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Philipp J. Thurner

Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics

Vienna

Austria

SCHOLARLY PAPERS

3

DOWNLOADS

196

TOTAL CITATIONS

0

Scholarly Papers (3)

1.

Collagen Fibril Tensile Response Described by a Nonlinear Maxwell Fluid Model

Number of pages: 26 Posted: 12 Oct 2021
Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics, TU Wien - Institute of Chemical Technologies and Analytics, Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics and Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics
Downloads 79 (809,932)

Abstract:

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Nonlinear, rheology, Collagen, tensile mechanics, Biomechanics

Nano-Ru-HKUST-1 enhanced PVA hydrogels: Laying the foundation for MOF-based cartilage tissue scaffolds

Number of pages: 26 Posted: 19 Dec 2025
AC2T research GmbH, Universidade de Aveiro, Danube University Krems - Department for Health Sciences, TU Wien, Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics, AC2T research GmbH, Vienna University of Technology, University for Continuing Education Krems, Universidade de Aveiro, Universidade de Aveiro and AC2T research GmbH
Downloads 39 (1,252,562)

Abstract:

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Metal-organic frameworks (MOFs)Ru-HKUST-1PVA hydrogelsComposite biomaterialsCartilage tissue engineeringCytocompatibility

Nano-Ru-HKUST-1 enhanced PVA hydrogels: Laying the foundation for MOF-based cartilage tissue scaffolds

Number of pages: 26 Posted: 03 Dec 2025
AC2T research GmbH, Universidade de Aveiro, Danube University Krems - Department for Health Sciences, TU Wien, Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics, AC2T research GmbH, Vienna University of Technology, University for Continuing Education Krems, Universidade de Aveiro, Universidade de Aveiro and AC2T research GmbH
Downloads 35 (1,281,607)

Abstract:

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Metal-organic frameworks (MOFs)Ru-HKUST-1PVA hydrogelsComposite biomaterialsCartilage tissue engineeringCytocompatibility

3.

A viscoelastic fibrin-gelatin hybrid hydrogel enables mechanically instructive in vitro tendon modelling

Number of pages: 29 Posted: 07 Mar 2026
Ghent University, TU Wien, TU Wien, TU Wien, Ghent University, University of Vienna - University of Applied Sciences Technikum Wien, Ghent University, University of Vienna - University of Applied Sciences Technikum Wien, Vienna University of Technology - Institute of Lightweight Design and Structural Biomechanics, Ghent University and Ghent University
Downloads 43 (1,157,785)

Abstract:

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In vitro tendon model, Hydrogels, Mechanostimulation, Tenocytes, Equine, gelNB