Reliable simulations of the human proximal femur by high-order finite element analysis validated by experimental observations Z Yosibash, N Trabelsi, C Milgrom Journal of biomechanics 40 (16), 3688-3699, 2007 | 245 | 2007 |
Patient-specific finite element analysis of the human femur—a double-blinded biomechanical validation N Trabelsi, Z Yosibash, C Wutte, P Augat, S Eberle Journal of biomechanics 44 (9), 1666-1672, 2011 | 170 | 2011 |
The finite cell method for bone simulations: verification and validation M Ruess, D Tal, N Trabelsi, Z Yosibash, E Rank Biomechanics and modeling in mechanobiology 11, 425-437, 2012 | 168 | 2012 |
Validation of subject-specific automated p-FE analysis of the proximal femur N Trabelsi, Z Yosibash, C Milgrom Journal of biomechanics 42 (3), 234-241, 2009 | 120 | 2009 |
Predicting the yield of the proximal femur using high-order finite-element analysis with inhomogeneous orthotropic material properties Z Yosibash, D Tal, N Trabelsi Philosophical Transactions of the Royal Society A: Mathematical, Physical …, 2010 | 97 | 2010 |
Pathological fracture risk assessment in patients with femoral metastases using CT-based finite element methods. A retrospective clinical study A Sternheim, O Giladi, Y Gortzak, M Drexler, M Salai, N Trabelsi, ... Bone 110, 215-220, 2018 | 87 | 2018 |
Patient-specific finite-element analyses of the proximal femur with orthotropic material properties validated by experiments N Trabelsi, Z Yosibash | 87 | 2011 |
Predicting the stiffness and strength of human femurs with real metastatic tumors Z Yosibash, RP Mayo, G Dahan, N Trabelsi, G Amir, C Milgrom Bone 69, 180-190, 2014 | 72 | 2014 |
Subject-specific p-FE analysis of the proximal femur utilizing micromechanics-based material properties Z Yosibash, N Trabelsi, C Hellmich International Journal for Multiscale Computational Engineering 6 (5), 2008 | 51 | 2008 |
Verified and validated finite element analyses of humeri G Dahan, N Trabelsi, O Safran, Z Yosibash Journal of Biomechanics 49 (7), 1094-1102, 2016 | 41 | 2016 |
Patient-specific FE analyses of metatarsal bones with inhomogeneous isotropic material properties N Trabelsi, C Milgrom, Z Yosibash Journal of the mechanical behavior of biomedical materials 29, 177-189, 2014 | 36 | 2014 |
When and where do patients with bone metastases actually break their femurs?: a CT-based finite element analysis A Sternheim, F Traub, N Trabelsi, S Dadia, Y Gortzak, N Snir, M Gorfine, ... The Bone & Joint Journal 102 (5), 638-645, 2020 | 23 | 2020 |
Finite element analyses for predicting anatomical neck fractures in the proximal humerus G Dahan, N Trabelsi, O Safran, Z Yosibash Clinical biomechanics 68, 114-121, 2019 | 22 | 2019 |
Automated bone segmentation in images Z YOSIBASH, N TRABELSI US Patent 11,449,993, 2022 | 18 | 2022 |
Autonomous FEs (AFE)-A stride toward personalized medicine Z Yosibash, K Myers, N Trabelsi, A Sternheim Computers & Mathematics with Applications 80 (11), 2417-2432, 2020 | 16 | 2020 |
Hip fracture risk assessment in elderly and diabetic patients: combining autonomous finite element analysis and machine learning Z Yosibash, N Trabelsi, I Buchnik, KW Myers, M Salai, I Eshed, Y Barash, ... Journal of Bone and Mineral Research, 1-11, 2023 | 12 | 2023 |
A computational investigation of equal channel angular pressing of molybdenum validated by experiments E Priel, B Mittelman, N Trabelsi, Y Cohen, Y Koptiar, R Padan Journal of Materials Processing Technology 264, 469-485, 2019 | 11 | 2019 |
Automated patient-specific method for biomechanical analysis of bone Z Yosibash, N Trabelsi, K Myers, C Milgrom US Patent 9,937,011, 2018 | 11 | 2018 |
Assessing hip fracture risk in type-2 diabetic patients using CT-based autonomous finite element methods: a feasibility study D Rotman, G Ariel, JR Lievano, H Schermann, N Trabelsi, M Salai, ... The Bone & Joint Journal 103 (9), 1497-1504, 2021 | 7 | 2021 |
Reliable patient-specific simulations of the femur Z Yosibash, N Trabelsi Patient-specific modeling in tomorrow's medicine, 3-26, 2011 | 7 | 2011 |