• Skip navigation
  • Skip to navigation
  • Skip to the bottom
Simulate organization breadcrumb open Simulate organization breadcrumb close
  • FAUTo the central FAU website
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
  3. Department Werkstoffwissenschaften
Suche öffnen
  • Deutsch
  • BPI
  • OMD
  • Department WW
  1. Friedrich-Alexander-Universität
  2. Technische Fakultät
  3. Department Werkstoffwissenschaften

Navigation Navigation close
  • LSP
  • team
    • professors
    • staff
    team
  • research
    • biomedical applications
      • biofabrication
      • ventricular assist device
      • silicone breast implants
    • (Nano-) composites and blends
      • biaxial stretching of particle filled films
      • conductive polymer composites
        • Recent results
      • morphology development and strain
    • melt spinning of polymer fibers
      • material modeling for process instabilities
      • molecular and rheological characterization
      • pilot plant melt spinning
      • meltblowing
      • characterisation of nonwovens
    • simulation
      • simulation 2020 news
      • simulation 2019
    • electro-spinning
    research
  • publications
    • Peer reviewed
    • Konferenzbeiträge
    • awards
    • Espinning code
    • DARC
    • ELSA
    publications
  • industry
    • contact for the industry
    • equipment
    industry
  • teaching
    • thesis at LSP
    • courses at the LSP
    • internal information
      • Booking system
      • Vacancies
      • Galery
    teaching
  • posts

LSP Institute of Polymer Materials

Prof. Dr. habil. Dirk W. Schubert

In page navigation: research
  • biomedical applications
    • biofabrication
    • ventricular assist device
    • silicone breast implants
    • ophthalmology
  • (Nano-) composites and blends
  • melt spinning of polymer fibers
  • simulation
  • electro-spinning

biofabrication

Stefan Schrüfer

Stefan Schrüfer, M. Sc.

Department of Materials Science and Engineering
Chair of Polymer Materials

Room: Room 1.91
Martensstr. 7
91058 Erlangen
  • Phone number: +49 9131 85-27733
  • Email: stefan.schruefer@fau.de
  • Website: http://www.lsp.uni-erlangen.de

High cell viability, good printing resolution and mechanically stable constructs are challenging goals that must be addressed to apply biofabrication processes for tissue regeneration applications. The objective of this project is to apply fiber-reinforced composite bioinks to overcome the issues of cell-harming shear forces upon printing on the one side, and the lack of shape fidelity and mechanical stability of the resulting constructs on the other side. Incorporation of fiber fragments is hypothesized to provide aligned supportive structures for cells and simultaneously increase the volume of plug flow with reduced shear forces on the cells. Furthermore, shape fidelity and mechanical strength should be improved using mechanically stable filler materials.

To quantify these effects and systematically describe the resulting material characteristics, viscoelastic models are applied to fit the measured. This potentially leads towards advanced material understanding and allowing predictability in the design of new bioinks with this transferable composite system.

 

Addition information

Institute of Polymer Materials
FAU Erlangen-Nuremberg

Martensstraße 7
91058 Erlangen
Germany
  • imprint
  • privacy
  • accessiblity
  • contact formular
  • Facebook FAU
  • Instagram WW
  • Twitter WW
Up