Redler I, Mow V C, Zimny M L, Mansell J
Clin Orthop Relat Res. 1975 Oct(112):357-62.
Thirty specimens of human articular cartilage obtained at surgery were examined by scanning electron microscopy to determine the ultrastructure of the tidemark, the junction of the non-calcified and calcified portions of mature articular cartilage. Three distinct variations of the collagen framework of the tidemark were observed: (1) A band of randomly oriented compacted fibrils that appeared to be continuous with those of the non-calcified and calcified zones. (2) A band of flattened fibrils paralleling the undulating surface of the calcified cartilage. (3) A band of perpendicularly oriented fibrils having a distinct continuous transition between the non-calcified and calcified zones, the amount of calcified material applied about the fibrils rapidly increasing as the fibrils entered the calcified zone. The tidemark may serve to provide a tethering mechanism for the relatively flexible and perpendicularly oriented collagen fibrils of the deepest portion of the non-calcified articular cartilage and may prevent them from being sheared at their point of anchorage to the calcified zone. The undulating pattern of the tidemark affords a strong geometric pattern in providing resistance to the shearing action of articulation. Small gaps present in the tidemark may provide pathways for the passage of nutrients into the deep non-calcified zone of articular cartilage from the subchondral bone.
对手术中获取的30份人类关节软骨标本进行扫描电子显微镜检查,以确定潮标的超微结构,潮标是成熟关节软骨非钙化部分与钙化部分的交界处。观察到潮标胶原框架有三种不同变化:(1)一条由随机排列的紧密纤维组成的带,似乎与非钙化区和钙化区的纤维连续。(2)一条扁平纤维带,与钙化软骨的起伏表面平行。(3)一条垂直排列的纤维带,在非钙化区和钙化区之间有明显的连续过渡,随着纤维进入钙化区,纤维周围钙化物质的量迅速增加。潮标可能为非钙化关节软骨最深处相对柔韧且垂直排列的胶原纤维提供一种系留机制,并可能防止它们在锚固到钙化区的点处被剪切。潮标的起伏模式在提供抗关节剪切作用方面提供了一种强大的几何模式。潮标中存在的小间隙可能为营养物质从软骨下骨进入关节软骨深部非钙化区提供通道。