Tomasz Lekszycki
Tomasz Lekszycki
Warsaw University of Technology, Warsaw Medical University, Warsaw, Poland
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Pantographic metamaterials: an example of mathematically driven design and of its technological challenges
F Dell’Isola, P Seppecher, JJ Alibert, T Lekszycki, R Grygoruk, ...
Continuum Mechanics and Thermodynamics 31, 851-884, 2019
Advances in pantographic structures: design, manufacturing, models, experiments and image analyses
F dell’Isola, P Seppecher, M Spagnuolo, E Barchiesi, F Hild, T Lekszycki, ...
Continuum Mechanics and Thermodynamics 31, 1231-1282, 2019
Designing a light fabric metamaterial being highly macroscopically tough under directional extension: first experimental evidence
F Dell’Isola, T Lekszycki, M Pawlikowski, R Grygoruk, L Greco
Zeitschrift für angewandte Mathematik und Physik 66, 3473-3498, 2015
A mixture model with evolving mass densities for describing synthesis and resorption phenomena in bones reconstructed with bio‐resorbable materials
T Lekszycki, F Dell'Isola
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2012
Gedanken experiments for the determination of two-dimensional linear second gradient elasticity coefficients
L Placidi, U Andreaus, AD Corte, T Lekszycki
Zeitschrift für angewandte Mathematik und Physik 66 (6), 3699-3725, 2015
A second gradient continuum model accounting for some effects of micro-structure on reconstructed bone remodelling
A Madeo, D George, T Lekszycki, M Nierenberger, Y Rémond
Comptes Rendus Mécanique 340 (8), 575-589, 2012
Numerical simulations of classical problems in two-dimensional (non) linear second gradient elasticity
U Andreaus, F Dell’Isola, I Giorgio, L Placidi, T Lekszycki, NL Rizzi
International Journal of Engineering Science 108, 34-50, 2016
A Ritz approach for the static analysis of planar pantographic structures modeled with nonlinear Euler–Bernoulli beams
U Andreaus, M Spagnuolo, T Lekszycki, SR Eugster
Continuum Mechanics and Thermodynamics 30, 1103-1123, 2018
A 2‐D continuum model of a mixture of bone tissue and bio‐resorbable material for simulating mass density redistribution under load slowly variable in time
U Andreaus, I Giorgio, T Lekszycki
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2014
Pantographic metamaterials show atypical Poynting effect reversal
A Misra, T Lekszycki, I Giorgio, G Ganzosch, WH Müller, F Dell'Isola
Mechanics Research Communications 89, 6-10, 2018
Viscous second gradient porous materials for bones reconstructed with bio-resorbable grafts
I Giorgio, U Andreaus, F Dell’Isola, T Lekszycki
Extreme Mechanics Letters 13, 141-147, 2017
On the effect of shear stiffness on the plane deformation of linear second gradient pantographic sheets
D Scerrato, IA Zhurba Eremeeva, T Lekszycki, NL Rizzi
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2016
A continuum model for the bio-mechanical interactions between living tissue and bio-resorbable graft after bone reconstructive surgery
A Madeo, T Lekszycki
Comptes Rendus Mécanique 339 (10), 625-640, 2011
Modelling of Bone Adaptation Based on an Optimal Response Hypothesis*
T Lekszycki
Meccanica 37, 343-354, 2002
On mechanically driven biological stimulus for bone remodeling as a diffusive phenomenon
I Giorgio, F Dell’Isola, U Andreaus, F Alzahrani, T Hayat, T Lekszycki
Biomechanics and modeling in mechanobiology 18, 1639-1663, 2019
Optimal design of viscoelastic structures under forced steady-state vibration
T Lekszycki, N Olhoff
Journal of Structural Mechanics 9 (4), 363-387, 1981
Quantitative analysis of deformation mechanisms in pantographic substructures: experiments and modeling
E Turco, A Misra, R Sarikaya, T Lekszycki
Continuum Mechanics and Thermodynamics 31, 209-223, 2019
Functional adaptation of bone as an optimal control problem
T Lekszycki
Journal of Theoretical and Applied Mechanics 43 (3), 555-574, 2005
Modelling and identification of viscoelastic properties of vibrating sandwich beams
T Lekszycki, N Olhoff, JJ Pedersen
Composite structures 22 (1), 15-31, 1992
The influence of different geometries of matrix/scaffold on the remodeling process of a bone and bioresorbable material mixture with voids
I Giorgio, U Andreaus, T Lekszycki, AD Corte
Mathematics and Mechanics of Solids 22 (5), 969-987, 2017
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