Ewa Spiesz
Cited by
Cited by
Tendon extracellular matrix damage, degradation and inflammation in response to in vitro overload exercise
EM Spiesz, CT Thorpe, S Chaudhry, GP Riley, HL Birch, PD Clegg, ...
Journal of Orthopaedic Research 33 (6), 889-897, 2015
The nanoscale architecture of force-bearing focal adhesions
H van Hoorn, R Harkes, EM Spiesz, C Storm, D van Noort, B Ladoux, ...
Nano letters 14 (8), 4257-4262, 2014
A quantitative collagen fibers orientation assessment using birefringence measurements: calibration and application to human osteons
EM Spiesz, W Kaminsky, PK Zysset
Journal of structural biology 176 (3), 302-306, 2011
Elastic anisotropy of uniaxial mineralized collagen fibers measured using two-directional indentation. Effects of hydration state and indentation depth
EM Spiesz, P Roschger, PK Zysset
Journal of the mechanical behavior of biomedical materials 12, 20-28, 2012
Computational and experimental methodology for site-matched investigations of the influence of mineral mass fraction and collagen orientation on the axial indentation modulus …
EM Spiesz, AG Reisinger, W Kaminsky, P Roschger, DH Pahr, PK Zysset
Journal of the mechanical behavior of biomedical materials 28, 195-205, 2013
Influence of mineralization and microporosity on tissue elasticity: experimental and numerical investigation on mineralized turkey leg tendons
EM Spiesz, P Roschger, PK Zysset
Calcified tissue international 90 (4), 319-329, 2012
Structure and collagen crimp patterns of functionally distinct equine tendons, revealed by quantitative polarised light microscopy (qPLM)
EM Spiesz, CT Thorpe, PJ Thurner, HRC Screen
Acta biomaterialia 70, 281-292, 2018
Science in brief: recent advances into understanding tendon function and injury risk
CT Thorpe, EM Spiesz, S Chaudhry, HRC Screen, PD Clegg
Equine veterinary journal 47 (2), 137-140, 2015
Molecular-based nonlinear viscoelastic chemomechanical model incorporating thermal denaturation kinetics of collagen fibrous biomaterials
A Mlyniec, KA Tomaszewski, EM Spiesz, T Uhl
Polymer degradation and stability 119, 87-95, 2015
An improved non-affine Arruda-Boyce type constitutive model for collagen networks
AR Cioroianu, EM Spiesz, C Storm
Biophysical Journal 104 (2), 511a, 2013
Creation of Conductive Graphene Materials by Bacterial Reduction Using Shewanella Oneidensis
BAE Lehner, VAEC Janssen, EM Spiesz, D Benz, SJJ Brouns, AS Meyer, ...
ChemistryOpen 8 (7), 888-895, 2019
Bioproduced Polymers Self-Assemble with Graphene Oxide into Nanocomposite Films with Enhanced Mechanical Performance
K Liang, EM Spiesz, DT Schmieden, AW Xu, AS Meyer, ME Aubin-Tam
ACS nano 14 (11), 14731-14739, 2020
Bacterially Produced, Nacre‐Inspired Composite Materials
EM Spiesz, DT Schmieden, AM Grande, K Liang, J Schwiedrzik, F Natalio, ...
Small, 1805312, 2019
Experimental validation of a mean filed model of mineralized collagen fiber arrays at two levels of hierarchy
EM Spiesz, AG Reisinger, P Roschger, PK Zysset
Journal of Mechanics in Medicine and Biology 14 (02), 1450013, 2014
Crumbling reefs and cold-water coral habitat loss in a future ocean: evidence of ‘coralporosis’ as an indicator of habitat integrity
S Hennige, U Wolfram, L Wickes, F Murray, JM Roberts, N Kamenos, ...
Frontiers in Marine Science 7, 668, 2020
Disorder, pre-stress and non-affinity in polymer 8-chain models
AR Cioroianu, EM Spiesz, C Storm
Journal of the Mechanics and Physics of Solids 89, 110-125, 2016
Structure–mechanics relationships in mineralized tendons
EM Spiesz, PK Zysset
Journal of the mechanical behavior of biomedical materials 52, 72-84, 2015
Three-dimensional Patterning of Engineered Biofilms with a Do-it-yourself Bioprinter.
EM Spiesz, K Yu, BAE Lehner, DT Schmieden, ME Aubin-Tam, AS Meyer
Journal of visualized experiments: JoVE, 2019
Energy storing and positional human tendons: mechanics and changes with ageing
D Patel, EM Spiesz, CT Thorpe, HL Birch, GP Riley, PD Clegg, ...
Experimental and computational micromechanics of mineralized tendon and bone
EM Spiesz
Ph. D. thesis, Vienna University of Technology, 2011
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Articles 1–20