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Karim Kandil
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Interlamellar-induced time-dependent response of intervertebral disc annulus: A microstructure-based chemo-viscoelastic model
K Kandil, F Zaïri, A Derrouiche, T Messager, F Zaïri
Acta biomaterialia 100, 75-91, 2019
292019
How osmoviscoelastic coupling affects recovery of cyclically compressed intervertebral disc
F Feki, R Taktak, K Kandil, A Derrouiche, M Moulart, N Haddar, F Zaïri, ...
Spine 45 (21), E1376-E1385, 2020
182020
A microstructure-based model for a full lamellar-interlamellar displacement and shear strain mapping inside human intervertebral disc core
K Kandil, F Zaïri, T Messager, F Zaïri
Computers in Biology and Medicine 135, 104629, 2021
132021
Interlamellar matrix governs human annulus fibrosus multiaxial behavior
K Kandil, F Zaïri, T Messager, F Zaïri
Scientific Reports 10 (1), 19292, 2020
122020
A novel bio-inspired hydrogel-based lattice structure to mechanically mimic human annulus fibrosus: A finite element study
K Kandil, SA Kaoua, A Mesbah, Y Voznyak, F Zaïri, F Zaïri
International Journal of Mechanical Sciences 211, 106775, 2021
92021
A microstructure-based modeling approach to assess aging-sensitive mechanics of human intervertebral disc
K Kandil, F Zaïri, T Messager, F Zaïri
Computer Methods and Programs in Biomedicine 200, 105890, 2021
92021
A microstructure-based mechanistic approach to detect degeneration effects on potential damage zones and morphology of young and old human intervertebral discs
K Kandil, F Zaïri, F Zaïri
Annals of Biomedical Engineering 51 (8), 1747-1758, 2023
22023
Modélisation multi-physique et multi-échelle des tissus mous stratifiés: application à la réponse multi-axiale du disque intervertébral humain
K Kandil
Université de Lille (2018-2021), 2020
2020
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Articles 1–8