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PUBMED FOR HANDHELDS

Journal Abstract Search


158 related items for PubMed ID: 26192414

  • 1. Short Term Evaluation of an Anatomically Shaped Polycarbonate Urethane Total Meniscus Replacement in a Goat Model.
    Vrancken AC, Madej W, Hannink G, Verdonschot N, van Tienen TG, Buma P.
    PLoS One; 2015; 10(7):e0133138. PubMed ID: 26192414
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  • 2. In Vivo Performance of a Novel, Anatomically Shaped, Total Meniscal Prosthesis Made of Polycarbonate Urethane: A 12-Month Evaluation in Goats.
    Vrancken ACT, Hannink G, Madej W, Verdonschot N, van Tienen TG, Buma P.
    Am J Sports Med; 2017 Oct; 45(12):2824-2834. PubMed ID: 28719787
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  • 3. Functional biomechanical performance of a novel anatomically shaped polycarbonate urethane total meniscus replacement.
    Vrancken AC, Eggermont F, van Tienen TG, Hannink G, Buma P, Janssen D, Verdonschot N.
    Knee Surg Sports Traumatol Arthrosc; 2016 May; 24(5):1485-94. PubMed ID: 25971457
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  • 4. Replacement of the medial tibial plateau by a metallic implant in a goat model.
    Custers RJ, Saris DB, Creemers LB, Verbout AJ, van Rijen MH, Mastbergen SC, Lafeber FP, Dhert WJ.
    J Orthop Res; 2010 Apr; 28(4):429-35. PubMed ID: 19885911
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  • 5. In-vivo evaluation of the kinematic behavior of an artificial medial meniscus implant: A pilot study using open-MRI.
    De Coninck T, Elsner JJ, Linder-Ganz E, Cromheecke M, Shemesh M, Huysse W, Verdonk R, Verstraete K, Verdonk P.
    Clin Biomech (Bristol); 2014 Sep; 29(8):898-905. PubMed ID: 25238685
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  • 6. Chondroprotective effects of a polycarbonate-urethane meniscal implant: histopathological results in a sheep model.
    Zur G, Linder-Ganz E, Elsner JJ, Shani J, Brenner O, Agar G, Hershman EB, Arnoczky SP, Guilak F, Shterling A.
    Knee Surg Sports Traumatol Arthrosc; 2011 Feb; 19(2):255-63. PubMed ID: 20635076
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  • 7. Design of a free-floating polycarbonate-urethane meniscal implant using finite element modeling and experimental validation.
    Elsner JJ, Portnoy S, Zur G, Guilak F, Shterling A, Linder-Ganz E.
    J Biomech Eng; 2010 Sep; 132(9):095001. PubMed ID: 20815651
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  • 8. An in vitro study of cartilage-meniscus tribology to understand the changes caused by a meniscus implant.
    Majd SE, Rizqy AI, Kaper HJ, Schmidt TA, Kuijer R, Sharma PK.
    Colloids Surf B Biointerfaces; 2017 Jul 01; 155():294-303. PubMed ID: 28437755
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  • 12. Treatment options for the symptomatic post-meniscectomy knee.
    Drobnič M, Ercin E, Gamelas J, Papacostas ET, Slynarski K, Zdanowicz U, Spalding T, Verdonk P.
    Knee Surg Sports Traumatol Arthrosc; 2019 Jun 01; 27(6):1817-1824. PubMed ID: 30859265
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  • 14. The sensitivity of cartilage contact pressures in the knee joint to the size and shape of an anatomically shaped meniscal implant.
    Khoshgoftar M, Vrancken AC, van Tienen TG, Buma P, Janssen D, Verdonschot N.
    J Biomech; 2015 Jun 01; 48(8):1427-35. PubMed ID: 25766390
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  • 15. Synovial fluid biomarker levels predict articular cartilage damage following complete medial meniscectomy in the canine knee.
    Carlson CS, Guilak F, Vail TP, Gardin JF, Kraus VB.
    J Orthop Res; 2002 Jan 01; 20(1):92-100. PubMed ID: 11853096
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  • 16. Replacement of the rabbit medial meniscus with a polyester-carbon fibre bioprosthesis.
    Wood DJ, Minns RJ, Strover A.
    Biomaterials; 1990 Jan 01; 11(1):13-6. PubMed ID: 2302444
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  • 17. Cartilage degeneration in the goat knee caused by treating localized cartilage defects with metal implants.
    Custers RJ, Dhert WJ, Saris DB, Verbout AJ, van Rijen MH, Mastbergen SC, Lafeber FP, Creemers LB.
    Osteoarthritis Cartilage; 2010 Mar 01; 18(3):377-88. PubMed ID: 19880000
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