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首页> 外文期刊>Arthroscopy: the journal of arthroscopic & related surgery : official publication of the Arthroscopy Association of North America and the International Arthroscopy Association >Enveloping the tendon graft with periosteum to enhance tendon-bone healing in a bone tunnel: A biomechanical and histologic study in rabbits.
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Enveloping the tendon graft with periosteum to enhance tendon-bone healing in a bone tunnel: A biomechanical and histologic study in rabbits.

机译:包裹肌腱与骨膜移植加强tendon-bone愈合骨隧道:兔子的生物力学和组织学研究。

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PURPOSE: Fixing and incorporating the tendon graft within the bone tunnel is a major concern when using grafts for ligament reconstruction. The periosteum contains multipotent stem cells and has the potential to form osteogenic and chondrogenic tissues. This study uses histologic and biomechanical analyses to examine the effect of periosteum on tendon-bone healing within a bone tunnel. Type of Study: Experimental study in an animal model. METHODS: In this study, 36 adult New Zealand White rabbits were used. The long digitorum extensor tendon was transplanted into a bone tunnel of the proximal tibia. The periosteum from the proximal tibia was sutured on the surface of the tendon portion. The tendon was pulled through a drill-hole in the proximal tibia and attached to the medial aspect of the tibia. Histologic examination of the tendon-bone interface and biomechanical test for maximal pullout load were evaluated at 4, 8, and 12 weeks after operation. RESULTS: Histologic analysis of the tendon-bone interface showed a fibrous layer formed between the tendon and the bone by the periosteum. This layer became progressively integrated with the tendon and bone surface during the healing process. At 4 weeks, the cancellous bone lining in the bone tunnel was interdigitated with the fibrous interface tissue. At 8 weeks, progressive new bone grew into the interface fibrous layer. At 12 weeks, collagen fibers anchored to the bone and organization with fibrocartilage formation developed between the tendon and bone. Biomechanical testing revealed higher maximal pullout strength in the periosteum-enveloped group at all time points, with a statistically significant difference at 8 and 12 weeks. The periosteum-treated group had a higher interface strength-to-length ratio and significant increase at 8 weeks and 12 weeks. CONCLUSIONS: The histologic and biomechanical studies demonstrated that, if periosteum was sutured on the tendon that was transplanted within a bone tunnel, it resulted in a superior healing process andbetter healed strength. When doing ligament reconstruction with a tendon graft, the periosteum can be sutured to the graft to enhance tendon-bone healing.
机译:目的:修复,将肌腱移植物在骨隧道是主要问题使用移植韧带重建。包含多功能干细胞和骨膜有可能形成成骨的和chondrogenic组织。和生物力学分析检查效果骨膜的tendon-bone愈合内骨隧道。一个动物模型。新西兰白兔。digitorum伸肌肌腱移植到一个胫骨近端骨隧道。从近端胫骨被缝合肌腱表面部分。通过钻孔在近端胫骨拉和胫骨内侧的方面。tendon-bone组织学检查界面和生物力学测试最大撤军负载进行评估4、8、12周后操作。tendon-bone界面显示纤维层肌腱和骨之间形成的骨膜。结合肌腱和骨表面在治疗过程中。松质骨骨隧道衬砌互相交叉纤维界面组织。在8周,进步的新骨生长界面纤维层。纤维固定在骨骼和组织纤维软骨的形成之间的发展肌腱和骨。更高的最大撤军的力量periosteum-enveloped组在各个时间点上,8点统计上的显著差异和12周。strength-to-length率和更高的接口在8周、12周显著增加。结论:组织学和生物力学研究表明,如果骨膜缝合的肌腱移植在骨隧道,它导致了上级愈合过程更好的治愈力量。做与肌腱韧带重建贪污,可以缝合骨膜移植加强tendon-bone愈合。

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