Übersichtsarbeiten - OUP 10/2016

Zellfreie Implantate zur Behandlung von fokalen Knorpelschäden des Kniegelenks
Indikation, Technik und ErgebnisseIndications, techniques and results

34. Schuttler KF, Schenker H, Theisen C et al.: Use of cell-free collagen type I matrix implants for the treatment of small cartilage defects in the knee: clinical and magnetic resonance imaging evaluation. Knee Surg Sports Traumatol Arthrosc, 2014; 22: 1270–6

35. Sellam J, Berenbaum F: The role of synovitis in pathophysiology and clinical symptoms of osteoarthritis. Nat Rev Rheumatol, 2010; 6: 625–35

36. Shive MS, Stanish WD, McCormack R et al.: BST-CarGel(R) Treatment Maintains Cartilage Repair Superiority over Microfracture at 5 Years in a Multicenter Randomized Controlled Trial. Cartilage, 2015; 6: 62–72

37. Siclari A, Mascaro A, Kaps C, Boux E: A 5-year follow-up after cartilage repair in the knee using a platelet-rich plasma-immersed polymer-based implant. Open Orthop J, 2014; 8: 346–54

38. Stanish WD, McCormack R, Forriol F et al.: Novel scaffold-based BST-CarGel treatment results in superior cartilage repair compared with microfracture in a randomized controlled trial. J Bone Joint Surg Am, 2013; 95: 1640–50

39. Steadman JR, Briggs KK, Rodrigo JJ, Kocher MS, Gill TJ, Rodkey WG: Outcomes of microfracture for traumatic chondral defects of the knee: average 11-year follow-up. Arthroscopy, 2003; 19: 477–84

40. Steadman JR, Rodkey WG, Briggs KK, Rodrigo JJ: [The microfracture technic in the management of complete cartilage defects in the knee joint]. Orthopade; 1999. 28: 26–32

41. Steadman JR, Rodkey WG, Rodrigo JJ: Microfracture: surgical technique and rehabilitation to treat chondral defects. Clin Orthop Relat Res, 2001; S362–9

42. Stoddart MJ, Grad S, Eglin D, Alini M: Cells and biomaterials in cartilage tissue engineering. Regen Med, 2009; 4: 81–98

43. Welsch GH, Mamisch TC, Zak L et al.: Evaluation of cartilage repair tissue after matrix-associated autologous chondrocyte transplantation using a hyaluronic-based or a collagen-based scaffold with morphological MOCART scoring and biochemical T2 mapping: preliminary results. Am J Sports Med, 2010: 38: 934–42

44. Wondrasch B, Risberg MA, Zak L, Marlovits S, Aldrian S: Effect of accelerated weightbearing after matrix-associated autologous chondrocyte implantation on the femoral condyle: a prospective, randomized controlled study presenting MRI-based and clinical outcomes after 5 years. Am J Sports Med, 2015; 43: 146–53

45. Yamaoka H, Asato H, Ogasawara T et al.: Cartilage tissue engineering using human auricular chondrocytes embedded in different hydrogel materials. J Biomed Mater Res A, 2006; 78: 1–11

Fussnoten

1 Zentrum für Orthopädie und Unfallchirurgie, Universitätsklinikum Gießen und Marburg UKGM, Standort Marburg

2 Zentrum für Orthopädie und Unfallchirurgie, Universitätsklinikum Bonn

3 Orthopaedicum Lich & Gießen

SEITE: 1 | 2 | 3 | 4 | 5