1,336
Views
53
CrossRef citations to date
0
Altmetric
Research Article

Computer-assisted planning and navigation improves cutting accuracy during simulated bone tumor surgery of the pelvis

, , , , &
Pages 19-26 | Received 24 May 2012, Accepted 14 Oct 2012, Published online: 26 Nov 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Se-Ho Lim, Yeon-Ho Kim, Moon-Key Kim, Woong Nam & Sang-Hoon Kang. (2016) Validation of a fibula graft cutting guide for mandibular reconstruction: experiment with rapid prototyping mandible model. Computer Assisted Surgery 21:1, pages 9-17.
Read now

Articles from other publishers (52)

Jian Dai, Tiange Liu, Drew A. Torigian, Yubing Tong, Shiwei Han, Pengju Nie, Jing Zhang, Ran Li, Fei Xie & Jayaram K. Udupa. (2024) GA-Net: A geographical attention neural network for the segmentation of body torso tissue composition. Medical Image Analysis 91, pages 102987.
Crossref
Alessandro Bruschi, Davide Maria Donati & Claudia Di Bella. (2023) What to choose in bone tumour resections? Patient specific instrumentation versus surgical navigation: a systematic review. Journal of Bone Oncology, pages 100503.
Crossref
Zhiping Deng, Qing Zhang, Lin Hao, Yi Ding, Xiaohui Niu & Weifeng Liu. (2023) Accuracy of bony resection under computer-assisted navigation for bone sarcomas around the knee. World Journal of Surgical Oncology 21:1.
Crossref
Peng Sun, Yao Zhao, Jie Men, Zhe-Ru Ma, Hao-Zhuo Jiang, Cheng-Yan Liu & Wei Feng. (2023) Application of Virtual and Augmented Reality Technology in Hip Surgery: Systematic Review. Journal of Medical Internet Research 25, pages e37599.
Crossref
Thomas R. F. van Steenbergen, Han Nijsink, Thomas G. E. Eggen, Dennis Janssen, Maroeska M. Rovers, Ingrid C. M. van der Geest & J. J. Fütterer. (2022) The accuracy of navigated versus freehand curettage in bone tumors: a cadaveric model study. International Journal of Computer Assisted Radiology and Surgery 18:4, pages 775-783.
Crossref
Michele Boffano, Alessandro Aprato & Raimondo Piana. 2022. 3D Printing in Bone Surgery. 3D Printing in Bone Surgery 1 12 .
Martin Schulze, Georg Gosheger, Sebastian Bockholt, Marieke De Vaal, Tymo Budny, Max Tönnemann, Jan Pützler, Albert Schulze Bövingloh, Robert Rischen, Vincent Hofbauer, Timo Lübben, Niklas Deventer & Helmut Ahrens. (2021) Complex Bone Tumors of the Trunk—The Role of 3D Printing and Navigation in Tumor Orthopedics: A Case Series and Review of the Literature. Journal of Personalized Medicine 11:6, pages 517.
Crossref
Dongze Zhu, Jun Fu, Ling Wang, Zheng Guo, Zhen Wang & Hongbin Fan. (2021) Reconstruction with customized, 3D-printed prosthesis after resection of periacetabular Ewing’s sarcoma in children using "triradiate cartilage-based" surgical strategy:a technical note. Journal of Orthopaedic Translation 28, pages 108-117.
Crossref
Amir Sternheim, Dani Rotman, Prakash Nayak, Michelle Arkhangorodsky, Michael J. Daly, Jonathan C. Irish, Peter C. Ferguson & Jay S. Wunder. (2021) Computer-assisted surgical planning of complex bone tumor resections improves negative margin outcomes in a sawbones model. International Journal of Computer Assisted Radiology and Surgery 16:4, pages 695-701.
Crossref
Marcus J. Brookes, Corey D. Chan, Bence Baljer, Sachin Wimalagunaratna, Timothy P. Crowley, Maniram Ragbir, Alistair Irwin, Zakareya Gamie, Thomas Beckingsale, Kanishka M. Ghosh & Kenneth S. Rankin. (2021) Surgical Advances in Osteosarcoma. Cancers 13:3, pages 388.
Crossref
Robert Allan McCulloch, Tommaso Frisoni, Vineet Kurunskal, Davide Maria Donati & Lee Jeys. (2021) Computer Navigation and 3D Printing in the Surgical Management of Bone Sarcoma. Cells 10:2, pages 195.
Crossref
David M. Joyce. 2021. Surgery of Pelvic Bone Tumors. Surgery of Pelvic Bone Tumors 135 153 .
Sarah C. Tepper, Alan T. Blank, Steven Gitelis & Matthew W. Colman. (2020) Pelvic ring reconstruction with segmental spinal instrumentation after complete type I pelvic resection. Journal of Surgical Oncology 122:8, pages 1721-1730.
Crossref
Timo Stübig, Henning Windhagen, Christian Krettek & Max Ettinger. (2020) Computer-Assisted Orthopedic and Trauma Surgery. Deutsches Ärzteblatt international.
Crossref
Matthew A. Siegel, Tessa Balach, Kyle R. Sweeney, Lukas M. Nystrom & Matthew W. Colman. (2020) Sacroiliac joint cut accuracy: Comparing new technologies in an idealized sawbones model. Journal of Surgical Oncology 122:6, pages 1218-1225.
Crossref
Yu Zhang, Qing Zhang, Leisheng Zhong, Lei Qiu, Lihui Xu, Yang Sun, Xiaohui Niu & Li Zhang. (2020) New perspectives on surgical accuracy analysis of image-guided bone tumour resection surgery. International Orthopaedics 44:5, pages 987-994.
Crossref
J. G. Gerbers & P. C. Jutte. 2020. Surgery of the Pelvic and Sacral Tumor. Surgery of the Pelvic and Sacral Tumor 121 129 .
Bernard G. Francq, Dan Lin & Walter Hoyer. (2019) Confidence, prediction, and tolerance in linear mixed models. Statistics in Medicine 38:30, pages 5603-5622.
Crossref
Stephan H Wirth, Stefan Rahm, Atul F Kamath, Claudio Dora & Patrick O Zingg. (2019) Periacetabular osteotomy using three-dimensional cutting and reposition guides: a cadaveric study. Journal of Hip Preservation Surgery 6:4, pages 411-420.
Crossref
R. NandraG. MatharuJ. StevensonM. ParryR. GrimerL. Jeys. (2019) Long-term outcomes after an initial experience of computer-navigated resection of primary pelvic and sacral bone tumours. The Bone & Joint Journal 101-B:4, pages 484-490.
Crossref
Bin Liu, Wenpeng Liu, Song Zhang, Mingzhe Wang, Yiqian Yang, Xiaohui Zhang, Wen Qi & Xiaofeng Qu. (2019) An automatic personalized internal fixation plate modeling framework for minimally invasive long bone fracture surgery based on pre-registration with maximum common subgraph strategy. Computer-Aided Design 107, pages 1-11.
Crossref
Miroslav Trajanovic, Milica Tufegdzic & Stojanka Arsic. (2018) Obtaining patient-specific point model of the human ilium bone in the case of incomplete volumetric data using the method of parametric regions. Australasian Physical & Engineering Sciences in Medicine 41:4, pages 931-944.
Crossref
Shinya Hayashi, Shingo Hashimoto, Tomoyuki Matsumoto, Koji Takayama, Nao Shibanuma, Kazunari Ishida, Kotaro Nishida & Ryosuke Kuroda. (2018) Computer-assisted surgery prevents complications during peri-acetabular osteotomy. International Orthopaedics 42:11, pages 2555-2561.
Crossref
Vishaal Nanik Thadani, Muhammad Jahangir Riaz & Gurpal Singh. (2018) The evolution of three-dimensional technology in musculoskeletal oncology. Journal of Clinical Orthopaedics and Trauma 9:3, pages 269-274.
Crossref
Amir Sternheim, Aidin Kashigar, Michael Daly, Harley Chan, Jimmy Qiu, Robert Weersink, David Jaffray, Jonathan C. Irish, Peter C. Ferguson & Jay S. Wunder. (2018) Cone-Beam Computed Tomography-Guided Navigation in Complex Osteotomies Improves Accuracy at All Competence Levels. Journal of Bone and Joint Surgery 100:10, pages e67.
Crossref
Guy Vernon Morris, Jonathan D. Stevenson, Scott Evans, Michael C. Parry & Lee Jeys. (2018) Navigation in Musculoskeletal Oncology: An Overview. Indian Journal of Orthopaedics 52:1, pages 22-30.
Crossref
Lukas K. Postl, Chlodwig Kirchhoff, Andreas Toepfer, Sonja Kirchhoff, Marcus Schmitt-Sody, Rüdiger von Eisenhart-Rothe & Rainer Burgkart. (2017) Potential accuracy of navigated K-wire guided supra-acetabular osteotomies in orthopedic surgery: a CT fluoroscopy cadaver study. The International Journal of Medical Robotics and Computer Assisted Surgery 13:2, pages e1752.
Crossref
Olivier Cartiaux, Jean-Yves Jenny & Leo Joskowicz. (2017) Accuracy of Computer-Aided Techniques in Orthopaedic Surgery. Journal of Bone and Joint Surgery 99:8, pages e39.
Crossref
M. K. LaitinenM. C. ParryJ. I. AlbergoR. J. GrimerL. M. Jeys. (2017) Is computer navigation when used in the surgery of iliosacral pelvic bone tumours safer for the patient?. The Bone & Joint Journal 99-B:2, pages 261-266.
Crossref
David M. Joyce. 2017. Tumors of the Sacrum. Tumors of the Sacrum 275 320 .
Christina J. Gutowski, Atrayee Basu-Mallick & John A. Abraham. (2016) Management of Bone Sarcoma. Surgical Clinics of North America 96:5, pages 1077-1106.
Crossref
Bernard G. FrancqOlivier Cartiaux. (2016) Delta method and bootstrap in linear mixed models to estimate a proportion when no event is observed: application to intralesional resection in bone tumor surgery. Statistics in Medicine 35:20, pages 3563-3582.
Crossref
Megumi Nakao, Shota Endo, Shinichi Nakao, Munehito Yoshida & Tetsuya Matsuda. (2016) Augmented Endoscopic Images Overlaying Shape Changes in Bone Cutting Procedures. PLOS ONE 11:9, pages e0161815.
Crossref
Xiaojun Chen, Lu Xu, Yiping Wang, Yongqiang Hao & Liao Wang. (2016) Image-guided installation of 3D-printed patient-specific implant and its application in pelvic tumor resection and reconstruction surgery. Computer Methods and Programs in Biomedicine 125, pages 66-78.
Crossref
Kwok-Chuen Wong, Kwan-Yik Sze, Irene Oi-Ling Wong, Chung-Ming Wong & Shekhar-Madhukar Kumta. (2015) Patient-specific instrument can achieve same accuracy with less resection time than navigation assistance in periacetabular pelvic tumor surgery: a cadaveric study. International Journal of Computer Assisted Radiology and Surgery 11:2, pages 307-316.
Crossref
Luis Bahamonde Muñoz, Gabriel García-Huidobro, José Ignacio Laso Errázuriz, Diego Diaz Tocornal, Cristóbal Alegría Fuentes, Lucas Eduardo Ritacco & Pierluca Zecchetto. (2016) Cirugía asistida por computador en tumores óseos. Principios generales. Revista Chilena de Ortopedia y Traumatología 57:1, pages 20-25.
Crossref
Julia D. Visgauss, William C. Eward & Brian E. Brigman. (2016) Innovations in Intraoperative Tumor Visualization. Orthopedic Clinics of North America 47:1, pages 253-264.
Crossref
Federico E. Milano & Olivier Cartiaux. 2016. Computer-Assisted Musculoskeletal Surgery. Computer-Assisted Musculoskeletal Surgery 259 268 .
Paul S. Unwin & Abtin Eshraghi. 2016. Computer-Assisted Musculoskeletal Surgery. Computer-Assisted Musculoskeletal Surgery 181 198 .
Paul Laurent. 2016. Computer-Assisted Musculoskeletal Surgery. Computer-Assisted Musculoskeletal Surgery 163 179 .
John A. Abraham & Christina J. Gutowski. 2016. Metastatic Bone Disease. Metastatic Bone Disease 347 356 .
G. L. Farfalli, J. I. Albergo, L. E. Ritacco, M. A. Ayerza, D. L. Muscolo & L. A. Aponte-Tinao. (2015) Oncologic and clinical outcomes in pelvic primary bone sarcomas treated with limb salvage surgery. MUSCULOSKELETAL SURGERY 99:3, pages 237-242.
Crossref
Peter H. Richter, Seth Yarboro, Michael Kraus & Florian Gebhard. (2015) One year orthopaedic trauma experience using an advanced interdisciplinary hybrid operating room. Injury 46, pages S129-S134.
Crossref
Amir Sternheim, Michael Daly, Jimmy Qiu, Robert Weersink, Harley Chan, David Jaffray, Jonathan C. Irish, Peter C. Ferguson & Jay S. Wunder. (2015) Navigated Pelvic Osteotomy and Tumor Resection. Journal of Bone and Joint Surgery 97:1, pages 40-46.
Crossref
Peter S. Young, Helen Findlay, J.T. Sam Patton & Ashish Mahendra. (2014) (iii) Computer assisted navigation in musculoskeletal oncology. Orthopaedics and Trauma 28:5, pages 294-302.
Crossref
Justin E. Bird. (2014) “Advances in the Surgical Management of Bone Tumors”. Current Oncology Reports 16:7.
Crossref
Kwok-Chuen Wong & Shekhar-Madhukar Kumta. (2014) Use of Computer Navigation in Orthopedic Oncology. Current Surgery Reports 2:4.
Crossref
François Gouin, Laurent Paul, Guillaume Anthony Odri & Olivier Cartiaux. (2014) Computer-Assisted Planning and Patient-Specific Instruments for Bone Tumor Resection within the Pelvis: A Series of 11 Patients. Sarcoma 2014, pages 1-9.
Crossref
Olivier Cartiaux, Laurent Paul, Bernard G. Francq, Xavier Banse & Pierre-Louis Docquier. (2013) Improved Accuracy with 3D Planning and Patient-Specific Instruments During Simulated Pelvic Bone Tumor Surgery. Annals of Biomedical Engineering 42:1, pages 205-213.
Crossref
Drew D. Moore & Hue H. Luu. 2014. Orthopaedic Oncology. Orthopaedic Oncology 65 92 .
P.H. Richter & F. Gebhard. (2013) Der interdisziplinäre HybridoperationssaalThe interdisciplinary hybrid operation theatre. Der Chirurg 84:12, pages 1036-1040.
Crossref
Robert L. SatcherJr.Jr.. (2013) How Intraoperative Navigation is Changing Musculoskeletal Tumor Surgery. Orthopedic Clinics of North America 44:4, pages 645-656.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.