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Register studies

Monoblock all-polyethylene tibial components have a lower risk of early revision than metal-backed modular components

A registry study of 27,657 primary total knee arthroplasties

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Pages 530-536 | Received 05 Mar 2013, Accepted 11 Jul 2013, Published online: 18 Nov 2013

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Łukasz Łapaj, Adrian Mróz, Paweł Kokoszka, Jacek Markuszewski, Justyna Wendland, Celina Helak-Łapaj & Jacek Kruczyński. (2017) Peripheral snap-fit locking mechanisms and smooth surface finish of tibial trays reduce backside wear in fixed-bearing total knee arthroplasty. Acta Orthopaedica 88:1, pages 62-69.
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Fan Tang, Yong Zhou, Li Min, Wenli Zhang, Rui Shi, Yi Luo, Hong Duan & Chongqi Tu. (2016) Limb-salvage treatment of en-block resected distal femoral tumors with endoprosthesis of all-polyethylene tibial component: a 9-year follow-up study. OncoTargets and Therapy 9, pages 5361-5369.
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Articles from other publishers (20)

Luboš Nachtnebl, Vasileios Apostolopoulos, Michal Mahdal, Lukáš Pazourek, Pavel Brančík, Tomáš Valoušek, Petr Boháč & Tomáš Tomáš. (2023) Implant Preference and Clinical Outcomes of Patients with Staged Bilateral Total Knee Arthroplasty: All-Polyethylene and Contralateral Metal-Backed Tibial Components. Journal of Clinical Medicine 12:23, pages 7438.
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Aissam Elmhiregh, Yousef Abuodeh, Osama Alzobi, Bashir Zikria, Mohd Alkhayarin & Bernard F. Morrey. (2023) All-polyethylene versus metal-backed tibial components in total knee arthroplasty: a meta-analysis of randomized controlled trials. European Journal of Orthopaedic Surgery & Traumatology 33:8, pages 3611-3622.
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Vasileios Apostolopoulos, Luboš Nachtnebl, Michal Mahdal, Lukáš Pazourek, Petr Boháč, Pavel Janíček & Tomáš Tomáš. (2023) Clinical outcomes and survival comparison between NexGen all-poly and its metal-backed equivalent in total knee arthroplasty. International Orthopaedics.
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Benjamin Kelley, Kyle Mullen, Ayushmita De & Adam Sassoon. (2022) Modular Metal-Backed Tibial Components Provide Minimal Mid-Term Survivorship Benefits Despite Increased Cost and Frequency of Use: A Retrospective Review of the American Joint Replacement Registry Database. The Journal of Arthroplasty 37:8, pages 1570-1574.e1.
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Vasileios Apostolopoulos, Tomáš Tomáš, Petr Boháč, Petr Marcián, Michal Mahdal, Tomáš Valoušek, Pavel Janíček & Luboš Nachtnebl. (2022) Biomechanical analysis of all-polyethylene total knee arthroplasty on periprosthetic tibia using the finite element method. Computer Methods and Programs in Biomedicine 220, pages 106834.
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Sankalpa Jaiswal, SarveshKumar Pandey, AjayKumar Yadav, Rahul Khare & Devender Singh. (2022) A short-term study of clinical and radiological outcomes of total knee replacement using all polyethylene tibial component: A prospective observational study. Journal of Bone and Joint Diseases 37:3, pages 129.
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Ahmed Siddiqi, Abdullah Aftab & Amar S. Ranawat. 2022. Essentials of Cemented Knee Arthroplasty. Essentials of Cemented Knee Arthroplasty 357 363 .
L. NACHTNEBL, T. TOMÁŠ, V. APOSTOLOPOULOS, L. PAZOUREK & M. MAHDAL. (2021) Long-Term Results of Total Knee Replacement Using P.F.C. Sigma System with an All-Polyethylene Tibial Component. Acta chirurgiae orthopaedicae et traumatologiae Cechoslovaca 88:6, pages 412-417.
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Vincenzo Sessa & Umberto Celentano. (2021) Unicompartmental knee arthroplasty: all-poly versus metal-backed tibial component—a long-term follow-up study. International Orthopaedics 45:12, pages 3063-3068.
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David R. Selvan, Alasdair J.A. Santini, John S. Davidson & Jill A. Pope. (2020) The Medium-Term Survival Analysis of an All-Polyethylene Tibia in a Single-Series Cohort of Over 1000 Knees. The Journal of Arthroplasty 35:10, pages 2837-2842.
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David Campbell, Stuart Callary, John Field & Kjell G. Nilsson. (2019) All-polyethylene tibial components in young patients have stable fixation; a comparison RSA study. The Knee 26:2, pages 392-399.
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Kartik M. Varadarajan, Ebru Oral, Orhun K. Muratoglu & Andrew A. Freiberg. (2018) Why All Tibial Polyethylene Bearings are Not the Same?. Techniques in Orthopaedics 33:1, pages 17-24.
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Umile Giuseppe Longo, Mauro Ciuffreda, Valerio D’Andrea, Nicholas Mannering, Joel Locher & Vincenzo Denaro. (2016) All-polyethylene versus metal-backed tibial component in total knee arthroplasty. Knee Surgery, Sports Traumatology, Arthroscopy 25:11, pages 3620-3636.
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Benjamin Voss, Mouhanad M. El-Othmani, Anne-Kathrin Schnur, Albert Botchway, William M. Mihalko & Khaled J. Saleh. (2016) A Meta-Analysis Comparing All-Polyethylene Tibial Component to Metal-Backed Tibial Component in Total Knee Arthroplasty: Assessing Survivorship and Functional Outcomes. The Journal of Arthroplasty 31:11, pages 2628-2636.
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Monique C. Chambers, Mouhanad M. El-Othmani, Zain Sayeed, Afshin Anoushiravani, Anne-Kathrin Schnur, William M. Mihalko & Khaled J. Saleh. (2016) Economics of All-Polyethylene Versus Metal-Backed Tibial Prosthesis Designs. Orthopedics 39:3.
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Hilal Maradit Kremers, Walter K. Kremers, Rafael J. Sierra, David G. Lewallen & Daniel J. Berry. (2016) Competing Risk of Death When Comparing Tibial Implant Types in Total Knee Arthroplasty. Journal of Bone and Joint Surgery 98:7, pages 591-596.
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Mustafa Yassin, Avraham Garti, Moshe Weissbrot, Uzi Ashkenazi, Muhammed Khatib & Dror Robinson. (2015) All-polyethylene tibial components are not inferior to metal-backed tibial components in long-term follow-up of knee arthroplasties. European Journal of Orthopaedic Surgery & Traumatology 25:6, pages 1087-1091.
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Peter S Walker. (2015) The design and pre-clinical evaluation of knee replacements for osteoarthritis. Journal of Biomechanics 48:5, pages 742-749.
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Eduardo García-Rey, Enrique Gómez-Barrena & Eduardo García-Cimbrelo. 2015. Total Knee Arthroplasty. Total Knee Arthroplasty 163 168 .
Vasileios Apostolopoulos, Luboš Nachtnebl, Tomáš Tomáš, Petr Boháč, Petr Marcián, Michal Mahdal, Tomáš Valoušek & Pavel Janíček. (2022) Biomechanical Analysis of All-Poly Tka on Periprotetic Tibia Using Finite Element Method. SSRN Electronic Journal.
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