Optimal bone biopsy route to the proximal femur evaluated by computed tomography-based finite element modeling.
暂无分享,去创建一个
E. Itoi | N. Yamamoto | M. Hosaka | Y. Hagiwara | S. Hitachi | M. Watanuki | Kouu Hayashi | K. Hayashi | Munenori Watanuki
[1] Hiroaki Nakamura,et al. Exploration of the Optimal Shape for Bone Tumour Biopsy , 2019, AntiCancer Research.
[2] S. Ohtori,et al. Prediction of fracture load and stiffness of the proximal femur by CT-based specimen specific finite element analysis: cadaveric validation study , 2017, BMC Musculoskeletal Disorders.
[3] E. Gutierrez-Farewik,et al. Influence of muscle groups’ activation on proximal femoral growth tendency , 2017, Biomechanics and modeling in mechanobiology.
[4] Chuanbin Mao,et al. Assessment of fracture risk in proximal tibia with tumorous bone defects by a finite element method , 2017, Microscopy research and technique.
[5] B. Brigman,et al. The stability of the hip after the use of a proximal femoral endoprosthesis for oncological indications: ANALYSIS OF VARIABLES RELATING TO THE PATIENT AND THE SURGICAL TECHNIQUE , 2017, The bone & joint journal.
[6] E. Itoi,et al. Prediction of pathological fracture of the femoral shaft with an osteolytic lesion using a computed tomography-based nonlinear three-dimensional finite element method. , 2016, Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association.
[7] Sakae Tanaka,et al. Prediction of proximal femur strength by a quantitative computed tomography-based finite element method—Creation of predicted strength data of the proximal femur according to age range in a normal population , 2016, Modern rheumatology.
[8] M. Eid,et al. Extended curettage and adjuvant therapy for benign tumors of the talus. , 2015, Foot.
[9] W. Taylor,et al. European Society of Biomechanics S.M. Perren Award 2014: Safety factor of the proximal femur during gait: a population-based finite element study. , 2014, Journal of biomechanics.
[10] D. Amanatullah,et al. Torsional properties of distal femoral cortical defects. , 2014, Orthopedics.
[11] R. Grimer,et al. Aneurysmal Bone Cysts: Do Simple Treatments Work? , 2014, Clinical orthopaedics and related research.
[12] Aniruddh N. Nayak,et al. Biomechanical model of a high risk impending pathologic fracture of the femur: lesion creation based on clinically implemented scoring systems. , 2013, Clinical biomechanics.
[13] J. Bloem,et al. Bone and soft tissue tumors of hip and pelvis. , 2012, European journal of radiology.
[14] G. Spill,et al. Iliac Fracture After a Bone Marrow Biopsy , 2011, PM & R : the journal of injury, function, and rehabilitation.
[15] V. Gudnason,et al. Male-female differences in the association between incident hip fracture and proximal femoral strength: a finite element analysis study. , 2011, Bone.
[16] James G Wright,et al. Unicameral Bone Cysts: Comparison of Percutaneous Curettage, Steroid, and Autologous Bone Marrow Injections , 2011, Journal of pediatric orthopedics.
[17] R. Oakeshott,et al. Differences in hip morphology between the sexes in patients undergoing hip resurfacing , 2010, Journal of orthopaedic surgery and research.
[18] C. D. dos Remedios,et al. Anatomical study of the “trochanteric bursa” , 2003, Clinical anatomy.
[19] H. Skinner,et al. Prediction of femoral fracture load using automated finite element modeling. , 1997, Journal of biomechanics.
[20] H. Mankin,et al. The Hazards of the Biopsy, Revisited. For the Members of the Musculoskeletal Tumor Society* , 1996, The Journal of bone and joint surgery. American volume.
[21] S. Asnis,et al. Intracapsular fractures of the femoral neck. Results of cannulated screw fixation. , 1994, The Journal of bone and joint surgery. American volume.
[22] K. An,et al. Torsional strength reduction due to cortical defects in bone , 1990, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[23] L. S. Matthews,et al. The effect of biopsy-hole shape and size on bone strength. , 1977, The Journal of bone and joint surgery. American volume.
[24] A. Mirzaei,et al. Locking plate and fibular strut-graft augmentation in the reconstruction of unicameral bone cyst of proximal femur in the paediatric population , 2017, International Orthopaedics.
[25] F. Traina,et al. Current concepts in the biopsy of musculoskeletal tumors. , 2015, The Journal of bone and joint surgery. American volume.
[26] M. J. Gómez-Benito,et al. Multi-scale finite element model of growth plate damage during the development of slipped capital femoral epiphysis , 2015, Biomechanics and modeling in mechanobiology.
[27] B. Snyder,et al. Finite element analysis and CT-based structural rigidity analysis to assess failure load in bones with simulated lytic defects. , 2014, Bone.
[28] Patrick T. Liu,et al. Anatomically based guidelines for core needle biopsy of bone tumors: implications for limb-sparing surgery. , 2007, Radiographics : a review publication of the Radiological Society of North America, Inc.