Mechanical properties of gray and white matter brain tissue by indentation S Budday, R Nay, R De Rooij, P Steinmann, T Wyrobek, TC Ovaert, ... Journal of the mechanical behavior of biomedical materials 46, 318-330, 2015 | 725 | 2015 |
Mechanical characterization of human brain tissue S Budday, G Sommer, C Birkl, C Langkammer, J Haybaeck, J Kohnert, ... Acta biomaterialia 48, 319-340, 2017 | 612 | 2017 |
Hyperelastic models for rubber-like materials: consistent tangent operators and suitability for Treloar’s data P Steinmann, M Hossain, G Possart Archive of Applied Mechanics 82, 1183-1217, 2012 | 438 | 2012 |
Fifty shades of brain: a review on the mechanical testing and modeling of brain tissue S Budday, TC Ovaert, GA Holzapfel, P Steinmann, E Kuhl Archives of Computational Methods in Engineering 27, 1187-1230, 2020 | 402 | 2020 |
Physical biology of human brain development S Budday, P Steinmann, E Kuhl Frontiers in cellular neuroscience 9, 257, 2015 | 367 | 2015 |
A finite element method for the computational modelling of cohesive cracks J Mergheim, E Kuhl, P Steinmann International Journal for Numerical Methods in Engineering 63 (2), 276-289, 2005 | 308 | 2005 |
The role of mechanics during brain development S Budday, P Steinmann, E Kuhl Journal of the Mechanics and Physics of Solids 72, 75-92, 2014 | 263 | 2014 |
Brain stiffness increases with myelin content J Weickenmeier, R de Rooij, S Budday, P Steinmann, TC Ovaert, E Kuhl Acta biomaterialia 42, 265-272, 2016 | 261 | 2016 |
Application of material forces to hyperelastostatic fracture mechanics. I. Continuum mechanical setting P Steinmann International Journal of Solids and Structures 37 (48-50), 7371-7391, 2000 | 255 | 2000 |
Numerical modelling of non‐linear electroelasticity DK Vu, P Steinmann, G Possart International Journal for Numerical Methods in Engineering 70 (6), 685-704, 2007 | 250 | 2007 |
Aspects of computational homogenization at finite deformations: a unifying review from Reuss' to Voigt's bound S Saeb, P Steinmann, A Javili Applied Mechanics Reviews 68 (5), 050801, 2016 | 239 | 2016 |
Application of material forces to hyperelastostatic fracture mechanics. II. Computational setting P Steinmann, D Ackermann, FJ Barth International Journal of Solids and Structures 38 (32-33), 5509-5526, 2001 | 231 | 2001 |
A micropolar theory of finite deformation and finite rotation multiplicative elastoplasticity P Steinmann International Journal of Solids and Structures 31 (8), 1063-1084, 1994 | 225 | 1994 |
Frame‐indifferent beam finite elements based upon the geometrically exact beam theory P Betsch, P Steinmann International journal for numerical methods in engineering 54 (12), 1775-1788, 2002 | 220 | 2002 |
Thermomechanics of solids with lower-dimensional energetics: on the importance of surface, interface, and curve structures at the nanoscale. A unifying review A Javili, A McBride, P Steinmann Applied Mechanics Reviews 65 (1), 010802, 2013 | 216 | 2013 |
On the continuum formulation of higher gradient plasticity for single and polycrystals A Menzel, P Steinmann Journal of the Mechanics and Physics of Solids 48 (8), 1777-1796, 2000 | 216 | 2000 |
Geometrically nonlinear higher-gradient elasticity with energetic boundaries A Javili, F Dell'Isola, P Steinmann Journal of the Mechanics and Physics of Solids 61 (12), 2381-2401, 2013 | 206 | 2013 |
Views on multiplicative elastoplasticity and the continuum theory of dislocations P Steinmann International Journal of Engineering Science 34 (15), 1717-1735, 1996 | 198 | 1996 |
Rheological characterization of human brain tissue S Budday, G Sommer, J Haybaeck, P Steinmann, GA Holzapfel, E Kuhl Acta biomaterialia 60, 315-329, 2017 | 193 | 2017 |
Experimental study and numerical modelling of VHB 4910 polymer M Hossain, DK Vu, P Steinmann Computational Materials Science 59, 65-74, 2012 | 191 | 2012 |