Use of Nonlinear Finite Element Analysis of Bone Density to Investigate the Biomechanical Effect in the Bone around Intervertebral Cages in Posterior Lumbar Interbody Fusion
Sato T, st al. J. Biomedical Science and Engineering, 2017, Vol. 10, (No. 10), pp: 445-455.
Altered bone density and stress distribution patterns in long-standing cubitus varus deformity and their effect during early osteoarthritis of the elbow
Miyamura S, et al. Osteoarthritis Cartilage. 2018 Jan;26(1):72-83.
Effects of implant tilting and the loading direction on the displacement and micromotion of immediately loaded implants: an in vitro experiment and finite element analysis
Sugiura T, J Periodontal Implant Sci. 2017 Aug;47(4):251-262.
Comparison of Pedicle Screw Fixation Strength Among Different Transpedicular Trajectories: A Finite Element Study
Matsukawa K, et al. Clinical Spine Surgery. 2017 Aug;30(7):301-307.
The risk assessment of pathological fracture in the proximal femur using a CT-based finite element method
Kawabata Y, J Orthop Sci. 2017 Sep;22(5):931-937
Biomechanical Study of Vertebral Compression Fracture Using Finite Element Analysis
Takano H, et al. Journal of Applied Mathematics and Physics, 2017, 5, 953-965.
Prediction of damage formation in hip arthroplasties by finite element analysis using computed tomography images
Abdullah AH, et al. Medical Engineering & Physics. Volume 44, June 2017, Pages 8-15
Evaluation of Bone Atrophy After Treatment of Forearm Fracture Using Nonlinear Finite Element Analysis: A Comparative Study of Locking Plates and Conventional Plates
Matsuura Y, et al. J Hand Surg Am. 2017 Aug;42(8):659.e1-659.e9.
Tight medial knot tying may increase retearing risk after transosseous equivalent repair of rotator cuff tendon
Sano H, et al. Bio-Medical Materials and Engineering, vol. 28, no. 3, pp. 267-277, 2017