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For: Puvanesarajah V, Liauw JA, Lo SF, Lina IA, Witham TF. Techniques and accuracy of thoracolumbar pedicle screw placement. World J Orthop 2014; 5(2): 112-123 [PMID: 24829874 DOI: 10.5312/wjo.v5.i2.112]
URL: https://www.wjgnet.com/2218-5836/full/v5/i2/112.htm
Number Citing Articles
1
Igor PAREDES, Irene PANERO, Santiago CEPEDA, Ana M. CASTAÑO-LEON, Luis JIMENEZ-ROLDAN, Ángel PEREZ-NUÑEZ, Jose A. ALÉN, Alfonso LAGARES. Accuracy of percutaneous pedicle screws for thoracic and lumbar spine fractures compared with open techniqueJournal of Neurosurgical Sciences 2021; 65(1) doi: 10.23736/S0390-5616.18.04439-9
2
Sang-Min Park, Feng Shen, Ho-Joong Kim, Hyoungmin Kim, Bong-Soon Chang, Choon-Ki Lee, Jin S. Yeom. How Many Screws Are Necessary to Be Considered an Experienced Surgeon for Freehand Placement of Thoracolumbar Pedicle Screws?: Analysis Using the Cumulative Summation Test for Learning CurveWorld Neurosurgery 2018; 118: e550 doi: 10.1016/j.wneu.2018.06.236
3
Robert F Heary, Nitin Agarwal, Prateek Agarwal, Ira M Goldstein. Surgical Treatment With Thoracic Pedicle Screw Fixation of Vertebral Osteomyelitis With Long-Term Follow-upOperative Neurosurgery 2019; 17(5): 443 doi: 10.1093/ons/opy398
4
Kaissar Farah, Pierre Coudert, Thomas Graillon, Benjamin Blondel, Henry Dufour, Olivier Gille, Stephane Fuentes. Prospective Comparative Study in Spine Surgery Between O-Arm and Airo Systems: Efficacy and Radiation ExposureWorld Neurosurgery 2018; 118: e175 doi: 10.1016/j.wneu.2018.06.148
5
Arun-Kumar Kaliya-Perumal, Jiun-Ran Charng, Chi-Chien Niu, Tsung-Ting Tsai, Po-Liang Lai, Lih-Huei Chen, Wen-Jer Chen. Intraoperative electromyographic monitoring to optimize safe lumbar pedicle screw placement – a retrospective analysisBMC Musculoskeletal Disorders 2017; 18(1) doi: 10.1186/s12891-017-1594-1
6
Yingda Li, Andrew Kam. Handbook of Spine Technology2021; : 1029 doi: 10.1007/978-3-319-44424-6_89
7
Andrew Chan, Eric Parent, Karl Narvacan, Cindy San, Edmond Lou. Intraoperative image guidance compared with free-hand methods in adolescent idiopathic scoliosis posterior spinal surgery: a systematic review on screw-related complications and breach ratesThe Spine Journal 2017; 17(9): 1215 doi: 10.1016/j.spinee.2017.04.001
8
Nickul S. Jain, Raymond J. Hah. Handbook of Spine Technology2019; : 1 doi: 10.1007/978-3-319-33037-2_57-1
9
Yingda Li, Andrew Kam. Handbook of Spine Technology2020; : 1 doi: 10.1007/978-3-319-33037-2_89-1
10
Pawel Grabala, Ilkka J. Helenius, Piotr Kowalski, Michal Grabala, Slawomir Zacha, Jaroslaw M. Deszczynski, Tomasz Albrewczynski, Michael A. Galgano, Jacob M. Buchowski, Kelly Chamberlin, Suken A. Shah. The Child’s Age and the Size of the Curvature Do Not Affect the Accuracy of Screw Placement with the Free-Hand Technique in Spinal Deformities in Children and AdolescentsJournal of Clinical Medicine 2023; 12(12): 3954 doi: 10.3390/jcm12123954
11
Maurise Saur, Benjamin Guillard, Arnaud Collinet, Arthur Schmitz, Erik André Sauleau, Philippe Clavert, Guillaume Koch, Pierre Vidailhet, Victor Gasia, Yann Philippe Charles. Simulation on synthetic bone: A tool for teaching thoracolumbar pedicle screw placementOrthopaedics & Traumatology: Surgery & Research 2021; 107(8): 103056 doi: 10.1016/j.otsr.2021.103056
12
TSUNG-TING TSAI, YU-HUNG CHEN, CHAO-YAUG LIAO, HSIN-TZU LIN, MU-YI LIU, JIN-KAI CHEN, PO-LIANG LAI, CHING-LUNG TAI. BIOMECHANICAL STUDY OF PEDICLE SCREW FIXATION STRENGTH: ASSOCIATION OF SCREW MALPOSITION AND SCREW INSERTION TORQUEJournal of Mechanics in Medicine and Biology 2019; 19(02): 1940012 doi: 10.1142/S0219519419400128
13
Andrew Chan, Janelle Aguillon, Doug Hill, Edmond Lou. Precision and accuracy of consumer-grade motion tracking system for pedicle screw placement in pediatric spinal fusion surgeryMedical Engineering & Physics 2017; 46: 33 doi: 10.1016/j.medengphy.2017.05.003
14
Camilo A. Molina, Nicholas Theodore, A. Karim Ahmed, Erick M. Westbroek, Yigal Mirovsky, Ran Harel, Emanuele Orru’, Majid Khan, Timothy Witham, Daniel M. Sciubba. Augmented reality–assisted pedicle screw insertion: a cadaveric proof-of-concept studyJournal of Neurosurgery: Spine 2019; 31(1): 139 doi: 10.3171/2018.12.SPINE181142
15
Utkan Sevuk, Abdullah Mesut, Ilker Kiraz, Kaan Kose, Firat Ayaz, Aylin Erkul. Delayed Presentation of Aortic Injury by a Thoracic Pedicle ScrewJournal of Cardiac Surgery 2016; 31(4): 220 doi: 10.1111/jocs.12718
16
Bhavuk Garg, Manish Gupta, Menaka Singh, Dinesh Kalyanasundaram. Outcome and safety analysis of 3D-printed patient-specific pedicle screw jigs for complex spinal deformities: a comparative studyThe Spine Journal 2019; 19(1): 56 doi: 10.1016/j.spinee.2018.05.001
17
Luis E. Nuñez Alvarado. Handbook of Orthopaedic Trauma Implantology2023; : 1915 doi: 10.1007/978-981-19-7540-0_101
18
Hüseyin Doğu, Anas Abdallah. A novel guide device for pedicle screw insertion using three-dimensional preoperative planning in open lumbar spinal surgery: a comparative retrospective studyNeurological Research 2024; : 1 doi: 10.1080/01616412.2024.2328486
19
Andres Amarillo, Emilio Sanchez, Juan Caceres, Jon Oñativia. Collaborative Human–Robot Interaction Interface: Development for a Spinal Surgery Robotic AssistantInternational Journal of Social Robotics 2021; 13(6): 1473 doi: 10.1007/s12369-020-00733-x
20
Joel Kuhlmann, Tom Halvorsen. Precision Medicine: Integrating Medical Images, Design Tools and 3D Printing to Create Personalized Medical Solutions2018 IEEE International Symposium on Medical Measurements and Applications (MeMeA) 2018; : 1 doi: 10.1109/MeMeA.2018.8438798
21
Ananya Priya, Ravi Kant Narayan, Sanjib Kumar Ghosh, Pradosh Kumar Sarangi. Analysing lumbar pedicle morphometry observed via traditional and recent modalitiesJournal of Orthopaedics 2023; 43: 17 doi: 10.1016/j.jor.2023.07.022
22
Andrew Chan, Eric Parent, Edmond Lou. Reconstruction and positional accuracy of 3D ultrasound on vertebral phantoms for adolescent idiopathic scoliosis spinal surgeryInternational Journal of Computer Assisted Radiology and Surgery 2019; 14(3): 427 doi: 10.1007/s11548-018-1894-4
23
Shanhang Jia, Yuanzhi Weng, Kai Wang, Huan Qi, Yuhua Yang, Chi Ma, Weijia William Lu, Hao Wu. Performance evaluation of an AI-based preoperative planning software application for automatic selection of pedicle screws based on computed tomography imagesFrontiers in Surgery 2023; 10 doi: 10.3389/fsurg.2023.1247527
24
Chia-En Wong, Po-Hsuan Lee, Chien-Min Chen, Chi-Chen Huang, Hao-Hsiang Hsu, Liang-Yi Chen, Chih-Yuan Huang, Liang-Chao Wang, Jung-Shun Lee. Evaluation of the safety, radiographic and resident training results of thoracic pedicle screws placement using resection of the transverse processBritish Journal of Neurosurgery 2023; : 1 doi: 10.1080/02688697.2023.2211174
25
Jorge Alberto Pérez Terrazas, Daniel Sebastián Rivas Toledano, Arturo Rivera Galindo, Erick Frias Hernandez, Jaime Antonio Sanchez Sandoval, Gilberto Valadez Cabrera, Avelino Aguilar. RADICULAR SYMPTOMS ASSOCIATED WITH EXTRAPEDICULAR SCREW PLACEMENTColuna/Columna 2024; 23(1) doi: 10.1590/s1808-185120242301279978
26
Jiwon Kim, Jeremy Rajadurai, Wen Jie Choy, Lachlan Cassar, Kevin Phan, Leigh Harris, Meinrad Fiechter, Ralph J. Mobbs. Three-Dimensional Patient-Specific Guides for Intraoperative Navigation for Cortical Screw Trajectory Pedicle FixationWorld Neurosurgery 2019; 122: 674 doi: 10.1016/j.wneu.2018.11.159
27
Sugeng Supriadi, Paskal Rachman, Agung Shamsuddin Saragih, Yudan Whulanza, Ahmad Jabir Rahyussalim, Arsanto Triwidodo. Design, development, and finite element study on the novel biomimetic lumbosacroiliac prosthesisTHE 5TH BIOMEDICAL ENGINEERING’S RECENT PROGRESS IN BIOMATERIALS, DRUGS DEVELOPMENT, AND MEDICAL DEVICES: Proceedings of the 5th International Symposium of Biomedical Engineering (ISBE) 2020 2021; 2344: 050021 doi: 10.1063/5.0047182
28
Giuseppe La Rocca, Edoardo Mazzucchi, Fabrizio Pignotti, Luigi Aurelio Nasto, Gianluca Galieri, Pierluigi Rinaldi, Vincenzo De Santis, Enrico Pola, Giovanni Sabatino. Navigated, percutaneous, three-step technique for lumbar and sacral screw placement: a novel, minimally invasive, and maximally safe strategyJournal of Orthopaedics and Traumatology 2023; 24(1) doi: 10.1186/s10195-023-00696-5
29
Ismail Kaya, Ilker Deniz Cingöz, Meryem Cansu Şahin, Emirhan Bozoğlan. Investigation of the Effects of Three-Dimensional Modeling Techniques on Degenerative Rotoscoliosis SurgeryCureus 2021;  doi: 10.7759/cureus.13075
30
Jayanta Kumar Biswas, Tikeshwar Prasad Sahu, Masud Rana, Sandipan Roy, Santanu Kumar Karmakar, Santanu Majumder, Amit Roychowdhury. Design factors of lumbar pedicle screws under bending load: A finite element analysisBiocybernetics and Biomedical Engineering 2019; 39(1): 52 doi: 10.1016/j.bbe.2018.10.003
31
Eric Mandelka, Jula Gierse, Paul A. Gruetzner, Jochen Franke, Sven Y. Vetter. First Clinical Experience with a Novel 3D C-Arm-Based System for Navigated Percutaneous Thoracolumbar Pedicle Screw PlacementMedicina 2022; 58(8): 1111 doi: 10.3390/medicina58081111
32
Kun Liu, Qiang Zhang, Xin Li, Changsong Zhao, Xuemin Quan, Rugang Zhao, Zongfeng Chen, Yansheng Li. Preliminary application of a multi-level 3D printing drill guide template for pedicle screw placement in severe and rigid scoliosisEuropean Spine Journal 2017; 26(6): 1684 doi: 10.1007/s00586-016-4926-1
33
Giovanni Viroli, Alberto Ruffilli, Francesca Barile, Marco Manzetti, Matteo Traversari, Cesare Faldini. Pedicle Dysplasia in Proximal Thoracic Adolescent Idiopathic Scoliosis Curves: What are We Missing and What are its Possible Surgical Implications? An Observational Retrospective Study on 104 PatientsGlobal Spine Journal 2024;  doi: 10.1177/21925682241230964
34
Helton Luiz Aparecido Defino, Herton Rodrigo Tavares Costa, Leonardo Ribeiro Nascimento, Izabella Meirelles Guarato. USE OF THE uCentrum SYSTEM IN THE SURGICAL TREATMENT OF DISEASES OF THE VERTEBRAL SPINEColuna/Columna 2023; 22(1) doi: 10.1590/s1808-185120222201262504
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Hiroki Ohashi, Daichi Kawamura, Keisuke Hatano, So Ohashi, Satoru Tochigi, Akira Isoshima, Hiroyasu Nagashima, Katharina Otani, Kostadin Karagiozov, Satoshi Tani, Yuichi Murayama. Intraoperative Cone-Beam Computed Tomography Assessment of Spinal Pedicle Screws Placement Precision Is in Full Agreement with Postoperative Computed Tomography AssessmentWorld Neurosurgery 2023; 175: e254 doi: 10.1016/j.wneu.2023.03.062
36
Nathalie Pireau, Virginie Cordemans, Xavier Banse, Nadia Irda, Sébastien Lichtherte, Ludovic Kaminski. Radiation dose reduction in thoracic and lumbar spine instrumentation using navigation based on an intraoperative cone beam CT imaging system: a prospective randomized clinical trialEuropean Spine Journal 2017; 26(11): 2818 doi: 10.1007/s00586-017-5229-x
37
Significance of Prediction Techniques in Spinal Fusion Surgery2022 International Conference on Disruptive Technologies for Multi-Disciplinary Research and Applications (CENTCON) 2022; : 206 doi: 10.1109/CENTCON56610.2022.10051196
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Nicole Fares, Sarah Toner Levey, Cody Ashy, Ryan McFadden, William Barfield, Robert F. Murphy, Matthew A. Dow, Sara S. Van Nortwick. Intraoperative Radiation Exposure in Adolescent Idiopathic and Neuromuscular ScoliosisJournal of Pediatric Orthopaedics 2024; 44(1): e40 doi: 10.1097/BPO.0000000000002547
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W. Pepke, H. Almansour, R. Lafage, B. G. Diebo, B. Wiedenhöfer, F. Schwab, V. Lafage, M. Akbar. Cervical spine alignment following surgery for adolescent idiopathic scoliosis (AIS): a pre-to-post analysis of 81 patientsBMC Surgery 2019; 19(1) doi: 10.1186/s12893-019-0471-2
40
KrisB Siemionow, CraigW Forsthoefel, MichaelP Foy, Dominik Gawel, ChristianJ Luciano. Autonomous lumbar spine pedicle screw planning using machine learning: A validation studyJournal of Craniovertebral Junction and Spine 2021; 12(3): 223 doi: 10.4103/jcvjs.jcvjs_94_21
41
Giovanni F. Solitro, Farid Amirouche. Innovative approach in the development of computer assisted algorithm for spine pedicle screw placementMedical Engineering & Physics 2016; 38(4): 354 doi: 10.1016/j.medengphy.2016.01.005
42
KrisB Siemionow, KarinaM Katchko, Paul Lewicki, CristianJ Luciano. Augmented reality and artificial intelligence-assisted surgical navigation: Technique and cadaveric feasibility studyJournal of Craniovertebral Junction and Spine 2020; 11(2): 81 doi: 10.4103/jcvjs.JCVJS_48_20
43
Hai-Ming Jin, Xue-Qin Bai, Xiang-Xiang Pan, Jianwei Wu, Cong-Cong Wu, Ying-Zhao Yan, Ke Wang, Ai-Ming Wu, Xiang-Yang Wang. Does the Iliac Wing Influence L5 Pedicle Screw Fixation?World Neurosurgery 2018; 113: e302 doi: 10.1016/j.wneu.2018.02.011
44
Drake Ottacher, Andrew Chan, Eric Parent, Edmond Lou. Positional and Orientational Accuracy of 3-D Ultrasound Navigation System on Vertebral Phantom StudyIEEE Transactions on Instrumentation and Measurement 2020; 69(9): 6412 doi: 10.1109/TIM.2020.2973839
45
Taiqiu Chen, Wenjun Hu, Yan Peng, Yong Li, Jincheng Qiu, Xianjian Qiu, Pengfei Li, Shaoguang Li, Anjing Liang, Wenjie Gao, Dongsheng Huang. Evaluating bone quality and asymmetrical aplasia of the thoracic vertebral body in Lenke 1A adolescent idiopathic scoliosis using hounsfield unitsFrontiers in Surgery 2022; 9 doi: 10.3389/fsurg.2022.1028873
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Nitin Bhatia, Winnie A. Palispis, Timur Urakov, Jordan Gruskay, Justin Haghverdian, Daniel S. Yang, Jennifer Uong, Todd Albert, Alexander Vaccaro, Allan D. Levi, Ranjan Gupta. Establishing validity of the fundamentals of spinal surgery (FOSS) simulator as a teaching tool for orthopedic and neurosurgical traineesThe Spine Journal 2020; 20(4): 580 doi: 10.1016/j.spinee.2019.11.008
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Didik Librianto, Ifran Saleh, Fachrisal Ipang, Dina Aprilya. Freehand Pedicle Screw Insertion in Spondylitis Tuberculosis Kyphosis Correction Using Cantilever Method: A Breach Rate Analysis of 168 Consecutive ScrewsOrthopedic Research and Reviews 2022; : 17 doi: 10.2147/ORR.S349729
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L. Leitner, G. Bratschitsch, Patrick Sadoghi, G. Adelsmayr, P. Puchwein, A. Leithner, R. Radl. Navigation versus experience: providing training in accurate lumbar pedicle screw positioningArchives of Orthopaedic and Trauma Surgery 2019; 139(12): 1699 doi: 10.1007/s00402-019-03206-7
49
Nils Beisemann, Jula Gierse, Eric Mandelka, Frank Hassel, Paul A. Grützner, Jochen Franke, Sven Y. Vetter. Comparison of three imaging and navigation systems regarding accuracy of pedicle screw placement in a sawbone modelScientific Reports 2022; 12(1) doi: 10.1038/s41598-022-16709-y
50
Connor D. Berlin, Parantap Patel, Avery Buchholz. Treatment of Spine Disease in the Elderly2023; : 369 doi: 10.1007/978-3-031-12612-3_23
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Arun-Kumar Kaliya-Perumal, Tamara Soh, Mark Tan, Colum Patrick Nolan, Chun Sing Yu, Jacob Yoong-Leong Oh. Spinal Navigation during Orthopedic Residency Training: A Double-Edged Sword?Clinics in Orthopedic Surgery 2019; 11(2): 170 doi: 10.4055/cios.2019.11.2.170
52
Grzegorz Miekisiak, Piotr Kornas, Maciej Lekan, Wladyslaw Dacko, Dariusz Latka, Jacek Kaczmarczyk. Accuracy of the Free-hand Placement of Pedicle Screws in the Lumbosacral Spine Using a Universal Entry PointJournal of Spinal Disorders & Techniques 2015; 28(4): E194 doi: 10.1097/BSD.0000000000000243
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F. Perna, R. Borghi, F. Pilla, N. Stefanini, A. Mazzotti, M. Chehrassan. Pedicle screw insertion techniques: an update and review of the literatureMUSCULOSKELETAL SURGERY 2016; 100(3): 165 doi: 10.1007/s12306-016-0438-8
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A. Kuck, D. F. Stegeman, E. H. F. van Asseldonk. Modeling Trans-Spinal Direct Current Stimulation in the Presence of Spinal ImplantsIEEE Transactions on Neural Systems and Rehabilitation Engineering 2019; 27(5): 790 doi: 10.1109/TNSRE.2019.2900377
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Ruixuan Li, Ayoob Davoodi, Yuyu Cai, Kenan Niu, Gianni Borghesan, Nicola Cavalcanti, Aidana Massalimova, Fabio Carrillo, Christoph J. Laux, Mazda Farshad, Philipp Fürnstahl, Emmanuel Vander Poorten. Robot-assisted ultrasound reconstruction for spine surgery: from bench-top to pre-clinical studyInternational Journal of Computer Assisted Radiology and Surgery 2023; 18(9): 1613 doi: 10.1007/s11548-023-02932-z
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Samyuktha R. Melachuri, Manasa K. Melachuri, Amir Mina, Katherine Anetakis, Donald J. Crammond, Jeffrey R. Balzer, Varun Shandal, Parthasarathy D. Thirumala. Optimal “Low” Pedicle Screw Stimulation Threshold to Predict New Postoperative Lower-Extremity Neurologic Deficits During Lumbar Spinal FusionsWorld Neurosurgery 2021; 151: e250 doi: 10.1016/j.wneu.2021.04.022
57
Roshan Ramakrishna Naik, Anitha Hoblidar, Shyamasunder N. Bhat, Nishanth Ampar, Raghuraj Kundangar. A Hybrid 3D-2D Image Registration Framework for Pedicle Screw Trajectory Registration between Intraoperative X-ray Image and Preoperative CT ImageJournal of Imaging 2022; 8(7): 185 doi: 10.3390/jimaging8070185
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Bang-ping Qian, Yun-peng Zhang, Mu Qiao, Yong Qiu, Sai-hu Mao. Accuracy of Freehand Pedicle Screw Placement in Surgical Correction of Thoracolumbar Kyphosis Secondary to Ankylosing Spondylitis: A Computed Tomography Investigation of 2314 Consecutive ScrewsWorld Neurosurgery 2018; 116: e850 doi: 10.1016/j.wneu.2018.05.116
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Jing Guo, Chao Liu, Philippe Poignet. A Scaled Bilateral Teleoperation System for Robotic-Assisted Surgery with Time DelayJournal of Intelligent & Robotic Systems 2019; 95(1): 165 doi: 10.1007/s10846-018-0918-1
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Andrew Chan, Brendan Coutts, Eric Parent, Edmond Lou. Development and Evaluation of CT-to-3D Ultrasound Image Registration Algorithm in Vertebral Phantoms for Spine SurgeryAnnals of Biomedical Engineering 2021; 49(1): 310 doi: 10.1007/s10439-020-02546-5
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Maurise Saur, Benjamin Guillard, Arnaud Collinet, Arthur Schmitz, Erik André Sauleau, Philippe Clavert, Guillaume Koch, Pierre Vidailhet, Victor Gasia, Yann Philippe Charles. La simulation sur os synthétique : un outil pédagogique pour la formation à la visée pédiculaire thoracolombaireRevue de Chirurgie Orthopédique et Traumatologique 2021; 107(8): 980 doi: 10.1016/j.rcot.2021.09.012
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Paymon G. Rezaii, Arjun V. Pendharkar, Allen L. Ho, Eric S. Sussman, Anand Veeravagu, John K. Ratliff, Atman M. Desai. Conventional versus stereotactic image guided pedicle screw placement during spinal deformity correction: a retrospective propensity score-matched study of a national longitudinal databaseInternational Journal of Neuroscience 2021; 131(10): 953 doi: 10.1080/00207454.2020.1763343
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Ann Liu, Bowen Jiang, Nicholas Theodore. Use of robotics and novel technologies in spine surgery in elderly patientsSeminars in Spine Surgery 2020; 32(4): 100833 doi: 10.1016/j.semss.2020.100833
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Luis E. Nuñez Alvarado. Handbook of Orthopaedic Trauma Implantology2021; : 1 doi: 10.1007/978-981-15-6278-5_101-1
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Richard J. Mannion. Surgery of the Spine and Spinal Cord2016; : 415 doi: 10.1007/978-3-319-27613-7_26
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W. Pepke, H. Almansour, B. G. Diebo, M. Akbar. Correction of the spine with magnetically controlled growing rods in early onset scoliosisDer Orthopäde 2020; 49(12): 1086 doi: 10.1007/s00132-019-03801-x
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Gennadiy A. Katsevman, Raven D. Spencer, Scott D. Daffner, Sanjay Bhatia, Robert A. Marsh, John C. France, Shari Cui, Patricia Dekeseredy, Cara L. Sedney. Robotic-Navigated Percutaneous Pedicle Screw Placement Has Less Facet Joint Violation Than Fluoroscopy-Guided Percutaneous ScrewsWorld Neurosurgery 2021; 151: e731 doi: 10.1016/j.wneu.2021.04.117
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Arjun V. Pendharkar, Paymon G. Rezaii, Allen L. Ho, Eric S. Sussman, Anand Veeravagu, John K. Ratliff, Atman M. Desai. Conventional Versus Stereotactic Image-guided Pedicle Screw Placement During Posterior Lumbar FusionsSpine 2019; 44(21): E1272 doi: 10.1097/BRS.0000000000003130
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Nickul S. Jain, Raymond J. Hah. Handbook of Spine Technology2021; : 541 doi: 10.1007/978-3-319-44424-6_57
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Corey T. Walker, Jay D. Turner. Radiation Exposure in Scoliosis Surgery: Freehand Technique versus Image GuidanceWorld Neurosurgery 2015; 83(3): 282 doi: 10.1016/j.wneu.2015.01.004
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Rohan C. Vijayan, Tharindu S. De Silva, Runze Han, Ali Uneri, Sophia A. Doerr, Michael D. Ketcha, Alexander Perdomo-Pantoja, Nicholas Theodore, Jeffrey H. Siewerdsen, Baowei Fei, Cristian A. Linte. Automatic trajectory and instrument planning for robot-assisted spine surgeryMedical Imaging 2019: Image-Guided Procedures, Robotic Interventions, and Modeling 2019; : 1 doi: 10.1117/12.2513722
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S. P. Mohanty, S. N. Bhat, M. Pai Kanhangad, G. S. Gosal. Pedicle screw fixation in thoracolumbar and lumbar spine assisted by lateral fluoroscopic imaging: a study to evaluate the accuracy of screw placementMUSCULOSKELETAL SURGERY 2017;  doi: 10.1007/s12306-017-0498-4
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Mahmoud Ebrahim Eladl, Mostafa Abdel-Samie Rabee, Ahmed Mohammed Taha. Assessment of the Efficacy of Low-Density Pedicle Screw Construction Correction of Adolescent Idiopathic Scoliosis: A Prospective Single-Center StudyCureus 2023;  doi: 10.7759/cureus.48797
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Varun Puvanesarajah, Rabia Qureshi, Hamid Hassanzadeh. Lumbar Interbody Fusions2019; : 37 doi: 10.1016/B978-0-323-47663-8.00005-4
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Alexander Perdomo-Pantoja, Wataru Ishida, Corinna Zygourakis, Christina Holmes, Rajiv R. Iyer, Ethan Cottrill, Nicholas Theodore, Timothy F. Witham, Sheng-fu L. Lo. Accuracy of Current Techniques for Placement of Pedicle Screws in the Spine: A Comprehensive Systematic Review and Meta-Analysis of 51,161 ScrewsWorld Neurosurgery 2019; 126: 664 doi: 10.1016/j.wneu.2019.02.217
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Vikas Parmar, Yiping Li, Kutlauy Uluc, Daniel K. Resnick. Benzel's Spine Surgery, 2-Volume Set2017; : 729 doi: 10.1016/B978-0-323-40030-5.00085-X
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GABRIELA ESTEFANÍA DELGADO CABRERA, MARCELO GIACOMIN DA FONSECA, MAURO COSTA MORAIS TAVARES JUNIOR, RAPHAEL MARTUS MARCON, ALEXANDRE FOGAÇA CRISTANTE, OLAVO BIRAGHI LETAIF. TOMOGRAPHIC ANALYSIS OF C7, T1 AND T2 VERTEBRAE ANATOMY IN CHILDRENActa Ortopédica Brasileira 2021; 29(3): 153 doi: 10.1590/1413-785220212903238470
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Li Zhao, Chenguang Wan, Shuhong Han, Baofeng Li, Shaoyi Zheng. The study of distance changes between lumbar bi-cortical pedicle screws and anterior large vessels in patients with lumbar spondylolisthesisBMC Musculoskeletal Disorders 2021; 22(1) doi: 10.1186/s12891-021-04811-7
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William Clifton, Mark Pichelmann, Alexander Vlasak, Aaron Damon, Karim ReFaey, Eric Nottmeier. Investigation and Feasibility of Combined 3D Printed Thermoplastic Filament and Polymeric Foam to Simulate the Cortiocancellous Interface of Human VertebraeScientific Reports 2020; 10(1) doi: 10.1038/s41598-020-59993-2
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Talip ÇELİK, Çağatay TAŞDEMİRCİ, İbrahim MUTLU, Arif ÖZKAN. Pedikül Vidaları İçin PLA Malzeme Kullanımının Mukavemet Açısından DeğerlendirilmesiAfyon Kocatepe University Journal of Sciences and Engineering 2021; 21(4): 996 doi: 10.35414/akufemubid.892317
81
Ken Hsuan-kan Chang, David McCarthy, Michael Y. Wang. Essentials of Spinal Stabilization2017; : 251 doi: 10.1007/978-3-319-59713-3_21
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Virginie Cordemans, Ludovic Kaminski, Xavier Banse, Bernard G. Francq, Christine Detrembleur, Olivier Cartiaux. Pedicle screw insertion accuracy in terms of breach and reposition using a new intraoperative cone beam computed tomography imaging technique and evaluation of the factors associated with these parameters of accuracy: a series of 695 screwsEuropean Spine Journal 2017; 26(11): 2917 doi: 10.1007/s00586-017-5195-3
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R Vijayan, T De Silva, R Han, X Zhang, A Uneri, S Doerr, M Ketcha, A Perdomo-Pantoja, N Theodore, J H Siewerdsen. Automatic pedicle screw planning using atlas-based registration of anatomy and reference trajectoriesPhysics in Medicine & Biology 2019; 64(16): 165020 doi: 10.1088/1361-6560/ab2d66
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Qingjuan Duan, Zhijiang Du, Hongjian Yu, Yongfeng Wang, Wei Dong. Error Analysis and Experimental Study of a Bi-Planar Parallel Mechanism in a Pedicle Screw Robot SystemSensors 2016; 16(12): 2022 doi: 10.3390/s16122022
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Bo Jin, Yi-Bing Su, Ji-Zong Zhao. Three-dimensional Fluoroscopy-based Navigation for the Pedicle Screw Placement in Patients with Primary Invasive Spinal TumorsChinese Medical Journal 2016; 129(21): 2552 doi: 10.4103/0366-6999.192777
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