CAOS 2018: Volume InformationCAOS 2018. The 18th Annual Meeting of the International Society for Computer Assisted Orthopaedic Surgery52 articles•251 pages•Published: July 12, 2018 PapersMatthew Banger, Philip Rowe, Lindsay Millar, Mark Blyth, Angus MacLean, Bryn Jones and Iona Donnelly 1-5 | Nima Befrui, Jens Elsner, Achim Flesser, Jacqueline Huvanandana, Oussama Jarrousse, Tuan Nam Le, Marcus Müller, Walther H. W. Schulze, Stefan Taing and Simon Weidert 6-11 | Yifei Dai, Michael Bolognesi, Samuel Wellman, Thorsten Seyler, Quanjun Cui, Yassaman Najmabadi, Charlotte Bolch and David Liu 12-15 | Yifei Dai, Guillaume Bras and Cyril Hamad 16-19 | Yifei Dai, Guillaume Bras and David Liu 20-23 | Yifei Dai, Quanjun Cui, Michael Bolognesi, Samuel Wellman, Thorsten Seyler, Yassaman Najmabadi, Charlotte Bolch and David Liu 24-27 | Yifei Dai, James Huddleston, Matt Rueff, Laurent Angibaud and Derek Amanatullah 28-31 | Yifei Dai, James Huddleston, Matt Rueff, Laurent Angibaud and Derek Amanatullah 32-35 | Yifei Dai, Matthew Peterson and Katharine Wurm 36-38 | Guillaume Dardenne, Jean-Philippe Pluchon, Aziliz Guezou-Philippe, Hoel Letissier, Chafiaa Hamitouche, Christian Lefèvre and Eric Stindel 39-42 | Zhiping Deng, Bin Li, Tao Jin, Qing Zhang, Lin Hao and Xiaohui Niu 43-45 | Hooman Esfandiari, Carolyn Anglin, Pierre Guy and Antony J. Hodgson 46-50 | Mingxing Fan, Yajun Liu and Wei Tian 51-55 | Yu Feng, Niu Xiao-Hui, Zhang Qing, Zhao Hai-Tao, Xu Li-Hui and Deng Zhi-Ping 56-63 | Zheng Guo, Hong-Bin Fan, Jun Fu, Xiao-Kang Li and Yu-Lin Hao 64-68 | Da He, Qiang Yuan, Lin Hu and Wei Tian 69-73 | Juliana Hsu, Maximilian C. M. Fischer, Kunihiko Tokunaga, Gildas Esnault and Klaus Radermacher 74-78 | Junlei Hu, Liyu Xu, Liao Wang and Xiaojun Chen 79-82 | Irwansyah Idram, Tseng Yu-Wen, Lai Jiing-Yih, Liao Chao-Yaug and Lee Pei-Yuan 83-86 | Hisham Iqbal and Ferdinando Rodriguez Y Baena 87-93 | Rens Janssens and Guoyan Zheng 94-97 | Branislav Jaramaz, Riddhit Mitra, Constantinos Nikou and Cynthia Kung 98-101 | Jean-Yves Jenny and Dominique Saragaglia 102-105 | Jean-Yves Jenny and Dominique Saragaglia 106-109 | Jean-Yves Jenny and Dominique Saragaglia 110-113 | Ata Jodeiri, Yoshito Otake, Reza A. Zoroofi, Yuta Hiasa, Masaki Takao, Keisuke Uemura, Nobuhiko Sugano and Yoshinobu Sato 114-118 | Wang Junqiang, Han Wei, Zhang Teng, Su Yonggang, Wu Xinbao and Wang Manyi 119-122 | Rahul Khare and Branislav Jaramaz 123-126 | Stephane Lavallee, Laurence van Beek, David Armand, Arnaud Pierre, John Sledge, Lou Jenis and Jérôme Tonetti 127-129 | Chunde Li, Longtao Qi and Yangyang Xu 130-133 | He Liu, Edouard Auvinet, Joshua Giles and Ferdinando Rodriguez Y Baena 134-138 | Satoshi Nakasone, Masato Ishihara, Hiroyuki Taira, Mika Takaesu, Shuko Chinen, Yoshihide Miyata and Fuminori Kanaya 139-141 | Xiaohui Niu, Yongkun Yang, Qing Zhang, Yuan Li, Hairong Xu and Weifeng Liu 142-151 | Olivia Paserin, Kishore Mulpuri, Anthony Cooper, Rafeef Abugharbieh and Antony J. Hodgson 152-156 | Itay Perets, John Walsh, Brian Mu, Yosif Mansor, Leslie Yuen and Benjamin Domb 157-162 | Katrien Plessers, Roel Wirix-Speetjens, Ilse Jonkers, Philippe Debeer and Jos Vander Sloten 163-167 | Xiao Qi, Nilay Vora, Luis Riera, Amrut Sarangi, George Youssef, Michael Vives and Ilker Hacihaliloglu 168-174 | Niamul Quader, Antony J. Hodgson, Kishore Mulpuri, Anthony Cooper, Emily Schaeffer and Rafeef Abugharbieh 175-178 | Shameem Sampath, Loren Cobb and Raoul P P P Grasman 179-182 | Shameem Sampath, Howard Ho and Min-Liang Wang 183-186 | Vasilii Shishkin and Valeriy Golubev 187-189 | Eun-Kyoo Song, Jong-Keun Seon and Won-Gyun Lee 190-192 | Yang Sun, Chungmin Chan and Xiaohui Niu 193-199 | Hao Tang, Yixin Zhou, Baojun Mai, Binjie Zhu, Ping Chen and Yujia Fu 200-207 | Xing-Guang Tao, Hui Liang, Fu-Gen Pan and Kai Hua Zhou 208-218 | Kunihiko Tokunaga, Juliana Hsu, Maximilian C. M. Fischer, Masashi Okamoto and Klaus Radermacher 219-222 | Ching Shiow Tseng, Dian Shiu Wu, Kuan-Chun Chen and Chih Ju Chang 223-226 | Mateo Villa, Guillaume Dardenne, Maged Nasan, Hoel Letissier, Chafiaa Hamitouche and Eric Stindel 227-230 | Han Wang, Yajun Liu, Mingxing Fan, Jile Jiang and Wei Tian 231-235 | Su-Hua Wu, Guo Zheng, Jian-Hua Chen and Sheng-Hai Wang 236-241 | Qiang Yuan, Jingye Wu, Yajun Liu, Yonggang Xing, Yong Zhang and Wei Tian 242-247 | Yu Zhang, Lei Qiu, Qing Zhang, Lihui Xu, Yujin Yao, Xiaohui Niu and Li Zhang 248-251 |
Keyphrases3D, 3D intraoperative, 3D print, 3D printing2, 3D surgical planning, 3D ultrasound, Accuracy3, AiKNOWN system, alignment accuracy, Android, anterior cruciate ligament, app, AR, Arthroplasty, Artificial Intelligence, Augmented Reality3, bi-cruciate retaining, Bone, Bone Reduction, Bone Segmentation, bone tumor, bony impingement, C-arm2, calibration, caos, CAOS enhanced mechanical instrument system, cartilage degeneration, catastrophe theory, chondromalacia, Clinical case series2, Communication Architecture, computer-assisted, Computer Assisted Navigation, Computer Assisted Navigation System, Computer-assisted orthopaedic surgery4, Computer Assisted Orthopedic Surgery., Computer-assisted technique, Computer-assisted total knee arthroplasty2, computer navigation2, computer simulation, conventional, Convolutional Neural Network2, Coronal alignment, Coronal deformation, cortical bone trajectory screw, CT, Cumulative sum control chart (CUSUM)2, cup alignment accuracy, cup orientation, Cusp Model, deep learning2, developmental dysplasia of the hip2, direct anterior approach THA, dislocation2, Distal radius malunion, endoscopic, Equivalence test, Exostosis, External Fixation, Fracture lines, Full-length radiograph, Fully Conventional Network, Gamification, guided surgery, HIP, image-free, imaging, Individualized Prosthesis, Inertial Measurement Unit, integrated system, Intraoperative CT Registration, Intraoperative knee laxity, iOS, Iso-C-C- arm navigation, joint, knee3, landmarking, learning curve2, Limb rotation, Limb Salvage Surgery, Localization, Long term survival3, low back pain, lower limb, machine learning, malignant pelvic tumor, measurement device, measurement on femur, Mesh overlapping, MIDLF, minimally invasive spine surgery, modelling, Multicolor 3D printing, Navigation8, navigation system, OA, Orthopaedic surgery, Orthopaedics, orthopedics, ORTHOPILOT, Osteoarthritis2, Osteoarthrosis, Osteochondroma, osteoid osteomas, Osteotomy Guide Plate, outcomes, Patient condition2, patient-reported outcomes, patient-specific, Patient-specific surgical guides, patient-specific THA, Pediatric orthopedics, pedicle screw2, Pelvic fracture, Pelvic sagittal inclination, pelvic tilt, pelvis fracture, Percutaneous technique, Peri-acetabular Tumor, Perioperative outcome, Personalized guide template, Pivot Shift Test, Point Registration, Pre-operative planning, preoperative planning, proximal femur2, Quads AR, radiofrequency ablation, Radiograph, range of motion3, Rapid Prototyping, RCT, reconstruction, registration, Reliability2, reverse shoulder arthroplasty, robot4, robot-assisted2, robot assisted surgery, Robot-assisted system, Robotic, Robotic-assisted surgery, Robotics2, S2 screw, Sacral dysmorphism, Safe Zone, screw, Screw Fixation, Segmentation3, Selection of the Registration Methods, sequential analysis, SI screw fixation, Single column resection, Soft-tissue balancing, spine3, Spine surgery2, standing position, stem orientation, Surgeon experience level, surgical accuracy, surgical assisted device, surgical navigation2, Surgical time, target zone2, template, THA2, total hip arthroplasty2, total knee argthroplasty, Total knee arthroplast, Total knee arthroplasty9, Transforaminal, UKA, Ultrasound3, upper cervical, upper cervical spine, validity, vibration, Vibroarthrography. |
|