Department of Orthopedic Surgery, School of Medicine, Ajou University, Suwon, Republic of Korea.
Cell Therapy Center, Ajou University Medical Center, Suwon, Republic of Korea.
Am J Sports Med. 2022 Mar;50(3):689-698. doi: 10.1177/03635465211064297.
We recently analyzed the joint capsule adjacent to the medial meniscus and found that the perimeniscal joint capsule has collagen fiber orientation similar to that of circumferential meniscal fibers, potentially playing a role in preventing extrusion.
To analyze the meniscal extrusion prevention potential of the circumferential rim augmentation suture around the perimeniscal capsule in a rabbit root tear model and analyze the biomechanical function in a porcine cadaveric knee.
Controlled laboratory study.
Rabbit medial meniscus root tear models were divided into 3 experimental groups: root tear, root tear and suture repair, and root tear and circumferential rim augmentation suture. As for the circumferential rim augmentation suture procedure, a suture was placed to circumscribe the outer rim of the medial meniscus and passed through bone tunnels located at the tibial insertion of each root. After 4 and 8 weeks, meniscal extrusion was analyzed by micro-computed tomography, gross morphology, and histologic analysis of the medial femoral cartilage. For biomechanical analysis, porcine knees were divided into groups similar to rabbit experiments. Tibiofemoral contact parameters were assessed using a pressure mapping sensor system after applying a load of 200 N on the knee joint.
The root tear and circumferential rim augmentation suture group showed less meniscal extrusion, less gap within the tear site, and less cartilage degeneration compared with other groups after 4 and 8 weeks of surgery in the rabbit root tear model. Biomechanical analysis showed the root tear and circumferential rim augmentation suture group had larger contact area and lower peak contact pressure compared with root tear and root tear and suture repair groups.
The circumferential rim augmentation suture reduced the degree of meniscal extrusion while restoring meniscal function, potentially preventing progression of arthritis in a rabbit root tear model and porcine knee biomechanical analysis.
The circumferential rim augmentation suture may be a novel augmentation option during root tear treatment.
我们最近分析了内侧半月板相邻的关节囊,发现半月板周围关节囊的胶原纤维方向与环形半月板纤维相似,可能在防止挤出方面发挥作用。
在兔半月板根部撕裂模型中分析围绕半月板周围关节囊的环形边缘增强缝线对防止半月板挤出的潜力,并分析猪尸体膝关节的生物力学功能。
对照实验室研究。
兔内侧半月板根部撕裂模型分为 3 个实验组:根部撕裂、根部撕裂和缝线修复、根部撕裂和环形边缘增强缝线。对于环形边缘增强缝线程序,将缝线放置在半月板外边缘周围,并穿过位于每个根部胫骨插入处的骨隧道。4 周和 8 周后,通过 micro-CT、内侧股骨软骨的大体形态和组织学分析分析半月板挤出。对于生物力学分析,将猪膝关节分为与兔实验类似的组。在膝关节上施加 200N 的载荷后,使用压力映射传感器系统评估胫股接触参数。
与其他组相比,兔半月板根部撕裂模型中,根部撕裂和环形边缘增强缝线组在手术后 4 周和 8 周时,半月板挤出程度更小,撕裂部位的间隙更小,软骨退变程度更小。生物力学分析表明,与根部撕裂和根部撕裂和缝线修复组相比,根部撕裂和环形边缘增强缝线组的接触面积更大,峰值接触压力更低。
环形边缘增强缝线在恢复半月板功能的同时减少了半月板挤出的程度,可能在兔半月板根部撕裂模型和猪膝关节生物力学分析中预防关节炎的进展。
环形边缘增强缝线可能是根部撕裂治疗中一种新的增强选择。