Association of atypical femoral fracture location and lower limb mechanical axis: a computed tomography-based finite element analysis
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[1] I. Jung,et al. Population-based, three-dimensional analysis of age- and sex-related femur shaft geometry differences , 2021, Osteoporosis International.
[2] O. Shon,et al. Clinical outcomes of using contralateral-side laterally bent intramedullary nails in atypical femur fractures with femoral bowing , 2020, Archives of Orthopaedic and Trauma Surgery.
[3] Young-Wook Park,et al. Atypical femoral neck fracture after prolonged bisphosphonate therapy , 2020, Journal of pathology and translational medicine.
[4] G. Rouhi,et al. Prediction of fracture risk of a distal femur reconstructed with bone cement: QCSRA, FEA, and in-vitro cadaver tests , 2020, Physical and Engineering Sciences in Medicine.
[5] W. B. Edwards,et al. The Role of Lower-Limb Geometry in the Pathophysiology of Atypical Femoral Fracture , 2019, Current Osteoporosis Reports.
[6] F. Rivadeneira,et al. Trabecular Bone Score and Hip Structural Analysis in Patients With Atypical Femur Fractures. , 2019, Journal of clinical densitometry : the official journal of the International Society for Clinical Densitometry.
[7] B. Min,et al. Incidence, risk factors, and fracture healing of atypical femoral fractures: a multicenter case-control study , 2018, Osteoporosis International.
[8] Jong Jin Lee,et al. A Comparison of the Accuracy of Different Single Plasma Sample Methods for Measuring Glomerular Filtration Rate Using 51Cr-EDTA in Children , 2018, Nuclear Medicine and Molecular Imaging.
[9] W. B. Edwards,et al. Influence of geometry on proximal femoral shaft strains: Implications for atypical femoral fracture. , 2018, Bone.
[10] T. Glück. Declining Prevalence of , 2017 .
[11] A. Okawa,et al. Location of atypical femoral fracture can be determined by tensile stress distribution influenced by femoral bowing and neck-shaft angle: a CT-based nonlinear finite element analysis model for the assessment of femoral shaft loading stress. , 2017, Injury.
[12] H. Minehara,et al. Surgical outcomes of intramedullary nailing for diaphyseal atypical femur fractures: is it safe to modify a nail entry in bowed femur? , 2017, Archives of Orthopaedic and Trauma Surgery.
[13] O. Shon,et al. Factors affecting fracture location in atypical femoral fractures: A cross-sectional study with 147 patients. , 2017, Injury.
[14] K. Yang,et al. Intramedullary Nailing for Atypical Femoral Fracture with Excessive Anterolateral Bowing , 2017, The Journal of bone and joint surgery. American volume.
[15] B. Mcgowan,et al. Identifying Incomplete Atypical Femoral Fractures With Single-Energy Absorptiometry: Declining Prevalence , 2017, Journal of the Endocrine Society.
[16] M. Yamazaki,et al. Location of fractures and the characteristics of patients with atypical femoral fractures: analyses of 38 Japanese cases , 2017, Journal of Bone and Mineral Metabolism.
[17] Jacques P. Brown,et al. Assessment of femur geometrical parameters using EOS™ imaging technology in patients with atypical femur fractures; preliminary results. , 2016, Bone.
[18] A. Okawa,et al. Potential pathogenic mechanism for stress fractures of the bowed femoral shaft in the elderly: Mechanical analysis by the CT-based finite element method. , 2014, Injury.
[19] N. Nagura,et al. The fracture sites of atypical femoral fractures are associated with the weight-bearing lower limb alignment. , 2014, Bone.
[20] T. Kwok,et al. The Correlation Between Lateral Bowing Angle of the Femur and the Location of Atypical Femur Fractures , 2014, Calcified Tissue International.
[21] A. Okawa,et al. Stress fracture of the bowed femoral shaft is another cause of atypical femoral fracture in elderly Japanese: a case series , 2014, Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association.
[22] Thomas D Brown,et al. Atypical Subtrochanteric and Diaphyseal Femoral Fractures: Second Report of a Task Force of the American Society for Bone and Mineral Research , 2011, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[23] M. Hongo,et al. Low-energy diaphyseal femoral fractures associated with bisphosphonate use and severe curved femur: a case series , 2012, Journal of Bone and Mineral Metabolism.
[24] Seoung-Joon Lee,et al. Measurement of the Weight-bearing Standing Coronal and Sagittal Axial Alignment of Lower Extremity in Young Korean Adults , 2011 .
[25] A. Heiner. Structural properties of fourth-generation composite femurs and tibias. , 2008, Journal of biomechanics.
[26] J. Zerwekh,et al. Severely suppressed bone turnover: a potential complication of alendronate therapy. , 2005, The Journal of clinical endocrinology and metabolism.
[27] J. O'Connor,et al. Strain distribution within the human femur due to physiological and simplified loading: Finite element analysis using the muscle standardized femur model , 2003, Proceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine.