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Physical Review. E|June 17, 2018
Thermodynamics and mechanics of stretch-induced crystallization in rubbersQiang Guo, Fahmi Zaïri, Xinglin GuoBiomechanics and Modeling in Mechanobiology|June 6, 2019
A chemo-mechanical model for osmo-inelastic effects in the annulus fibrosusAmil Derrouiche, Fahmi Zaïri, Fahed ZaïriAnnals of Biomedical Engineering|March 28, 2023
A Microstructure-Based Mechanistic Approach to Detect Degeneration Effects on Potential Damage Zones and Morphology of Young and Old Human Intervertebral DiscsKarim Kandil, Fahmi Zaïri, Fahed ZaïriComputers in Biology and Medicine|September 14, 2024
Comprehensive analysis of damage evolution in human annulus fibrosus: Numerical exploration of mechanical sensitivity to biological age-dependent alterationKarim Kandil, Fahmi Zaïri, Fahed ZaïriPolymers|July 2, 2021
In Situ Generation of Green Hybrid Nanofibrillar Polymer-Polymer Composites-A Novel Approach to the Triple Shape Memory Polymer FormationRamin Hosseinnezhad, Iurii Vozniak, Fahmi ZaïriActa Biomaterialia|October 20, 2024
A data-driven microstructure-based model for predicting circumferential behavior and failure in degenerated human annulus fibrosusAbderrahman Tamoud, Fahmi Zaïri, Fahed ZaïriActa Biomaterialia|October 3, 2025
A multiscale finite element model of fluid-microstructure interactions in human intervertebral disc compressionUgo Cachot, Karim Kandil, Fahmi Zaïri, et al.Biomechanics and Modeling in Mechanobiology|July 10, 2026
Microstructure-informed biphasic-osmotic modeling of intervertebral disc degenerationUgo Cachot, Karim Kandil, Fahmi Zaïri, et al.Scientific Reports|November 10, 2020
Interlamellar matrix governs human annulus fibrosus multiaxial behaviorKarim Kandil, Fahmi Zaïri, Tanguy Messager, et al.Computers in Biology and Medicine|July 18, 2021
A microstructure-based model for a full lamellar-interlamellar displacement and shear strain mapping inside human intervertebral disc coreKarim Kandil, Fahmi Zaïri, Tanguy Messager, et al.Pageof 3