Large Bone DefectsPresentation Vortrag4-Sep-2023
2Nistler, Sarah ; Hofstetter, Christoph ; Baudis, Stefan ; Schwentenwein, Martin ; Stampfl, Jürgen Hydroxyapatite and Tricalcium Phosphate Sinter-Joined with Zirconia to Selectively Enhance Large Bone Implants Manufactured by Digital Light Processing-based Vat PolymerizationPresentation Vortrag31-Aug-2023
3Nistler, Sarah ; Hofstetter, Christoph ; Baudis, Stefan ; Schwentenwein, Martin ; Stampfl, Jürgen Hydroxyapatite and Tricalcium Phosphate in Combination with Zirconia Manufactured by Digital Light Processing-based Vat PolymerizationPresentation Vortrag5-Jul-2023
4Kutsch, Anna Lea ; Hofstetter, Christoph ; Nistler, Sarah ; Baudis, Stefan ; Schwentenwein, Martin ; Stampfl, Jürgen Investigations on the Rheology and Deagglomeration of Digital Light Processing Based Vat Polymerisation of Si3N4-Slurries Containing Different Dispersing AdditivesPresentation Vortrag22-Sep-2022
5Kutsch, Anna Lea ; Hofstetter, Christoph ; Stampfl, Jürgen Optimization of rheological properties of 3D printable ceramic inks for biomedical applicationsPräsentation Presentation2021
6Kutsch, Anna Lea ; Schwentenwein, Martin ; Hofstetter, Christoph ; Stampfl, Jürgen Lithography-based additive manufacturing of aluminaPräsentation Presentation2021
7Kutsch, Anna Lea ; Hofstetter, Christoph ; Schwentenwein, Martin ; Stampfl, Jürgen Lithography-Based Additive Manufacturing Of AluminaPräsentation Presentation2021
8Kutsch, Anna Lea ; Hofstetter, Christoph ; Baudis, Stefan ; Schwentenwein, Martin ; Stampfl, Jürgen Investigations on the rheology and deagglomeration of digital light processing based vat polymerisation of Si3N4 slurries containing different dispersing additivesPräsentation Presentation2021
9Kutsch, Anna Lea ; Schwentenwein, Martin ; Hofstetter, Christoph ; Stampfl, Jürgen Lithography-based additive manufacturing advancements of aluminaPräsentation Presentation2020
10Steinbauer, Patrick ; Orman, Sandra ; Hofstetter, Christoph ; Schwentenwein, Martin ; Russmüller, Günther ; Stampfl, Jürgen ; Liska, Robert ; Baudis, Stefan Biocompatible photopolymer scaffolds tailored for patient specific solutions for bone tissue regenerationKonferenzbeitrag Inproceedings2020
11Steinbauer, Patrick ; Orman, Sandra ; Hofstetter, Christoph ; Schwentenwein, Martin ; Russmüller, Günther ; Stampfl, Jürgen ; Liska, Robert ; Baudis, Stefan Patient-specific biocompatible polymer scaffolds for bone tissue regenerationKonferenzbeitrag Inproceedings2020
12Hofstetter, Christoph Entwicklung und medizintechnische Anwendung von Vinylester-basierten, biokompatiblen und bioabbaubaren PhotopolymerenThesis Hochschulschrift2019
13Reichsöllner, Raffael ; Orman, Sandra ; Hofstetter, Christoph ; Schwentenwein, Martin ; Russmüller, Günther ; Stampfl, Jürgen ; Liska, Robert ; Baudis, Stefan 3D-printed, tough and biocompatible photopolymers for in vivo bone tissue regenerationKonferenzbeitrag Inproceedings2019
14Steinbauer, Patrick ; Orman, Sandra ; Hofstetter, Christoph ; Schwentenwein, Martin ; Russmüller, Günther ; Stampfl, Jürgen ; Liska, Robert ; Baudis, Stefan Tough photopolymers as customized biocompatible scaffolds for bone tissue regenerationPräsentation Presentation2019
15Steinbauer, Patrick ; Orman, Sandra ; Hofstetter, Christoph ; Schwentenwein, Martin ; Russmüller, Günther ; Stampfl, Jürgen ; Liska, Robert ; Baudis, Stefan Tough photopolymers for bone tissue regenerationPräsentation Presentation2019
16Orman-2018-JOURNAL OF POLYMER SCIENCE-vor.pdf.jpgOrman, Sandra ; Hofstetter, Christoph ; Aksu, Adem ; Reinauer, Frank ; Liska, Robert ; Baudis, Stefan Toughness enhancers for bone scaffold materials based on biocompatible photopolymersArticle Artikel 16-Dec-2018
17Hofstetter, C. ; Orman, S. ; Baudis, S. ; Stampfl, J. Combining cure depth and cure degree, a new way to fully characterize novel photopolymersArtikel Article 2018
18Orman, Sandra ; Hofstetter, Christoph ; Reinauer, Frank ; Aksu, A ; Liska, Robert ; Baudis, Stefan PCL based toughness enhancers for photopolymer based bone substitutesKonferenzbeitrag Inproceedings2018
19Orman, Sandra ; Gorsche, Christian ; Hofstetter, Christoph ; Baudis, Stefan ; Stampfl, Jürgen ; Liska, Robert Biocompatible Photopolymers with Improved Impact Resistance for Additive ManufacturingKonferenzbeitrag Inproceedings2017
20Orman, Sandra ; Gorsche, Christian ; Hofstetter, Christoph ; Baudis, Stefan ; Stampfl, Jürgen ; Liska, Robert Photorheometer with RT-FTIR Coupling as Innovativ Tool to Assess Photopolymers for 3D PrintingKonferenzbeitrag Inproceedings2017

Results 1-1 of 1 (Search time: 0.002 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Rizk Adham - 2019 - Characterization and development of biocompatible and...pdf.jpgRizk, Adham Characterization and development of biocompatible and -degradable photopolymers for lithographybased additive manufacturingThesis Hochschulschrift 2019