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The interface between bone and tendon at an insertion site: a study of the quadriceps tendon insertion

机译:骨骼和肌腱在插入部位的界面:股四头肌腱插入的研究

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摘要

Traumatic avulsions of ligament or tendon insertions rarely occur at the actual interface with bone, which suggests that this attachment is strong or otherwise protected from injury by the structure of the insertion complex. In this study we describe the terminal extent of quadriceps tendon fibres where they insert into the patellae of adult rabbits, humans, dogs and sheep. Specimens were examined by scanning electron microscopy (SEM) and light microscopy (LM). To facilitate tracing of tendon fibres the specimens were decalcified for SEM, and polarised light microscopy (PLM) was used in the LM segment of the study. By SEM it was possible to identify mature bone by the presence of osteocytes and a lamellar organisation. PLM and SEM showed that, unlike tendon fibres elsewhere, those in the calcified fibrocartilage were not crimped. No specific cement line was identified by SEM. Tendon fibres interdigitated among separate bone lamellar systems, (osteons or marrow spaces), but did not merge with the collagen systems of individual lamellae. The interdigitation was more extensive and the margin between tendon and bone was less distinct in the anterior third of the insertion. The segment of calcified tendon which interdigitated with bone stained less intensely blue and was less cellular than the more proximal calcified fibrocartilage zone adjacent to the tidemark. Lamellar collagen fibres of the bony trabeculae in the anterior patella were unusually parallel and longitudinal in orientation, making distinction of interposed tendon fibres difficult on LM and PLM sections. LM, SEM and transmission electron microscopy of rabbit patellae at birth revealed that anterior quadriceps tendon fibres extended over the patella in a fibrous cellular layer. By 2 wk of age, this layer had acquired chondroid features (i.e. cell lacunae and metachromasia) and contained vessels extending from patellar marrow. At 6 wk of age, part of this fibrocartilaginous layer was replaced by mature bone and osteoid. In the young adult animal, the quadriceps tension interdigitates extensively with the patellar bone. This segment of the insertion is perhaps the remnant of calcified fibrocartilage which has been remodelled by bone formation.
机译:韧带或肌腱插入的创伤性撕脱很少发生在与骨骼的实际界面处,这表明这种附着很牢固,或者通过插入复合物的结构保护免受伤害。在这项研究中,我们描述了股四头肌腱纤维的末端范围,它们插入成年兔,人,狗和绵羊的骨中。通过扫描电子显微镜(SEM)和光学显微镜(LM)检查样品。为了便于追踪肌腱纤维,将样品脱钙以进行SEM,并在研究的LM段中使用了偏振光显微镜(PLM)。通过SEM可以通过骨细胞和层状组织的存在来鉴定成熟的骨。 PLM和SEM显示,与其他地方的肌腱纤维不同,钙化纤维软骨中的纤维没有卷曲。 SEM未鉴定出具体的水泥线。肌腱纤维在单独的骨层系统(骨或骨髓间隙)之间相互交叉,但未与单个层的胶原系统融合。在插入的前三分之一处,交叉指的范围更大,腱和骨之间的边缘不太明显。与靠近骨头的钙化肌腱节段相比,靠近指尖的钙化肌腱节段的蓝色染色更浅且细胞更少。骨前骨小梁的层状胶原纤维的取向异常平行和纵向,这使得在LM和PLM切片上难以区分插入的肌腱纤维。兔,骨出生时的LM,SEM和透射电镜显示,股四头肌前肌腱纤维在cellular骨的纤维细胞层中延伸。到2周龄时,该层已获得软骨样特征(即细胞腔隙和变色),并包含从pa骨骨髓延伸的血管。在6周龄时,该纤维软骨层的一部分被成熟的骨骼和类骨质所取代。在年轻的成年动物中,股四头肌张力与tell骨广泛交叉。插入的这一部分可能是钙化纤维软骨的残余,其已被骨形成重塑。

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