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Cited by in CrossRef
For: Atesok K, MacDonald P, Leiter J, Dubberley J, Satava R, VanHeest A, Hurwitz S, Marsh JL. Orthopaedic education in the era of surgical simulation: Still at the crawling stage. World J Orthop 2017; 8(4): 290-294 [PMID: 28473955 DOI: 10.5312/wjo.v8.i4.290]
URL: https://www.wjgnet.com/2218-5836/full/v8/i4/290.htm
Number Citing Articles
1
Luuk Theelen, Cheryll Bischoff, Bernd Grimm, Ide C. Heyligers. Current practice of orthopaedic surgical skills training raises performance of supervised residents in total knee arthroplasty to levels equal to those of orthopaedic surgeonsPerspectives on Medical Education 2018; 7(2): 126 doi: 10.1007/S40037-018-0408-Y
2
Kofi Dwirah Agyeman, Spencer H. Summers, Dustin H. Massel, Joelle Mouhanna, Amiethab Aiyer, Seth D. Dodds. Innovation in Orthopaedic Surgery Education: Novel Tools for Modern TimesJournal of the American Academy of Orthopaedic Surgeons 2020; 28(18): e782 doi: 10.5435/JAAOS-D-19-00411
3
Kieran J. Bennett, Parham Foroutan, Ella Fairweather, Rami M. A. Al‐Dirini, Sammuel A. Sobey, Nick Litchfield, Mark Roe, Karen J. Reynolds, John J. Costi, Mark Taylor. Development and validation of a biomechanically fidelic surgical training knee modelJournal of Orthopaedic Research 2024;  doi: 10.1002/jor.25873
4
Mads Emil Jacobsen, Amandus Gustafsson, Per Gorm Jørgensen, Yoon Soo Park, Lars Konge. Practicing Procedural Skills Is More Effective Than Basic Psychomotor Training in Knee Arthroscopy: A Randomized StudyOrthopaedic Journal of Sports Medicine 2021; 9(2): 232596712098512 doi: 10.1177/2325967120985129
5
Kivanc Atesok, Shepard Hurwitz, Donald D. Anderson, Richard Satava, Geb W. Thomas, Ted Tufescu, Michael J. Heffernan, Efstathios Papavassiliou, Steven Theiss, J. Lawrence Marsh. Advancing Simulation-Based Orthopaedic Surgical Skills Training: An Analysis of the Challenges to ImplementationAdvances in Orthopedics 2019; 2019: 1 doi: 10.1155/2019/2586034
6
Laith K Hasan, Aryan Haratian, Michael Kim, Ioanna K Bolia, Alexander E Weber, Frank A Petrigliano. Virtual Reality in Orthopedic Surgery TrainingAdvances in Medical Education and Practice 2021; : 1295 doi: 10.2147/AMEP.S321885
7
Chiedozie Kenneth Ugwoke, Domenico Albano, Nejc Umek, Ivo Dumić-Čule, Žiga Snoj. Application of Virtual Reality Systems in Bone Trauma ProceduresMedicina 2023; 59(3): 562 doi: 10.3390/medicina59030562
8
Kivanc Atesok, Richard M. Satava, J. Lawrence Marsh, Shepard R. Hurwitz. Measuring Surgical Skills in Simulation-based TrainingJournal of the American Academy of Orthopaedic Surgeons 2017; 25(10): 665 doi: 10.5435/JAAOS-D-16-00253
9
Steven Long, Geb W. Thomas, Matthew D. Karam, J. Lawrence Marsh, Donald D. Anderson. Surgical Skill Can be Objectively Measured From Fluoroscopic Images Using a Novel Image-based Decision Error Analysis (IDEA) ScoreClinical Orthopaedics & Related Research 2021; 479(6): 1386 doi: 10.1097/CORR.0000000000001623
10
Dominik D. Mattioli, Geb W. Thomas, Steven A. Long, Marcus Tatum, Donald D. Anderson. Minimally trained analysts can perform fast, objective assessment of orthopedic technical skill from fluoroscopic imagesIISE Transactions on Healthcare Systems Engineering 2022; 12(3): 212 doi: 10.1080/24725579.2022.2035022
11
Arash J. Sayari, Oscar Chen, Garrett K. Harada, Gregory D. Lopez. Success of Surgical Simulation in Orthopedic Training and Applications in Spine SurgeryClinical Spine Surgery: A Spine Publication 2021; 34(3): 82 doi: 10.1097/BSD.0000000000001070
12
Kayla Bradburn, Jay H. Patel, Lisa K. Cannada. Does orthopaedic resident efficiency improve with respect to decreased fluoroscopic times in tibial intramedullary nailing? A measure of an ACGME milestoneCurrent Orthopaedic Practice 2019; 30(2): 129 doi: 10.1097/BCO.0000000000000733
13
Christian Willy. Simulationstechniken in der Weiterbildung zum Orthopäden und UnfallchirurgenDer Unfallchirurg 2019; 122(6): 418 doi: 10.1007/s00113-019-0647-3