For: | Shaharan S, Neary P. Evaluation of surgical training in the era of simulation. World J Gastrointest Endosc 2014; 6(9): 436-447 [PMID: 25228946 DOI: 10.4253/wjge.v6.i9.436] |
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URL: | https://www.wjgnet.com/1948-5190/full/v6/i9/436.htm |
Number | Citing Articles |
1 |
Anastasiadou Sofi a. CCrISP course-Care of critically Ill surgical patient: A critical educational evaluation of the curriculum. Archives of Otolaryngology and Rhinology 2019; 5(4): 107 doi: 10.17352/2455-1759.000110
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2 |
N. de Gregorio, F. Ebner. Abdominale Hysterektomie. Der Gynäkologe 2016; 49(12): 921 doi: 10.1007/s00129-016-3965-3
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3 |
Brittany Stott, Mark Driscoll. Face and content validity of analog surgical instruments on a novel physics-driven minimally invasive spinal fusion surgical simulator. Medical & Biological Engineering & Computing 2022; 60(10): 2771 doi: 10.1007/s11517-022-02635-8
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4 |
Luc Soler, Jacques Marescaux. Simulation Training: Fundamentals and Applications. 2016; : 95 doi: 10.1007/978-3-319-19914-6_5
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5 |
Randi Q. Mao, Lucy Lan, Jeffrey Kay, Ryan Lohre, Olufemi R. Ayeni, Danny P. Goel, Darren de SA. Immersive Virtual Reality for Surgical Training: A Systematic Review. Journal of Surgical Research 2021; 268: 40 doi: 10.1016/j.jss.2021.06.045
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6 |
Iain Roy, Zeeshan A. Sheikh. Evaluation and assessment of high fidelity burns simulation as part of a Plastic Surgery training day. Burns Open 2019; 3(1): 31 doi: 10.1016/j.burnso.2017.10.001
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7 |
Cléber G. Corrêa, Fátima L.S. Nunes, Edith Ranzini, Ricardo Nakamura, Romero Tori. Haptic interaction for needle insertion training in medical applications: The state-of-the-art. Medical Engineering & Physics 2019; 63: 6 doi: 10.1016/j.medengphy.2018.11.002
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8 |
Ujani Jahvani Reid, Daniel Maruszewski, Matthew Young, Chandra Shekhar Biyani, Atif Khan. Percutaneous Nephrostomy Insertion Training: An Overview. EMJ Radiology 2022; doi: 10.33590/emjradiol/21-00272
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9 |
Nuley Seo, Bader Alsaikhan, Bruce Gao, Melody Djuimo, Sylvia Koo, Shahob Hosseinpour, Brian Carrillo, Monica Farcas. A Novel Ureteroscopy Training Platform That Utilizes CT Urograms to Replicate Complex Renal Collecting System Anatomies. Journal of Endourology 2023; 37(8): 965 doi: 10.1089/end.2021.0163
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10 |
F. Boyd, M. A. Ledingham, W. Yao. Development of A Multi-Modality Navigational Based Training System for Fetoscopic Surgical Therapy. 2022 44th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC) 2022; : 637 doi: 10.1109/EMBC48229.2022.9871328
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11 |
Ravi Naik, Adrian Rubio-Solis, Kaizhe Jin, George Mylonas. Novel multimodal sensing and machine learning strategies to classify cognitive workload in laparoscopic surgery. European Journal of Surgical Oncology 2024; : 108735 doi: 10.1016/j.ejso.2024.108735
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12 |
William S. Yi, Armaun D. Rouhi, Caoimhe C. Duffy, Yazid K. Ghanem, Noel N. Williams, Kristoffel R. Dumon. A Systematic Review of Immersive Virtual Reality for Nontechnical Skills Training in Surgery. Journal of Surgical Education 2024; 81(1): 25 doi: 10.1016/j.jsurg.2023.11.012
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13 |
T K Pandian, Moustafa M El Khatib, Jad M Abdelsattar, David R Farley. Simulation for Endocrine Surgery Training: A Call to Action. International Journal of Endocrine Oncology 2016; 3(2): 109 doi: 10.2217/ije-2016-0003
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14 |
Giovanny Arbelaez-Garces, David Joseph, Mauricio Camargo, Nguyen Tran, Laure Morel. Contribution to the objective assessment of technical skills for surgery students: An accelerometer based approach. International Journal of Industrial Ergonomics 2018; 64: 79 doi: 10.1016/j.ergon.2017.12.002
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15 |
Nguyen Xuan Anh, Ramesh Mark Nataraja, Sunita Chauhan. Towards near real-time assessment of surgical skills: A comparison of feature extraction techniques. Computer Methods and Programs in Biomedicine 2020; 187: 105234 doi: 10.1016/j.cmpb.2019.105234
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16 |
M A Mohd Slim, R Hurley, M Lechner, T D Milner, S Okhovat. A systematic review of facial plastic surgery simulation training models. The Journal of Laryngology & Otology 2022; 136(3): 197 doi: 10.1017/S0022215121004151
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17 |
A. Aslam, G. J. Nason, S. K. Giri. Homemade laparoscopic surgical simulator: a cost-effective solution to the challenge of acquiring laparoscopic skills?. Irish Journal of Medical Science (1971 -) 2016; 185(4): 791 doi: 10.1007/s11845-015-1357-7
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18 |
George Whittaker, M Yousuf Salmasi, Abdullatif Aydin, Dimitris Magouliotis, Shahzad G Raja, George Asimakopoulos, Narain Moorjani, Thanos Athanasiou. Recommendations for the use of coronary and valve simulators in cardiac surgical training: a systematic review. European Journal of Cardio-Thoracic Surgery 2021; 61(1): 1 doi: 10.1093/ejcts/ezab350
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19 |
Peter Radonyi, Elyssebeth Leigh. Intersections in Simulation and Gaming. Lecture Notes in Computer Science 2018; 10711: 116 doi: 10.1007/978-3-319-78795-4_9
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20 |
Marco Amato, Ahmed Eissa, Stefano Puliatti, Cristian Secchi, Federica Ferraguti, Marco Minelli, Agostino Meneghini, Isotta Landi, Giulio Guarino, Maria Chiara Sighinolfi, Bernardo Rocco, Giampaolo Bianchi, Salvatore Micali. Feasibility of a telementoring approach as a practical training for transurethral enucleation of the benign prostatic hyperplasia using bipolar energy: a pilot study. World Journal of Urology 2021; 39(9): 3465 doi: 10.1007/s00345-021-03594-9
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21 |
Nicholas E Anton, Marian Obuseh, Chiho Lim, Haozhi Chen, Jing Yang, Dimitrios Stefanidis, Denny Yu. Nontechnical Skills Assessment in Acute Care Trauma Simulations: A Mixed Methods Approach Using Eye Tracking and Behavioral Marker Systems. Military Medicine 2024; 189(Supplement_3): 719 doi: 10.1093/milmed/usae240
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22 |
L. Heskin, C. Simms, O. Traynor, R. Galvin. Designing a synthetic simulator to teach open surgical skills for limb exploration in trauma: a qualitative study exploring the experiences and perspectives of educators and surgical trainees. BMC Surgery 2021; 21(1) doi: 10.1186/s12893-021-01417-7
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23 |
Matthew Young, Chris Lewis, Mithun Kailavasan, Lisa Satterthwaite, Oleg Safir, James Tomlinson, Chandra Shekhar Biyani. A systematic review of methodological principles and delivery of surgical simulation bootcamps. The American Journal of Surgery 2022; 223(6): 1079 doi: 10.1016/j.amjsurg.2021.10.044
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24 |
Amine Chellali, Helena Mentis, Amie Miller, Woojin Ahn, Venkata S. Arikatla, Ganesh Sankaranarayanan, Suvranu De, Steven D. Schwaitzberg, Caroline G.L. Cao. Achieving interface and environment fidelity in the Virtual Basic Laparoscopic Surgical Trainer. International Journal of Human-Computer Studies 2016; 96: 22 doi: 10.1016/j.ijhcs.2016.07.005
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25 |
Umar Shariff, Charalampos Seretis, Doreen Lee, Saba P. Balasubramanian. The role of multimedia in surgical skills training and assessment. The Surgeon 2016; 14(3): 150 doi: 10.1016/j.surge.2015.10.003
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26 |
Teng Wan, Kai Liu, Biao Li, Xudong Wang. Effectiveness of immersive virtual reality in orthognathic surgical education: A randomized controlled trial. Journal of Dental Education 2024; 88(1): 109 doi: 10.1002/jdd.13380
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27 |
Yasser A. Noureldin, Sero Andonian. Simulation for Percutaneous Renal Access: Where Are We?. Journal of Endourology 2017; 31(S1): S-10 doi: 10.1089/end.2016.0587
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28 |
George Whittaker, Ioana-Alexandra Ghita, Marcus Taylor, M. Yousuf Salmasi, Felice Granato, Thanos Athanasiou. Current Status of Simulation in Thoracic Surgical Training. The Annals of Thoracic Surgery 2023; 116(5): 1107 doi: 10.1016/j.athoracsur.2023.05.002
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29 |
Arbak Khachatryan, Artur Tevosyan, David Novoselskiy, Gevorg Arakelyan, Alexey Yushkevich, David Nazaretovich Nazarian. Microsurgery Manual for Medical Students and Residents. 2021; : 61 doi: 10.1007/978-3-030-73531-9_8
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30 |
Ferdinand Köckerling. What Is the Influence of Simulation-Based Training Courses, the Learning Curve, Supervision, and Surgeon Volume on the Outcome in Hernia Repair?—A Systematic Review. Frontiers in Surgery 2018; 5 doi: 10.3389/fsurg.2018.00057
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31 |
Moritz Queisner, Michael Pogorzhelskiy, Christopher Remde, Johann Pratschke, Igor M. Sauer. VolumetricOR: A New Approach to Simulate Surgical Interventions in Virtual Reality for Training and Education. Surgical Innovation 2022; 29(3): 406 doi: 10.1177/15533506211054240
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32 |
Henry B. Colaco, Katie Hughes, Eyiyemi Pearse, Magnus Arnander, Duncan Tennent. Construct Validity, Assessment of the Learning Curve, and Experience of Using a Low-Cost Arthroscopic Surgical Simulator. Journal of Surgical Education 2017; 74(1): 47 doi: 10.1016/j.jsurg.2016.07.006
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33 |
Ricardo Monteiro de Sá Barreto, Hermano Alexandre Lima Rocha, Glaydison Cesar de Oliveira Borges, Arnaldo Aires Peixoto Júnior, Luiz Gonzaga de Moura Júnior, Raquel Peixoto. Validação de um Programa de Treinamento Simulado de Habilidades Laparoscópicas por Residentes de Cirurgia. Revista Brasileira de Educação Médica 2019; 43(2): 106 doi: 10.1590/1981-52712015v43n2rb20180088
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34 |
Yuanyuan Feng, Christopher Wong, Adrian Park, Helena Mentis. Taxonomy of instructions given to residents in laparoscopic cholecystectomy. Surgical Endoscopy 2016; 30(3): 1073 doi: 10.1007/s00464-015-4300-0
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35 |
Jinhee Yoo, Eric A. Brownlee. Handbook of Research on Adult Learning in Higher Education. Advances in Higher Education and Professional Development 2020; : 633 doi: 10.4018/978-1-7998-1306-4.ch024
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36 |
G Chen, M Jiang, J Coles-Black, K Mansour, J Chuen, D Amott. Three-dimensional printing as a tool in otolaryngology training: a systematic review. The Journal of Laryngology & Otology 2020; 134(1): 14 doi: 10.1017/S0022215119002585
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37 |
Patrick Beyersdorffer, Wolfgang Kunert, Kai Jansen, Johanna Miller, Peter Wilhelm, Oliver Burgert, Andreas Kirschniak, Jens Rolinger. Detection of adverse events leading to inadvertent injury during laparoscopic cholecystectomy using convolutional neural networks. Biomedical Engineering / Biomedizinische Technik 2021; 66(4): 413 doi: 10.1515/bmt-2020-0106
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38 |
Grace M. Thiong’o, Thomas Looi, James T. Rutka, Abhaya V. Kulkarni, James M. Drake. Design and validation of a hemispherectomy simulator for neurosurgical education. Journal of Neurosurgery 2023; 138(1): 1 doi: 10.3171/2022.5.JNS22545
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39 |
Tobin Joseph. A step forward in surgical education?. International Journal of Surgery Oncology 2017; 2(8): e33 doi: 10.1097/IJ9.0000000000000033
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40 |
Paul G. McMenamin. Biomedical Visualisation. Advances in Experimental Medicine and Biology 2023; 1421: 39 doi: 10.1007/978-3-031-30379-1_3
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41 |
Yuan Gu, Lihua Xie, Xianzhe Huang, Chan Liu, Zhengxiao Ouyang, Liqin Yuan, Wenzhao Li. Light environment affects the efficiency of surgical suture training. BMC Medical Education 2024; 24(1) doi: 10.1186/s12909-024-05407-0
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42 |
Zhanlong Shen, Fan Yang, Pengji Gao, Li Zeng, Guanchao Jiang, Shan Wang, Yingjiang Ye, Fengxue Zhu. A Novel Clinical-Simulated Suture Education for Basic Surgical Skill: Suture on the Biological Tissue Fixed on Standardized Patient Evaluated with Objective Structured Assessment of Technical Skill (OSATS) Tools. Journal of Investigative Surgery 2018; 31(4): 333 doi: 10.1080/08941939.2017.1319994
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43 |
Surekha Rathod, Dhanashree Ghoderao, Vrinda Kolte, Nilima Budhraja. Simulation-based surgical skill training in internship program. SRM Journal of Research in Dental Sciences 2019; 10(3): 135 doi: 10.4103/srmjrds.srmjrds_45_19
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44 |
Jens Rolinger, Nils Model, Kai Jansen, Madeleine Knöll, Patrick Beyersdorffer, Wolfgang Kunert, Steffen Axt, Andreas Kirschniak, Peter Wilhelm. Quantification of electrosurgery-related critical events during laparoscopic cholecystectomy – a prospective experimental study among surgical novices. 4open 2022; 5: 4 doi: 10.1051/fopen/2022001
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45 |
Tanay Bapna, John Valles, Samantha Leng, Maurizio Pacilli, Ramesh Mark Nataraja. Eye‐tracking in surgery: a systematic review. ANZ Journal of Surgery 2023; 93(11): 2600 doi: 10.1111/ans.18686
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46 |
Aoife Feeley, Iain Feeley, Khalid Merghani, Eoin Sheehan. A pilot study to evaluate the face & construct validity of an orthopaedic virtual reality simulator. Injury 2021; 52(7): 1715 doi: 10.1016/j.injury.2021.04.045
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47 |
Joseph R. Esparaz, Ryan T. Nierstedt, Breanna M. Elger, Victor W. Chan, Chadrick R. Evans, Shannon D. Egli, Nicole M. Tobin, Richard H. Pearl. Trauma Teams That Train as One Work as One: Invasive Procedure Training in Residency Education. Journal of Surgical Research 2020; 254: 142 doi: 10.1016/j.jss.2020.04.007
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48 |
Soumya Mukherjee, James Meacock, Eleanor Kissane, Debasish Pal. Factors relating to working hours restriction that have impacted the professional identity of trainees in the last decade. British Journal of Hospital Medicine 2021; 82(3): 1 doi: 10.12968/hmed.2020.0355
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49 |
Abebe Bekele, Sahlu Wondimu, Naod Firdu, Mulat Taye, Amezene Tadesse. Trends in Retention and Decay of Basic Surgical Skills: Evidence from Addis Ababa University, Ethiopia: A Prospective Case–Control Cohort Study. World Journal of Surgery 2019; 43(1): 9 doi: 10.1007/s00268-018-4752-1
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50 |
Marcelo Esteves Chaves Campos, Marcelo Magaldi Ribeiro de Oliveira, Lilian Bambirra de Assis, Augusto Barbosa Reis, Flávio Bambirra Gonçalves. Validation of the Objective Structured Assessment of Technical Skill in Brasil. Revista da Associação Médica Brasileira 2020; 66(3): 328 doi: 10.1590/1806-9282.66.3.328
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51 |
Tobias Fritz, Niklas Stachel, Benedikt J. Braun. Evidence in surgical training – a review. Innovative Surgical Sciences 2019; 4(1): 7 doi: 10.1515/iss-2018-0026
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52 |
Yijia Zheng, Kaile Wang, Kai Zhang, Jian An, Junjie Wu, Zhiheng Feng, Chunlan Liu, Jianliu Wang, Qun Lu, Jue Zhang. A Training Simulator for Fractional Dilation and Curettage With Visualized Force-Position Feedback and Quantitative Evaluation. Obstetrics & Gynecology 2021; 138(1): 100 doi: 10.1097/AOG.0000000000004443
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53 |
Milosz Kostusiak, Michael Hart, Damiano Giuseppe Barone, Riikka Hofmann, Ramez Kirollos, Thomas Santarius, Rikin Trivedi. Methodological shortcomings in the literature evaluating the role and applications of 3D training for surgical trainees. Medical Teacher 2017; 39(11): 1168 doi: 10.1080/0142159X.2017.1362102
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Travis Healey, Todd C. Peterson, Jessica Healey, Mouhanad M. El-Othmani, Khaled J. Saleh. Improving Operating Room Efficiency, Part 2: Intraoperative and Postoperative Strategies. JBJS Reviews 2015; 3(10) doi: 10.2106/JBJS.RVW.N.00110
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Alicia A. Heelan Gladden, Kendra D. Conzen, Michael J. Benge, Jane Gralla, Peter T. Kennealey. A Vascular Anastomosis Simulation Can Provide a Safe and Effective Environment for Resident Skills Development. Journal of Surgical Education 2018; 75(5): 1367 doi: 10.1016/j.jsurg.2018.03.005
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56 |
Aoran Peng, John Ostrander, Noriana Radwan, Elizabeth Starkey, Scarlett Miller, Jason Moore. Low-Cost Haptic Force Needle Insertion Simulator With Advanced Personalized Learning System. Proceedings of the International Symposium on Human Factors and Ergonomics in Health Care 2021; 10(1): 114 doi: 10.1177/2327857921101113
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57 |
Shazrinizam Shaharan, Donncha M Ryan, Paul C Neary. Motion Tracking and Gesture Recognition. 2017; doi: 10.5772/intechopen.68850
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58 |
Wenjia Peng, Yuan Xing, Ruida Liu, Jinhua Li, Zemin Zhang. An automatic skill evaluation framework for robotic surgery training. The International Journal of Medical Robotics and Computer Assisted Surgery 2019; 15(1) doi: 10.1002/rcs.1964
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59 |
Marcelo Esteves Chaves Campos, Marcelo Magaldi Ribeiro de Oliveira, Augusto Barbosa Reis, Lilian Bambirra de Assis, Viacheslav Iremashvili. Development and validation a task-specific checklist for a microsurgical varicocelectomy simulation model. International braz j urol 2020; 46(5): 796 doi: 10.1590/s1677-5538.ibju.2019.0571
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