For: | Herrera A, Ibarz E, Cegoñino J, Lobo-Escolar A, Puértolas S, López E, Mateo J, Gracia L. Applications of finite element simulation in orthopedic and trauma surgery. World J Orthop 2012; 3(4): 25-41 [PMID: 22550621 DOI: 10.5312/wjo.v3.i4.25] |
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URL: | https://www.wjgnet.com/2218-5836/full/v3/i4/25.htm |
Number | Citing Articles |
1 |
Ievgen Levadnyi, Jan Awrejcewicz, Yan Zhang, Yaodong Gu. Comparison of femur strain under different loading scenarios: Experimental testing. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 2021; 235(1): 17 doi: 10.1177/0954411920951033
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2 |
Qinying Yan, Shulin Shen, Yan Wang, Jiaqi Weng, Aiqun Wan, Gensheng Yang, Lili Feng. The Finite Element Analysis Research on Microneedle Design Strategy and Transdermal Drug Delivery System. Pharmaceutics 2022; 14(8): 1625 doi: 10.3390/pharmaceutics14081625
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3 |
Carmen Martínez-Aznar, Jesús Mateo, Elena Ibarz, Luis Gracia, Jorge Rosell, Sergio Puértolas. Biomechanical Behavior of Dynamic vs. Static Distal Locking Intramedullary Nails in Subtrochanteric Femur Fractures. Bioengineering 2023; 10(10): 1179 doi: 10.3390/bioengineering10101179
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4 |
N.S. Hennicke, D. Kluess, M. Sander. Influence of stem design parameters on periprosthetic femoral fractures examined by subject specific finite element analyses. Medical Engineering & Physics 2023; 119: 104032 doi: 10.1016/j.medengphy.2023.104032
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5 |
Navid Soltanihafshejani, Federica Peroni, Sara Toniutti, Thom Bitter, Esther Tanck, Florieke Eggermont, Nico Verdonschot, Dennis Janssen. Can an Isotropic Crushable Foam Model Predict Failure of a Whole Bone?. SSRN Electronic Journal 2022; doi: 10.2139/ssrn.4045921
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6 |
Félix Vílchez-Cavazos. Simuladores como instrumento educativo para residentes de ortopedia y traumatología. Ortho-tips 2024; 20(1): 4 doi: 10.35366/114209
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7 |
C. U. Jeong, S. -C. Lee, H. N. Rhee, K. S. Park, S. -H. Choi. Using a scale-bridging technique to determine the effect of elastic properties on stress distribution around the femoral stem of an artificial hip joint with a simplified geometry. Metals and Materials International 2014; 20(4): 593 doi: 10.1007/s12540-014-4003-4
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8 |
Umile Giuseppe Longo, Giovanna Stelitano, Giuseppe Salvatore, Vincenzo Candela, Calogero Di Naro, Laura Risi Ambrogioni, Farid Amirouche, Vincenzo Denaro. Orthopaedic Biomechanics in Sports Medicine. 2021; : 99 doi: 10.1007/978-3-030-81549-3_9
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9 |
Antonio Herrera, Sarai Rebollo, Elena Ibarz, Jesús Mateo, Sergio Gabarre, Luis Gracia. Mid-Term Study of Bone Remodeling After Femoral Cemented Stem Implantation: Comparison Between DXA and Finite Element Simulation. The Journal of Arthroplasty 2014; 29(1): 90 doi: 10.1016/j.arth.2013.03.028
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10 |
Ryan Lohre, Andrew Jawa. Translational Sports Medicine. 2023; : 57 doi: 10.1016/B978-0-323-91259-4.00072-2
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11 |
Zsuzsánna Incze-Bartha, Sandor Incze-Bartha, Zsuzsánna Simon Szabó, Andrei Marian Feier, Vlad Vunvulea, Ioan Alin Nechifor-Boilă, Ylenia Pastorello, Dezso Szasz, Lóránd Dénes. Finite Element Analysis of Normal and Dysplastic Hip Joints in Children. Journal of Personalized Medicine 2023; 13(11): 1593 doi: 10.3390/jpm13111593
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12 |
Connor Cross, Roman H. Khonsari, Dawid Larysz, David Johnson, Lars Kölby, Mehran Moazen. Predicting and comparing three corrective techniques for sagittal craniosynostosis. Scientific Reports 2021; 11(1) doi: 10.1038/s41598-021-00642-7
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13 |
Joshua E. Johnson, Phil Lee, Terence E. McIff, E. Bruce Toby, Kenneth J. Fischer. Computationally Efficient Magnetic Resonance Imaging Based Surface Contact Modeling as a Tool to Evaluate Joint Injuries and Outcomes of Surgical Interventions Compared to Finite Element Modeling. Journal of Biomechanical Engineering 2014; 136(4) doi: 10.1115/1.4026485
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14 |
Ian Manifacier, Jean-Louis Milan, Charlotte Jeanneau, Fanny Chmilewsky, Patrick Chabrand, Imad About, Daniel Bouvard. Computational Tension Mapping of Adherent Cells Based on Actin Imaging. PLOS ONE 2016; 11(1): e0146863 doi: 10.1371/journal.pone.0146863
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15 |
Betina B. Hinckel, Marco K. Demange, Riccardo G. Gobbi, José Ricardo Pécora, Gilberto Luis Camanho. The Effect of Mechanical Varus on Anterior Cruciate Ligament and Lateral Collateral Ligament Stress: Finite Element Analyses. Orthopedics 2016; 39(4) doi: 10.3928/01477447-20160421-02
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16 |
Aman Verma, Aakash Jain, Siddharth Sekhar Sethy, Vishal Verma, Nikhil Goyal, Madhubari Vathulya, Pankaj Kandwal. Finite element analysis and its application in Orthopaedics: A narrative review. Journal of Clinical Orthopaedics and Trauma 2024; 58: 102803 doi: 10.1016/j.jcot.2024.102803
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17 |
Dustin Draper, Nicolas Newell, Spyros Masouros, Steffen Peldschus. Multiscale Validation of Multiple Human Body Model Functional Spinal Units. Journal of Biomechanical Engineering 2021; 143(4) doi: 10.1115/1.4049332
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18 |
Saverio Affatato, Massimiliano Merola, Alessandro Ruggiero. Development of a Novel in Silico Model to Investigate the Influence of Radial Clearance on the Acetabular Cup Contact Pressure in Hip Implants. Materials 2018; 11(8): 1282 doi: 10.3390/ma11081282
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19 |
Vijay K Meena, Mohit Kumar, Amit Pundir, Suman Singh, Vijay Goni, Parveen Kalra, Ravindra K Sinha. Musculoskeletal-based finite element analysis of femur after total hip replacement. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 2016; 230(6): 553 doi: 10.1177/0954411916638381
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20 |
Seongmin Kim, Jiaxin Xu, Wenjie Shang, Zhihao Xu, Eungkyu Lee, Tengfei Luo. A review on machine learning-guided design of energy materials. Progress in Energy 2024; 6(4): 042005 doi: 10.1088/2516-1083/ad7220
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21 |
Kao-Shang Shih, Thanh An Truong, Ching-Chi Hsu, Sheng-Mou Hou. Biomechanical investigation of different surgical strategies for the treatment of rib fractures using a three-dimensional human respiratory model. Biomedical Engineering / Biomedizinische Technik 2017; 0(0) doi: 10.1515/bmt-2017-0072
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22 |
Victoria L. Volk, Landon D. Hamilton, Donald R. Hume, Kevin B. Shelburne, Clare K. Fitzpatrick. Integration of neural architecture within a finite element framework for improved neuromusculoskeletal modeling. Scientific Reports 2021; 11(1) doi: 10.1038/s41598-021-02298-9
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23 |
Qiaolin Zhang, István Bíró. Biomechanical Analysis and Modeling of Different Traction Patterns in Adolescent Idiopathic Scoliosis. Analecta Technica Szegedinensia 2024; 18(3): 88 doi: 10.14232/analecta.2024.3.88-100
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24 |
Massimo Franceschini, Luigi La Barbera, Alberto Anticonome, Claudia Ottardi, Atsuki Tanaka, Tomaso Villa. Periprosthetic femoral fractures in sideways fall configuration: comparative numerical analysis of the influence of femoral stem design. HIP International 2020; 30(2_suppl): 86 doi: 10.1177/1120700020971312
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25 |
Mahmoud Ahmed El-Desouky, Ayman Ali Saleh, Sherif Mamdouh Amr, Ahmed Samir Barakat. Finite element analysis modeling of plates versus intramedullary nails in closed comminuted midshaft tibial fractures. SICOT-J 2022; 8: 26 doi: 10.1051/sicotj/2022025
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26 |
Ampaiphan Atthapreyangkul, Mark Hoffman, Garth Pearce. Effect of geometrical structure variations on the viscoelastic and anisotropic behaviour of cortical bone using multi-scale finite element modelling. Journal of the Mechanical Behavior of Biomedical Materials 2021; 113: 104153 doi: 10.1016/j.jmbbm.2020.104153
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27 |
Roberto Yañez, Rony Silvestre, Matias Roby, Alejandro Neira, Camilo Azar, Samuel Madera, Alejandro Ortiz-Bernardin, Felipe P. Carpes, Carlos De la Fuente. Finite element graft stress for anteromedial portal, transtibial, and hybrid transtibial femoral drillings under anterior translation and medial rotation: an exploratory study. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-61061-y
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28 |
Navjot Kaur, Asiya Fatima, Harvinder Singh, Mannu Khanna, Chanjyot Walia, Harjoy Khatria. Displacement Pattern, Stress Distribution, and Archwire Play Dimensions during En-masse Retraction of Anterior Teeth using Sliding Mechanics: A FEM Study. International Journal of Clinical Pediatric Dentistry 2023; 15(6): 739 doi: 10.5005/jp-journals-10005-2463
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29 |
Symeon Naoum, Angelo V. Vasiliadis, Christos Koutserimpas, Nikolaos Mylonakis, Michail Kotsapas, Konstantinos Katakalos. Finite Element Method for the Evaluation of the Human Spine: A Literature Overview. Journal of Functional Biomaterials 2021; 12(3): 43 doi: 10.3390/jfb12030043
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30 |
Mohammad Atif, Nitesh Tewari, Manjari Reshikesh, Arnab Chanda, Vijay Prakash Mathur, Rahul Morankar. Methods and applications of finite element analysis in dental trauma research: A scoping review. Dental Traumatology 2024; 40(4): 366 doi: 10.1111/edt.12933
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31 |
Concetta Morino, Shea Middleton, Joost Op’t Eynde, Elizabeth Dimbath, Jason Kait, Jason Luck, Cameron Bass. Primary Creep Characterization in Porcine Lumbar Spine Subject to Repeated Loading. Annals of Biomedical Engineering 2024; doi: 10.1007/s10439-024-03557-2
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32 |
Guo-Xian Pei, Ya-Bo Yan. Current status and progress of digital orthopaedics in China. Journal of Orthopaedic Translation 2014; 2(3): 107 doi: 10.1016/j.jot.2014.05.001
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33 |
John Ashutosh Santoshi, Prateek Behera, Ravi Kumar Dwivedi, Ayush Srivastav. Mechanism of scaphoid waist fracture: finite element analysis. Journal of Hand Surgery (European Volume) 2023; 48(5): 426 doi: 10.1177/17531934221145516
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34 |
Navid Soltanihafshejani, Federica Peroni, Sara Toniutti, Thom Bitter, Esther Tanck, Florieke Eggermont, Nico Verdonschot, Dennis Janssen, Antonio Riveiro Rodríguez. The application of an isotropic crushable foam model to predict the femoral fracture risk. PLOS ONE 2023; 18(7): e0288776 doi: 10.1371/journal.pone.0288776
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35 |
Can Xu, Hua Liu, Mingqing Li, Chenggong Wang, Kanghua Li. A Three-Dimensional Finite Element Analysis of Displaced Intra-Articular Calcaneal Fractures. The Journal of Foot and Ankle Surgery 2017; 56(2): 319 doi: 10.1053/j.jfas.2016.09.018
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36 |
Adrian Łukaszewicz, Mateusz Kopec, Grzegorz Szczęsny, Zbigniew L Kowalewski. Characteristics of orthopaedic implants damage and mechanisms of its initiation. International Journal of Damage Mechanics 2023; doi: 10.1177/10567895231212329
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37 |
Roberto Yañez, Rony Silvestre, Matias Roby, Alejandro Neira, Samuel Madera, Carlos De la Fuente. Exploratory Anterior Cruciate Ligament Graft Stress during Medial Knee Rotation with and without Iliotibial Band–Intermuscular Septum Lateral Extra-Articular Tenodesis for Transtibial and Anteromedial Femoral Tunnels. Applied Sciences 2024; 14(12): 5160 doi: 10.3390/app14125160
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