Attia, T., Grynpas, M., & Willett, T. (2019). Ribose pre-treatment can protect the fatigue life of γ-irradiation sterilized bone Cell and Tissue Banking, 20, 287-295.
References
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Dapaah, D., Bahmani, A., Montesano, J., & Willett, T. L. (2019). A Continuum Damage Mechanics Model Of The Microdamage Process Zone During Cortical Bone Fracture Materials Today: Proceedings, 7, 402-409.
Bahmani, A., Li, G., Willett, T. L., & Montesano, J. (2019). Three-dimensional micromechanical assessment of bio-inspired composites with non-uniformly dispersed inclusions Composite Structures, 212, 484-499.
Bahmani, A., Comeau, P. A., Montesano, J., & Willett, T. L. (2019). Extrudable hydroxyapatite/plant oil-based biopolymer nanocomposites for biomedical applications: Mechanical testing and modeling Materials & Design, 174, 107790.
Bahmani, A., Li, G., Willett, T. L., & Montesano, J. (2019). Generating realistic representative microstructure of biomimetic composite materials for computational assessment of mechanical properties Materials Today: Proceedings, 7, 373-381.
Park, S. S.-H., Zhang, L., Attia, T., Salat, P., Banks, K., Willett, T., & Grynpas, M. (2019). Pre-clinical evaluation of bone allograft toughened with a novel sterilization method: An in vivo rabbit study Journal of Orthopaedic Research®, 37, 832-844.
Comeau, P., & Willett, T. (2019). An Alternative Approach to the Surface Methacrylation of Non-Stoichiometric Hydroxyapatite Nanoparticles for use in Bone-inspired Composites Frontiers in Materials, 6, 263.
Bahmani, A., Li, G., Willett, T. L., & Montesano, J. (2018). Three-dimensional microscopic assessment of randomly distributed representative volume elements for high fiber volume fraction unidirectional composites Composite Structures, 192, 153-164.
Comeau, P., & Willett, T. (2018). Impact of side chain polarity on non-stoichiometric nano-hydroxyapatite surface functionalization with amino acids Scientific Reports, 8, 1-11.
Burke, M., Akens, M., Kiss, A., Willett, T., & Whyne, C. (2018). Mechanical behavior of metastatic vertebrae are influenced by tissue architecture, mineral content, and organic feature alterations Journal of Orthopaedic Research®, 36, 3013-3022.