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Original Article

Computer-Assisted Implantation of Total Knee Prostheses: A Case-Control Comparative Study with Classical Instrumentation

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Pages 217-220 | Received 28 Nov 2000, Accepted 14 May 2001, Published online: 06 Jan 2010

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

Read on this site (10)

Michael Casper, Riddhit Mitra, Rahul Khare, Branislav Jaramaz, Brian Hamlin, Brian McGinley, David Mayman, Jeff Headrick, Kenneth Urish, Mark Gittins, Stephen Incavo & Vivek Neginhal. (2018) Accuracy assessment of a novel image-free handheld robot for Total Knee Arthroplasty in a cadaveric study. Computer Assisted Surgery 23:1, pages 14-20.
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W.T. Wilson, A.H. Deakin, S.C. Wearing, A.P. Payne, J.V. Clarke & F. Picard. (2013) Computer-assisted measurements of coronal knee joint laxity in vitro are related to low-stress behavior rather than structural properties of the collateral ligaments. Computer Aided Surgery 18:5-6, pages 181-186.
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Benjamin R.K. Smith, Angela H. Deakin, Joe Baines & Frederic Picard. (2010) Computer navigated total knee arthroplasty: The learning curve. Computer Aided Surgery 15:1-3, pages 40-48.
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I. Livshetz, Y.S. Brin, C. Holcroft, J. Antoniou & D.J. Zukor. (2010) Deviations between intra-operative navigation data and post-operative weight-bearing X-rays. Computer Aided Surgery 15:1-3, pages 56-62.
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Jean-yves Jenny, Cyril Boeri, Frédéric Picard & François Leitner. (2004) Reproducibility of intra-operative measurement of the mechanical axes of the lower limb during total knee replacement with a non-image-based navigation system. Computer Aided Surgery 9:4, pages 161-165.
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Jean–Yves Jenny & Cyril Boeri. (2004) Low reproducibility of the intra–operative measurement of the transepicondylar axis during total knee replacement. Acta Orthopaedica Scandinavica 75:1, pages 74-77.
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Jens Decking, Christoph Theis, Tobias Achenbach, Edgar Roth, Bernhard Nafe & Anke Eckardt. (2004) Robotic total knee arthroplastyThe accuracy of CT-based component placement. Acta Orthopaedica Scandinavica 75:5, pages 573-579.
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Goetz Welsch, Tallal Charles Mamisch, Ron Kikinis, Rainer Schmidt, Philipp Lang, Raimund Forst & Wolfgang Fitz. (2003) CT-Based Preoperative Analysis of Scapula Morphology and Glenohumeral Joint Geometry. Computer Aided Surgery 8:5, pages 264-268.
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E. Stindel, J. L. Briard, P. Merloz, S. Plaweski, F. Dubrana, C. Lefevre & J. Troccaz. (2002) Bone Morphing: 3D Morphological Data for Total Knee Arthroplasty. Computer Aided Surgery 7:3, pages 156-168.
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P. Benavente, C. López Orosa, J.A. Oteo Maldonado, A. Orois Codesal & F.J. García Lázaro. (2015) Computer assisted surgery. Its usefulness in different levels of pre-operative deformities. Revista Española de Cirugía Ortopédica y Traumatología (English Edition) 59:4, pages 245-253.
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R. Stephen J. Burnett & Robert L. Barrack. (2013) Computer-assisted Total Knee Arthroplasty Is Currently of No Proven Clinical Benefit: A Systematic Review. Clinical Orthopaedics & Related Research 471:1, pages 264-276.
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Andrej M. Nowakowski, Magdalena Müller-Gerbl & Victor Valderrabano. (2012) Assessment of Knee Implant Alignment Using Coordinate Measurement on Three-Dimensional Computed Tomography Reconstructions. Surgical Innovation 19:4, pages 375-384.
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Tao Cheng, Song Zhao, Xiaochun Peng & Xianlong Zhang. (2011) Does computer-assisted surgery improve postoperative leg alignment and implant positioning following total knee arthroplasty? A meta-analysis of randomized controlled trials?. Knee Surgery, Sports Traumatology, Arthroscopy 20:7, pages 1307-1322.
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Yonghui Fu, Mingming Wang, Yifeng Liu & Qin Fu. (2011) Alignment outcomes in navigated total knee arthroplasty: a meta-analysis. Knee Surgery, Sports Traumatology, Arthroscopy 20:6, pages 1075-1082.
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Aaron A. Hofmann & Jeremy McCandless. 2012. Insall &amp Scott Surgery of the Knee. Insall &amp Scott Surgery of the Knee 1217 1222 .
James B. Stiehl. 2012. Insall &amp Scott Surgery of the Knee. Insall &amp Scott Surgery of the Knee 1201 1206 .
Vincent Y. Ng, Jeffrey H. DeClaire, Keith R. Berend, Bethany C. Gulick & Adolph V. Lombardi. (2012) Improved Accuracy of Alignment With Patient-specific Positioning Guides Compared With Manual Instrumentation in TKA. Clinical Orthopaedics & Related Research 470:1, pages 99-107.
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Jan Schmitt, Carsten Hauk, Heino Kienapfel, Michael Pfeiffer, Turgay Efe, Susanne Fuchs-Winkelmann & Thomas J Heyse. (2011) Navigation of total knee arthroplasty: rotation of components and clinical results in a prospectively randomized study. BMC Musculoskeletal Disorders 12:1.
Crossref
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Won Chul Choi, Sahnghoon Lee, Joon Hwan An, Dongwook Kim, Sang Cheol Seong & Myung Chul Lee. (2011) Plain Radiograph Fails to Reflect the Alignment and Advantages of Navigation in Total Knee Arthroplasty. The Journal of Arthroplasty 26:5, pages 756-764.
Crossref
Jiří Nedoma, Jiří Stehlík, Ivan Hlaváček, Josef Daněk, Tatjana Dostálová & Petra Přečková. 2011. Mathematical and Computational Methods in Biomechanics of Human Skeletal Systems. Mathematical and Computational Methods in Biomechanics of Human Skeletal Systems 535 564 .
Shingo Fukagawa, Shuichi Matsuda, Hiroaki Mitsuyasu, Hiromasa Miura, Ken Okazaki, Yasutaka Tashiro & Yukihide Iwamoto. (2011) Anterior border of the tibia as a landmark for extramedullary alignment guide in total knee arthroplasty for varus knees. Journal of Orthopaedic Research 29:6, pages 919-924.
Crossref
Yaron S. Brin, Vassilios S. Nikolaou, Lawrence Joseph, David J. Zukor & John Antoniou. (2010) Imageless computer assisted versus conventional total knee replacement. A Bayesian meta-analysis of 23 comparative studies. International Orthopaedics 35:3, pages 331-339.
Crossref
Rolf MiehlkeRobert GeyerUlrich ClemensBirger Thiel. 2011. Mobile Bearing Total Knee Replacement Devices. Mobile Bearing Total Knee Replacement Devices 146 155 .
Rolf MiehlkeRobert GeyerUlrich ClemensBirger Thiel. 2011. Mobile Bearing Total Knee Replacement Devices. Mobile Bearing Total Knee Replacement Devices 146 155 .
Jean-Yves Jenny & Yann Diesinger. (2010) Navigated Revision TKR: A Comparative Study with Conventional Instruments. Orthopedics 33:10, pages 58-61.
Crossref
Thisbe van Strien, Enrike van der Linden-van der Zwaag, Bart Kaptein, Arjan van Erkel, Edward Valstar & Rob Nelissen. (2008) Computer assisted versus conventional cemented total knee prostheses alignment accuracy and micromotion of the tibial component. International Orthopaedics 33:5, pages 1255-1261.
Crossref
Jong Keun Seon, Sang Jin Park, Keun Bae Lee, Gang Li, Michal Kozanek & Eun Kyoo Song. (2008) Functional comparison of total knee arthroplasty performed with and without a navigation system. International Orthopaedics 33:4, pages 987-990.
Crossref
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Crossref
Rupen Dattani, Surendra Patnaik, Avadhoot Kantak & Georgis Tselentakis. (2008) Navigation knee replacement. International Orthopaedics 33:1, pages 7-10.
Crossref
Young-Hoo Kim, Jun-Shik Kim, Yoowang Choi & Oh-Ryong Kwon. (2009) Computer-Assisted Surgical Navigation Does Not Improve the Alignment and Orientation of the Components in Total Knee Arthroplasty. The Journal of Bone and Joint Surgery-American Volume 91:1, pages 14-19.
Crossref
Juan C. Hermida, Andrew Fischler, Clifford W. ColwellJr.Jr. & Darryl D. D'Lima. (2008) The effect of oxidative aging on the wear performance of highly crosslinked polyethylene knee inserts under conditions of severe malalignment. Journal of Orthopaedic Research 26:12, pages 1585-1590.
Crossref
Robert A Siston, Melinda J Cromie, Garry E Gold, Stuart B Goodman, Scott L Delp, William J Maloney & Nicholas J Giori. (2008) Averaging Different Alignment Axes Improves Femoral Rotational Alignment in Computer-Navigated Total Knee Arthroplasty. The Journal of Bone and Joint Surgery-American Volume 90:10, pages 2098-2104.
Crossref
. (2008) Results of an Initial Experience with Custom-fit Positioning Total Knee Arthroplasty in a Series of 48 Patients. Orthopedics 31:9.
Crossref
Bernard N. Stulberg & Jayson D. Zadzilka. (2008) Navigation Matters. Techniques in Knee Surgery 7:3, pages 166-171.
Crossref
Todd C. Kelley & Michael L. Swank. (2008) Computer-Assisted Surgery in Total Knee Arthroplasty. Techniques in Knee Surgery 7:3, pages 144-152.
Crossref
A. Martin, O. Wohlgenannt, M. Prenn & A. von Strempel. (2008) Posttraumatische GonarthrosePost-traumatic osteoarthritis of the knee. Der Unfallchirurg 111:9, pages 754-758.
Crossref
Jay Patel & Kevin Bozic. (2008) Computer-navigated joint-replacement surgery. Future Rheumatology 3:4, pages 329-333.
Crossref
H.M.J. van der Linden–van der Zwaag, R. Wolterbeek & R.G.H.H. Nelissen. (2008) Computer assisted orthopedic surgery; its influence on prosthesis size in total knee replacement. The Knee 15:4, pages 281-285.
Crossref
J.-Y. Jenny, C. Boeri & L. Schneider. (2008) Medial knee osteophytes have little influence on the medial collateral laxity during total knee replacement. European Journal of Orthopaedic Surgery & Traumatology 18:5, pages 339-343.
Crossref
Jean-Yves Jenny. (2008) Navigated Unicompartmental Knee Replacement. Sports Medicine and Arthroscopy Review 16:2, pages 103-107.
Crossref
Jean-Yves Jenny, Rolf K. Miehlke & Alexander Giurea. (2008) Learning curve in navigated total knee replacement. A multi-centre study comparing experienced and beginner centres. The Knee 15:2, pages 80-84.
Crossref
Tae Kyun Kim, Jinbae Choi, Kwang Sook Shin, Chong Bum Chang & Sang Cheol Seong. (2007) Patients’ perspective on controversial issues in total knee arthroplasty. Knee Surgery, Sports Traumatology, Arthroscopy 16:3, pages 297-304.
Crossref
Alfonso Manzotti, Chris Pullen & Norberto Confalonieri. (2008) Computer-assisted alignment system for tibial component placement in total knee replacement: a radiological study. La Chirurgia degli Organi di Movimento 91:1, pages 7-11.
Crossref
Wojciech Glinkowski. 2008. Information Technologies in Biomedicine. Information Technologies in Biomedicine 28 43 .
J. Bohannon Mason, Thomas K. Fehring, Rhonda Estok, Deirdre Banel & Kyle Fahrbach. (2007) Meta-Analysis of Alignment Outcomes in Computer-Assisted Total Knee Arthroplasty Surgery. The Journal of Arthroplasty 22:8, pages 1097-1106.
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W.P. Yau, Anthony Leung, K.G. Liu, C.H. Yan, Lisa L.S. Wong & K.Y. Chiu. (2007) Interobserver and Intra-observer Errors in Obtaining Visually Selected Anatomical Landmarks During Registration Process in Non–Image-Based Navigation-Assisted Total Knee Arthroplasty. The Journal of Arthroplasty 22:8, pages 1150-1161.
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Don C Beringer, Jay J Patel & Kevin J Bozic. (2007) An Overview of Economic Issues in Computer-assisted Total Joint Arthroplasty. Clinical Orthopaedics & Related Research 463, pages 26-30.
Crossref
Robert A Siston, Stuart B Goodman, Scott L Delp & Nicholas J Giori. (2007) Coronal Plane Stability Before and After Total Knee Arthroplasty. Clinical Orthopaedics & Related Research 463, pages 43-49.
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Jean-Yves Jenny, Eugen Ciobanu & Cyril Boeri. (2007) The Rationale for Navigated Minimally Invasive Unicompartmental Knee Replacement. Clinical Orthopaedics & Related Research 463, pages 58-62.
Crossref
R. DECKING, Y. MARKMANN, T. MATTES, W. PUHL & H. P. SCHARF. (2007) On the Outcome of Computer-assisted Total Knee Replacement. Acta chirurgiae orthopaedicae et traumatologiae Cechoslovaca 74:3, pages 171-174.
Crossref
A Ensini, F Catani, A Leardini, M Romagnoli & S Giannini. (2007) Alignments and Clinical Results in Conventional and Navigated Total Knee Arthroplasty. Clinical Orthopaedics & Related Research 457, pages 156-162.
Crossref
Georg Matziolis, Doerte Krocker, Ulrike Weiss, Stephan Tohtz & Carsten Perka. (2007) A Prospective, Randomized Study of Computer-Assisted and Conventional Total Knee Arthroplasty. The Journal of Bone & Joint Surgery 89:2, pages 236-243.
Crossref
Shantanu Patil, Darryl D. DʼLima, James M. Fait & Clifford W. ColwellJr.Jr.. (2007) Improving Tibial Component Coronal Alignment During Total Knee Arthroplasty with Use of a Tibial Planing Device. The Journal of Bone & Joint Surgery 89:2, pages 381-387.
Crossref
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Crossref
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Crossref
Robert A. Siston, Nicholas J. Giori, Stuart B. Goodman & Scott L. Delp. (2007) Surgical navigation for total knee arthroplasty: A perspective. Journal of Biomechanics 40:4, pages 728-735.
Crossref
Denis Crottet, Jens Kowal, Sven A. Sarfert, Thomas Maeder, Hannes Bleuler, Lutz-P. Nolte & Lutz Dürselen. (2007) Ligament balancing in TKA: Evaluation of a force-sensing device and the influence of patellar eversion and ligament release. Journal of Biomechanics 40:8, pages 1709-1715.
Crossref
Michael L. Swank & Leslie Korbee. (2006) Computer-Assisted Surgery in Total Knee Arthroplasty. Techniques in Knee Surgery 5:4, pages 228-237.
Crossref
Robert A Siston, Stuart B Goodman, Jay J Patel, Scott L Delp & Nicholas J Giori. (2006) The High Variability of Tibial Rotational Alignment in Total Knee Arthroplasty. Clinical Orthopaedics and Related Research 452, pages 65-69.
Crossref
Meir Liebergall, Dror Ben-David, Yoram Weil, Amos Peyser & Rami Mosheiff. (2006) Computerized Navigation for the Internal Fixation of Femoral Neck Fractures. The Journal of Bone & Joint Surgery 88:8, pages 1748-1754.
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Gregg R. Klein, Camilo Restrepo & William J. Hozack. (2006) The Effect of Knee Component Design Changes on Range of Motion. The Journal of Arthroplasty 21:5, pages 623-627.
Crossref
Bernard N. Stulberg & Jayson D. Zadzilka. (2006) Computer-Assisted Surgery A Wine Before its Time. The Journal of Arthroplasty 21:4, pages 29-32.
Crossref
P Weinrauch, N Myers, M Wilkinson, J Dodsworth, P Fitzpatrick & S Whitehouse. (2016) Comparison of Early Postoperative Rehabilitation Outcome following Total Knee Arthroplasty Using Different Surgical Approaches and Instrumentation. Journal of Orthopaedic Surgery 14:1, pages 47-52.
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J. CobbJ. HenckelP. GomesS. HarrisM. JakopecF. RodriguezA. BarrettB. Davies. (2006) Hands-on robotic unicompartmental knee replacement. The Journal of Bone and Joint Surgery. British volume 88-B:2, pages 188-197.
Crossref
Gregg R. Klein, Matthew S. Austin, Eric B. Smith & William J. Hozack. (2006) Total Knee Arthroplasty Using Computer-Assisted Navigation in Patients with Deformities of The Femur and Tibia. The Journal of Arthroplasty 21:2, pages 284-288.
Crossref
C. Perka, S. Tohtz & G. Matziolis. (2006) Achskorrektur bei KnietotalendoprothesenrevisionenTreatment of malalignment in knee revision arthroplasty. Der Orthopäde 35:2, pages 136-142.
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Roberto Freire da Mota e Albuquerque, Fábio Jansen Angelini, José Ricardo Pécora, Marco Martins Amatuzzi & Sandra Umeda Sasaki. (2006) Artroplastia total do joelho assistida por computador. Acta Ortopédica Brasileira 14:4, pages 199-202.
Crossref
Chih-Wei Chang & Chyun-Yu Yang. (2006) Kinematic Navigation in Total Knee Replacement — Experience from the First 50 Cases. Journal of the Formosan Medical Association 105:6, pages 468-474.
Crossref
. 2006. 131 194 .
F Rodriguez, S Harris, M Jakopec, A Barrett, P Gomes, J Henckel, J Cobb & B Davies. (2005) Robotic clinical trials of uni-condylar arthroplasty. The International Journal of Medical Robotics and Computer Assisted Surgery 1:4, pages 20-28.
Crossref
Michael Bolognesi & Aaron Hofmann. (2005) Computer Navigation versus Standard Instrumentation for TKA. Clinical Orthopaedics and Related Research 440:&NA;, pages 162-169.
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Jean-Yves Jenny. (2005) Navigated Unicompartmental Knee Replacement. Orthopedics 28:10.
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Ulrich Clemens & Rolf Klaus Miehlke. (2005) Advanced Navigation Planning Including Soft Tissue Management. Orthopedics 28:10.
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Steve J. Kim, Margot MacDonald, Jaime Hernandez & Richard L. Wixson. (2005) Computer Assisted Navigation in Total Knee Arthroplasty. The Journal of Arthroplasty 20, pages 123-131.
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Aaron A Hofmann. (2005) Computer-Assisted Surgery for Total Knee Arthroplasty: More Than Just "Boy Toys" for the Passionate Few. Orthopedics 28:9, pages 940-942.
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Rolf G Haaker, Martin Stockheim, Michael Kamp, Gunnar Proff, Johannes Breitenfelder & Andreas Ottersbach. (2005) Computer-Assisted Navigation Increases Precision of Component Placement in Total Knee Arthroplasty. Clinical Orthopaedics and Related Research &NA;:433, pages 152-159.
Crossref
M. Schwarz, P. Pott, A. Beck, S. Heute & H. Scharf. (2005) Test bed for assessment of the kinematical determination of navigation systems for total knee arthroplasty. Does a limited range of motion of the hip joint influence the accuracy of the determination?. Computer Aided Surgery 10:1, pages 51-57.
Crossref
Gregg R. Klein, Javad Parvizi, Venkat R. Rapuri, Mathew S. Austin & William J. Hozack. (2004) The effect of tibial polyethylene insert design on range of motion. The Journal of Arthroplasty 19:8, pages 986-991.
Crossref
Louis-Philippe Amiot & François Poulin. (2004) Computed Tomography-Based Navigation for Hip, Knee, and Spine Surgery. Clinical Orthopaedics & Related Research 421, pages 77-86.
Crossref
Jean-yves Jenny, Cyril Boeri, Frédéric Picard & François Leitner. (2004) Reproducibility of intra-operative measurement of the mechanical axes of the lower limb during total knee replacement with a non-image-based navigation system. Computer Aided Surgery 9:4, pages 161-165.
Crossref
F. Langlotz & L.-P. Nolte. 2004. Minimally Invasive Total Joint Arthroplasty. Minimally Invasive Total Joint Arthroplasty 186 190 .
James B. Stiehl, Werner H. Konermann & Rolf G. HaakerJ. L. Briard, E. Stindel, S. Plaweski, F. Dubrana, P. Merloz, C. Lefevre, J. Troccaz, F. Bertrand, N. Begoc, P. Solodky & M. Breysse. 2004. Navigation and Robotics in Total Joint and Spine Surgery. Navigation and Robotics in Total Joint and Spine Surgery 274 280 .
James B. Stiehl, Werner H. Konermann & Rolf G. HaakerR. K. Miehlke, R. G. Haaker & W. H. Konermann. 2004. Navigation and Robotics in Total Joint and Spine Surgery. Navigation and Robotics in Total Joint and Spine Surgery 242 247 .
James B. Stiehl, Werner H. Konermann & Rolf G. HaakerU. Clemens, W. H. Konermann, S. Kohler, H. Kiefer, J. Y. Jenny & R. K. Miehlke. 2004. Navigation and Robotics in Total Joint and Spine Surgery. Navigation and Robotics in Total Joint and Spine Surgery 234 241 .
Jens G. Boldt, Yaw Jakobi & Thomas Guggi. 2004. Primary Knee Arthroplasty. Primary Knee Arthroplasty 229 239 .
Kenneth A Krackow. (2003) Fine Tuning Your Next Total Knee: Computer Assisted Surgery. Orthopedics 26:9, pages 971-972.
Crossref
Eric J. Hazan. (2003) Computer-Assisted Orthopaedic Surgery. Techniques in Orthopaedics 18:2, pages 221-229.
Crossref
Nobuhiko Sugano. (2003) Computer-assisted orthopedic surgery. Journal of Orthopaedic Science 8:3, pages 442-448.
Crossref
K. Labs, G. Matziolis & C. Perka. 2003. Bioceramics in Joint Arthroplasty. Bioceramics in Joint Arthroplasty 139 149 .
U. Clemens, R. K. Miehlke, S. Kohler, H. Kiefer, J. Y. Jenny & W. Konermann. 2003. Navigation und Robotic in der Gelenk- und Wirbelsäulenchirurgie. Navigation und Robotic in der Gelenk- und Wirbelsäulenchirurgie 207 216 .
E. Stindel, J.L. Briard, P. Merloz, S. Plaweski, F. Dubrana, C. Lefevre & J. Troccaz. (2002) Bone morphing: 3D morphological data for total knee arthroplasty. Computer Aided Surgery 7:3, pages 156-168.
Crossref

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