Gelber Pablo Eduardo, Ramírez-Bermejo Eduard, Ibañez Maximiliano, Grau-Blanes Alex, Fariñas Oscar, Monllau Juan Carlos
Department of Orthopaedic Surgery, Hospital de la Santa Creu i Sant Pau, Barcelona, Spain.
ICATME-Hospital Universitari Dexeus, Universitat Autònoma de Barcelona, Barcelona, Spain.
Arthrosc Tech. 2019 Nov 13;8(11):e1395-e1401. doi: 10.1016/j.eats.2019.07.017. eCollection 2019 Nov.
Large osteochondral lesions of the knee in young patients continue to be a challenge for orthopaedic surgeons and the focus of continual research. This is particularly true if the injury is a consequence of a dysplastic trochlea and involves both articular surfaces of the biomechanically complex patellofemoral joint. To obtain a healthy and congruent patellofemoral joint, the use of a bipolar fresh osteochondral allograft transplantation of the patella and trochlea is one of the few options to biologically treat these injuries. This would achieve a replacement of the entire articular surface of the patellofemoral joint with a high number of viable chondrocytes and respect the unique structural characteristics of the cartilage. The aim of this study was to obtain symptomatic and functional improvements while delaying the timing of prosthetic surgery. We present a reproducible although demanding surgical technique to perform a bipolar fresh osteochondral allograft transplantation of the patella and trochlea.
对于年轻患者的膝关节大型骨软骨损伤,一直是骨科医生面临的挑战,也是持续研究的重点。如果损伤是发育异常的滑车导致的,且累及生物力学复杂的髌股关节的两个关节面,情况尤其如此。为了获得健康且匹配的髌股关节,使用髌骨和滑车的双极新鲜骨软骨同种异体移植是生物学治疗这些损伤的少数选择之一。这将用大量有活力的软骨细胞替换髌股关节的整个关节面,并尊重软骨独特的结构特征。本研究的目的是在延迟假体手术时机的同时,实现症状和功能的改善。我们提出了一种可重复但要求较高的手术技术,用于进行髌骨和滑车的双极新鲜骨软骨同种异体移植。