• Fourier transform-based method for quantifying the three-dimensional orientation distribution of fibrous units 

      Alberini, Riccardo; Spagnoli, Andrea; Sadeghinia, Mohammed Javad; Skallerud, Bjørn Helge; Terzano, Michele; Holzapfel, Gerhard (Peer reviewed; Journal article, 2024)
      Several materials and tissues are characterized by a microstructure composed of fibrous units embedded in a ground matrix. In this paper, a novel three-dimensional (3D) Fourier transform-based method for quantifying the ...
    • Poro-viscoelastic material parameter identification of brain tissue-mimicking hydrogels 

      Kainz, Manuel P.; Greiner, Alexander; Hinrichsen, Jan; Kolb, Dagmar; Comellas, Ester; Steinmann, Paul; Budday, Silvia; Terzano, Michele; Holzapfel, Gerhard (Peer reviewed; Journal article, 2023)
      Understanding and characterizing the mechanical and structural properties of brain tissue is essential for developing and calibrating reliable material models. Based on the Theory of Porous Media, a novel nonlinear ...