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Materials (Basel, Switzerland)|September 28, 2023
Characterization and Design of Three-Phase Particulate Composites: Microstructure-Free Finite Element Modeling vs. Analytical Micromechanics ModelsSebak Oli, Yunhua LuoJournal of Bone and Mineral Metabolism|January 10, 2021
On challenges in clinical assessment of hip fracture risk using image-based biomechanical modelling: a critical reviewYunhua LuoMaterials (Basel, Switzerland)|August 12, 2023
Finite Element Modeling of Microstructures in Composite Materials: A Special Issue in MaterialsYunhua LuoBioengineering (Basel, Switzerland)|August 29, 2024
Toward Fully Automated Personalized Orthopedic Treatments: Innovations and Interdisciplinary GapsYunhua LuoMaterials (Basel, Switzerland)|June 10, 2022
An Accuracy Comparison of Micromechanics Models of Particulate Composites against Microstructure-Free Finite Element ModelingYunhua LuoFrontiers in Endocrinology|March 19, 2025
Biomechanical perspectives on image-based hip fracture risk assessment: advances and challengesYunhua LuoMaterials (Basel, Switzerland)|August 26, 2022
Improved Voigt and Reuss Formulas with the Poisson EffectYunhua LuoBioengineering (Basel, Switzerland)|June 26, 2025
Hip Fractures: Clinical, Biomaterial and Biomechanical Insights into a Common Health ChallengeYunhua LuoBiomed Research International|August 1, 2017
Corrigendum to "Assessment of Hip Fracture Risk Using Cross-Section Strain Energy Determined by QCT-Based Finite Element Modeling"Hossein Kheirollahi, Yunhua LuoBiomed Research International|November 25, 2015
Assessment of Hip Fracture Risk Using Cross-Section Strain Energy Determined by QCT-Based Finite Element ModelingHossein Kheirollahi, Yunhua LuoPageof 5