1 Adrian Elmi-Terander, "Surgical Navigation Technology Based on Augmented Reality and Integrated 3D Intraoperative Imaging" Ovid Technologies (Wolters Kluwer Health) 41 (41): E1303-E1311, 2016
2 Adrian Elmi-Terander, "Pedicle Screw Placement Using Augmented Reality Surgical Navigation With Intraoperative 3D Imaging" Ovid Technologies (Wolters Kluwer Health) 44 (44): 517-525, 2019
3 Adrian Elmi-Terander, "Feasibility and Accuracy of Thoracolumbar Minimally Invasive Pedicle Screw Placement With Augmented Reality Navigation Technology" Ovid Technologies (Wolters Kluwer Health) 43 (43): 1018-1023, 2018
4 Mark Graham, "Augmented reality in urban places: contested content and the duplicity of code" Wiley 38 (38): 464-479, 2013
5 Benish Fida, "Augmented reality in open surgery" Springer Science and Business Media LLC 70 (70): 389-400, 2018
6 H. S. Cho, "Augmented reality in bone tumour resection" British Editorial Society of Bone & Joint Surgery 6 (6): 137-143, 2017
7 Jang W. Yoon, "Augmented reality for the surgeon: Systematic review" Wiley 14 (14): E1914-, 2018
8 Jeffrey H. Shuhaiber, "Augmented Reality in Surgery" American Medical Association (AMA) 139 (139): 170-174, 2004
9 Daisuke Umebayashi, "Augmented Reality Visualization–guided Microscopic Spine Surgery" Ovid Technologies (Wolters Kluwer Health) 2 (2): e008-, 2018
10 Clifford R. Weiss, "Augmented Reality Visualization Using Image-Overlay for MR-Guided Interventions: System Description, Feasibility, and Initial Evaluation in a Spine Phantom" American Roentgen Ray Society 196 (196): W305-W307, 2011
1 Adrian Elmi-Terander, "Surgical Navigation Technology Based on Augmented Reality and Integrated 3D Intraoperative Imaging" Ovid Technologies (Wolters Kluwer Health) 41 (41): E1303-E1311, 2016
2 Adrian Elmi-Terander, "Pedicle Screw Placement Using Augmented Reality Surgical Navigation With Intraoperative 3D Imaging" Ovid Technologies (Wolters Kluwer Health) 44 (44): 517-525, 2019
3 Adrian Elmi-Terander, "Feasibility and Accuracy of Thoracolumbar Minimally Invasive Pedicle Screw Placement With Augmented Reality Navigation Technology" Ovid Technologies (Wolters Kluwer Health) 43 (43): 1018-1023, 2018
4 Mark Graham, "Augmented reality in urban places: contested content and the duplicity of code" Wiley 38 (38): 464-479, 2013
5 Benish Fida, "Augmented reality in open surgery" Springer Science and Business Media LLC 70 (70): 389-400, 2018
6 H. S. Cho, "Augmented reality in bone tumour resection" British Editorial Society of Bone & Joint Surgery 6 (6): 137-143, 2017
7 Jang W. Yoon, "Augmented reality for the surgeon: Systematic review" Wiley 14 (14): E1914-, 2018
8 Jeffrey H. Shuhaiber, "Augmented Reality in Surgery" American Medical Association (AMA) 139 (139): 170-174, 2004
9 Daisuke Umebayashi, "Augmented Reality Visualization–guided Microscopic Spine Surgery" Ovid Technologies (Wolters Kluwer Health) 2 (2): e008-, 2018
10 Clifford R. Weiss, "Augmented Reality Visualization Using Image-Overlay for MR-Guided Interventions: System Description, Feasibility, and Initial Evaluation in a Spine Phantom" American Roentgen Ray Society 196 (196): W305-W307, 2011
11 Scott D. Hodges, "Analysis of CT-based Navigation System for Pedicle Screw Placement" SLACK, Inc. 35 (35): e1221-e1224, 2012
12 Elias C. Papadopoulos, "Accuracy of single-time, multilevel registration in image-guided spinal surgery" Elsevier BV 5 (5): 263-267, 2005
13 Ma L, "3D Visualization and Augmented Reality for Orthopedics" 1093 : 193-205, 2018