Full name Familienname, Vorname
Estermann, Sarah-Jane
 

Results 1-9 of 9 (Search time: 0.012 seconds).

PreviewAuthor(s)TitleTypeIssue Date
1Estermann, Sarah-Jane ; Pahr, Dieter H. ; Reisinger, Andreas Material design of soft biological tissue replicas using viscoelastic micromechanical modellingArtikel Article 2022
2Estermann Sarah-Jane - 2021 - Replicating liver tissue in terms of mechanical...pdf.jpgEstermann, Sarah-Jane Replicating liver tissue in terms of mechanical properties for anatomical modelsThesis Hochschulschrift 2021
3Estermann, Sarah-Jane ; Förster-Streffleur, Sophie ; Hirtler, Lena ; Streicher, Johannes ; Pahr, Dieter H. ; Reisinger, Andreas G. Viscoelastic properties of human liver: influence of Thiel preservation and comparison with animal tissuePräsentation Presentation2021
4Estermann, Sarah-Jane ; Pahr, Dieter H. ; Reisinger, Andreas Quantifying tactile properties of liver tissue, silicone elastomers, and a 3D printed polymer for manufacturing realistic organ modelsArtikel Article 2020
5Estermann, Sarah-Jane ; Pahr, Dieter H. ; Reisinger, Andreas Hyperelastic and viscoelastic characterization of hepatic tissue under uniaxial tension in time and frequency domainArtikel Article 2020
6Estermann, Sarah-Jane ; Scheiner, Stefan Multiscale Modeling Provides Differentiated Insights to Fluid Flow-Driven Stimulation of Bone Cellular ActivitiesKonferenzbeitrag Inproceedings2019
7Estermann, Sarah-Jane ; Müller-Guttenbrunn, Christian ; Pahr, Dieter H. ; Reisinger, Andreas G. Macroindentation of Liver Tissue and 3D Printing Materials for Comparison of Tactile PropertiesKonferenzbeitrag Inproceedings2019
8Estermann-2018-Frontiers in Physics-vor.pdf.jpgEstermann, Sarah-Jane ; Scheiner, Stefan Multiscale modeling provides differentiated insights to fluid flow-driven stimulation of bone cellular activitiesArticle Artikel 11-Sep-2018
9Estermann Sarah-Jane - 2017 - Investigation of fluid flow-induced stimulation of...pdf.jpgEstermann, Sarah-Jane Investigation of fluid flow-induced stimulation of osteocytes by means of micromechanics-inspired multiscale modelingThesis Hochschulschrift 2017