Total Knee Arthroplasty in Patients With Extra-Articular Deformity: Restoration of Mechanical Alignment Using Accelerometer-Based Navigation System.
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[1] B. S. Moon,et al. Replacement , 1980, Definitions.
[2] D. Shi,et al. Comparison of a novel handheld accelerometer-based navigation system and conventional instrument for performing distal femoral resection in total knee arthroplasty: a randomized controlled trial. , 2019, Annals of translational medicine.
[3] L. Arbeloa-Gutierrez,et al. One-Stage Total Knee Arthroplasty Plus Corrective Osteotomy for Osteoarthritis Associated With Severe Extra-articular Deformity , 2019, Arthroscopy techniques.
[4] Q. Liang,et al. Comparison of the accelerometer-based navigation system with conventional instruments for total knee arthroplasty: a propensity score-matched analysis , 2019, Journal of Orthopaedic Surgery and Research.
[5] Hiroaki Nakamura,et al. An accelerometer-based portable navigation system improved prosthetic alignment after total knee arthroplasty in 3D measurements , 2018, Knee Surgery, Sports Traumatology, Arthroscopy.
[6] James H. MacDonald,et al. Functional Outcomes and Accuracy of Patient-Specific Instruments for Total Knee Arthroplasty , 2018, Surgical innovation.
[7] Y. Wong,et al. Total Knee Replacement with iASSIST Navigation System , 2018, Journal of Orthopaedics, Trauma and Rehabilitation.
[8] B. Demir,et al. Deformity correction with total knee arthroplasty for severe knee osteoarthritis accompanying extra-articular femoral deformity: the results are promising , 2018, Knee Surgery, Sports Traumatology, Arthroscopy.
[9] G. Goh,et al. Accelerometer-Based and Computer-Assisted Navigation in Total Knee Arthroplasty: A Reduction in Mechanical Axis Outliers Does Not Lead to Improvement in Functional Outcomes or Quality of Life When Compared to Conventional Total Knee Arthroplasty. , 2017, The Journal of arthroplasty.
[10] M. Kinney,et al. Comparison of the iAssist Handheld Guidance System to Conventional Instruments for Mechanical Axis Restoration in Total Knee Arthroplasty. , 2018, The Journal of arthroplasty.
[11] Junya Higuchi,et al. Comparison of an Accelerometer-Based Portable Navigation System, Patient-Specific Instrumentation, and Conventional Instrumentation for Femoral Alignment in Total Knee Arthroplasty , 2017, Knee surgery & related research.
[12] M. Innocenti,et al. Oxidized zirconium versus cobalt-chromium against the native patella in total knee arthroplasty: Patellofemoral outcomes. , 2017, The Knee.
[13] J. Jenny,et al. Learning navigation – Learning with navigation. A review , 2017, SICOT-J.
[14] M. Hepinstall,et al. Pin Site Complications Associated With Computer-Assisted Navigation in Hip and Knee Arthroplasty. , 2017, The Journal of arthroplasty.
[15] M. Ochi,et al. Technical Considerations and Accuracy Improvement of Accelerometer-Based Portable Computer Navigation for Performing Distal Femoral Resection in Total Knee Arthroplasty. , 2017, The Journal of arthroplasty.
[16] D. Jacofsky,et al. Robotics in Arthroplasty: A Comprehensive Review. , 2016, The Journal of arthroplasty.
[17] F. Castoldi,et al. Patient specific instrumentation in total knee arthroplasty: a state of the art. , 2016, Annals of translational medicine.
[18] K-I Kim,et al. Robot‐assisted total knee arthroplasty in haemophilic arthropathy , 2016, Haemophilia : the official journal of the World Federation of Hemophilia.
[19] P. Neyret,et al. Coronal alignment after total knee arthroplasty , 2016, EFORT open reviews.
[20] J. Jauregui,et al. Robotic-assisted knee arthroplasty , 2015, Expert review of medical devices.
[21] A. Ferretti,et al. Clinical and radiographic outcomes of an accelerometer-based system for the tibial resection in total knee arthroplasty , 2015, International Orthopaedics.
[22] Rebecca R. Miller. Total , 2014, Definitions.
[23] D. Lionberger,et al. Patient specific instrumentation. , 2014, The Journal of arthroplasty.
[24] M. Innocenti,et al. Oxidized zirconium femoral component for TKA: a follow-up note of a previous report at a minimum of 10 years. , 2014, The Knee.
[25] Emmanuel Thienpont,et al. Total knee arthroplasty with patient-specific instruments improves function and restores limb alignment in patients with extra-articular deformity. , 2013, The Knee.
[26] Seung Joon Rhee,et al. Navigation-Assisted Total Knee Arthroplasty for Patients with Extra-Articular Deformity , 2013, Knee surgery & related research.
[27] Y. Minoda,et al. Theoretical risk of anterior femoral cortex notching in total knee arthroplasty using a navigation system. , 2013, The Journal of arthroplasty.
[28] A. Vasdev,et al. Total knee arthroplasty in extra articular deformities: A series of 36 knees , 2013, Indian journal of orthopaedics.
[29] K. Shahzad,et al. One-stage total knee arthroplasty for patients with osteoarthritis of the knee and extra-articular deformity , 2012, International Orthopaedics.
[30] C. Ha,et al. Robot-assisted implantation improves the precision of component position in minimally invasive TKA. , 2012, Orthopedics.
[31] Xianlong Zhang,et al. Computer-navigated TKA for the treatment of osteoarthritis associated with extra-articular femoral deformity. , 2012, Orthopedics.
[32] J. Bellemans,et al. The Chitranjan Ranawat Award: Is Neutral Mechanical Alignment Normal for All Patients?: The Concept of Constitutional Varus , 2012, Clinical orthopaedics and related research.
[33] A. Leardini,et al. Navigation-assisted total knee arthroplasty in knees with osteoarthritis due to extra-articular deformity , 2012, Knee Surgery, Sports Traumatology, Arthroscopy.
[34] Xianlong Zhang,et al. Total knee arthroplasty using navigation system for severe osteoarthritis with extra-articular deformity , 2011, European Journal of Orthopaedic Surgery & Traumatology.
[35] D. Bae,et al. Navigation-assisted minimal invasive total knee arthroplasty in patients with extra-articular femoral deformity. , 2010, The Journal of arthroplasty.
[36] A. Mullaji,et al. Computer-assisted total knee arthroplasty for arthritis with extra-articular deformity. , 2009, Journal of Arthroplasty.
[37] Alexander Giurea,et al. Learning curve in navigated total knee replacement. A multi-centre study comparing experienced and beginner centres. , 2008, The Knee.
[38] W. Barsoum,et al. The use of navigation in total knee arthroplasty for patients with extra-articular deformity. , 2008, The Journal of arthroplasty.
[39] K. Takaoka,et al. Sagittal alignment of the lower extremity while standing in Japanese male , 2008, Archives of Orthopaedic and Trauma Surgery.
[40] Johan Bellemans,et al. Robot-assisted Total Knee Arthroplasty , 2003, Clinical orthopaedics and related research.
[41] Eric B. Smith,et al. Total knee arthroplasty using computer-assisted navigation in patients with deformities of the femur and tibia. , 2006, The Journal of arthroplasty.
[42] Wojciech Widuchowski,et al. [Total knee arthroplasty]. , 2004, Wiadomosci lekarskie.
[43] J. Parvizi,et al. Total knee arthroplasty following prior distal femoral fracture. , 2002, The Knee.
[44] Ching‐Jen Wang,et al. Total Knee Arthroplasty for Arthritis of the Knee with Extra-Articular Deformity , 2002, The Journal of bone and joint surgery. American volume.
[45] R. Kober,et al. Technique and first clinical results of robot-assisted total knee replacement. , 2002, The Knee.
[46] R. Morris,et al. Coronal alignment after total knee replacement. , 1991, The Journal of bone and joint surgery. British volume.
[47] F. C. Ewald. The Knee Society total knee arthroplasty roentgenographic evaluation and scoring system. , 1989, Clinical orthopaedics and related research.
[48] L. Dorr,et al. Rationale of the Knee Society clinical rating system. , 1989, Clinical orthopaedics and related research.
[49] C. Ranawat,et al. Survivorship analysis and results of total condylar knee arthroplasty. Eight- to 11-year follow-up period. , 1988, Clinical orthopaedics and related research.
[50] J. Moreland,et al. Radiographic analysis of the axial alignment of the lower extremity. , 1987, The Journal of bone and joint surgery. American volume.
[51] C. Ranawat,et al. A comparison of four models of total knee-replacement prostheses. , 1976, The Journal of bone and joint surgery. American volume.