Liu BL, Wang HZ, Zhang M, Li JW, Zhang NZ, Luan YC, Fang CH, Cheng CK. Capability of auxetic femoral stems to reduce stress shielding after total hip arthroplasty. Journal of Orthopaedic Translation, 2022, Accepted.
ShiQ, Wang H, He K, Tao M, Cheng C-K. Comparison of the morphology of the anterior cruciate ligament and related bony structures between pigs and humans. Frontiers in Veterinary Science, 2022, Accepted.
Wang H, Tao M, Shi Q, He K, Cheng C-K. Graft Diameter Should Reflect the Size of the Native Anterior Cruciate Ligament (ACL) to Improve the Outcome of ACL Reconstruction: A Finite Element Analysis. Bioengineering-Basel, 2022, 9, 507.
Luan Y, Zhang M, Ran T, Wang H, Fang C, Nie M, Wang M, Cheng C-K. Correlation between Component Alignment and Short-term Clinical Outcomes after Total Knee Arthroplasty. Frontiers in Surgery, 2022, 991476.
Cheng R, Wang H, Dimitriou D, Jiang Z, Cheng C-K, Tsai T-Y. Central femoral tunnel placement can reduce stress and strain around bone tunnels and graft more than anteromedial femoral tunnel in anterior cruciate ligament reconstruction. International Journal For Numerical Methods In Biomedical Engineering, 2022, e3590.
WangH, Zhang Z, Qu Y, Shi Q, Ai S, Cheng C-K. Correlation between ACL size and dimensions of bony structures in the knee joint. Annals of Anatomy-Anatomischer Anzeiger, 2022, 241:151906.
Fang CH, Cheng RS, Jiang J, Dimitriou D, Wang HZ, Jiang Z, Tsai T-Y, Cheng C-K. An Efficient Needleless Grasping Suture Technique for Graft Preparation in Anterior Cruciate Ligament Reconstruction. Frontiers in Surgery, 2022, 9.
ChengR, Wang H, Jiang Z, Dimitriou D, Cheng C-K, Tsai T-Y. The femoral tunnel drilling angle at 45° coronal and 45° sagittal provided the lowest peak stress and strain on the bone tunnels and anterior cruciate ligament graft. Frontiers in Bioengineering and Biotechnology, 2021, 9:797389.
Liu B, Wang H, Zhang N, Zhang M, Cheng CK. Femoral stems with porous lattice structures: a review. Frontiers in Bioengineering and Biotechnology, 2021, 9:772539.
Su J, Wang JJ, Yan ST, Zhang Min, Wang HZ, Zhang NZ, Luan YC, Cheng CK. In Vitro Analysis of Wearing of Hip Joint Prostheses Composed of Different Contact Materials. Materials, 2021, 14:
Qi XZ, Wang M, Zhang B, Nie MD, Ma XY, Wang HZ, Wang XH, Cheng CK, Zhang M. Association Between the Morphologyof Proximal Tibiofibular Joint and the Presence of Knee OA. Frontiers in Bioengineering and Biotechnology, 2020, 8:610763.
Wang H, Zhang M, Cheng CK. Changing the diameter ofthe bone tunnel is more effective than changing the tunnel shape for restoring joint functionality after ACL reconstruction. Frontiers in Bioengineering and Biotechnology, 2020, 8:173.
Wang H, Zhang M, Cheng C-K. A novel protection liner to improve graft-tunnel interaction following anterior cruciate ligament reconstruction: a finite element analysis. Journal of Orthopaedic Surgery and Research, 2020,15(1):1-10.
Wang H, Zhang B, Cheng C-K.Stiffness and shape of the ACL graft affects tunnel enlargement and graft wear. Knee Surgery Sports Traumatology Arthroscopy, 2019, 28(7):2184-2193.
Wang H, Kang H, Yao J, Cheng C-K, Woo SL-Y.Evaluation of a magnesium ring device for mechanical augmentation of a ruptured ACL: Finite element analysis. Clinical Biomechanics, 2019, 68:122-127.
Hu P, Wu T, Wang H, Qi X, Yao J, Cheng X, Chen W, Zhang Y.Biomechanical Comparison of Three Internal Fixation Techniques for Stabilizing Posterior Pelvic Ring Disruption: A 3D Finite Element Analysis. Orthopaedic Surgery, 2019, 11(2):195-203.
Hu P, Wu T, Wang H, Qi X, Yao J, Cheng X, Chen W, Zhang Y.Influence of Different Boundary Conditions in Finite Element Analysis on Pelvic Biomechanical Load Transmission. Orthopaedic Surgery, 2017, 9:115-122.