首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >The structural and compositional transition of the meniscal roots into the fibrocartilage of the menisci
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The structural and compositional transition of the meniscal roots into the fibrocartilage of the menisci

机译:半月板根向半月板的纤维软骨的结构和组成转变

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摘要

The meniscal roots, or insertional ligaments, firmly attach the menisci to tibial plateau. These strong attachments anchor the menisci and allow for the generation of hoop stress in the tissue. The meniscal roots have a ligament-like structure that transitions into the fibrocartilagenous structure of the meniscal body. The purpose of this study was to carry out a complete analysis of the structure and tissue organization from the body of the meniscus through the transition region and into the insertional roots. Serial sections were obtained from the meniscal roots into the meniscal body in fixed juvenile bovine menisci. Sections were stained for collagen and proteoglycans (PG) using fast green and safranin-o staining protocols. Unstained sections were imaged used a backlit stereo microscope. Optical projection tomography (OPT) was employed to evaluate the three-dimensional collagen architecture of the root–meniscus transition in lapine menisci. Tie-fibres were observed in the sections of the ligaments furthest from the bovine meniscal body. Blood vessels were observed to be surrounded by these tie-fibres and a PG-rich region within the ligaments. Near the tibial insertion, the roots contained large ligament-like collagen fascicles. In sections approaching the meniscus, there was an increase in tie-fibre size and density. Small tie-fibres extended into the ligament from the epiligamentous structure in the outermost sections of the meniscal roots, while large tie-fibre bundles were apparent at the meniscus transition. The staining pattern indicates that the root may continue into the outer portion of the meniscus where it then blends with the more fibrocartilage-like inner portions of the tissue. In unstained sections it was observed that the femoral side of the epiligamentous structure surrounding the root becomes more fibrous and thickens in the inferior inner portion of the posterior medial root. This thickening changes the shape of the root to more closely resemble the meniscus wedge shape. These observations support the concept of root continuity with the outer portion of the meniscus, thereby connecting with the hoop-like structure of the peripheral meniscus. OPT identified continuous collagen organization from the root into the meniscal body in longitudinal sections. In the radial direction, the morphology of the root continues into the meniscal body consistent with the serially sectioned bovine menisci. Blood vessels were prevalent on the periphery of the root. These blood vessels then arborized to cover the anterior femoral surface of the meniscus. This is the first study of the structural transition between the insertional ligaments (roots) and the fibrocartilagenous body of the menisci. These new structural details are important to understanding the meniscal load-bearing mechanism in the knee.
机译:半月板根或插入韧带将半月板牢固地附着在胫骨平台上。这些牢固的附件锚定半月板并允许在组织中产生环向应力。半月板根具有韧带样结构,该结构转变成半月板体的纤维软骨组织。这项研究的目的是对从半月板体到过渡区到插入根的整个结构和组织进行完整的分析。从固定的幼年牛半月板的半月板根部进入半月板体获得连续切片。使用快速绿色和番红O染色方案对切片进行胶原蛋白和蛋白聚糖(PG)染色。使用背光立体显微镜对未染色的切片成像。光学投影层析成像(OPT)用于评估高山半月板的根-半月板过渡的三维胶原结构。在距牛半月板体最远的韧带部分观察到领带纤维。观察到血管被这些连接纤维和韧带内富含PG的区域所包围。在胫骨插入处附近,根部包含大韧带状胶原束。在接近弯液面的部分中,束缚纤维的尺寸和密度都有所增加。小束状纤维从半月板根最外面部分的韧皮结构延伸到韧带,而大束状纤维束在半月板过渡处明显。染色模式表明根可能会继续进入弯月面的外部,然后在此与组织的更像纤维软骨样的内部混合。在未染色的切片中,观察到围绕根部的舌外结构的股骨侧在后内侧根的下部内部变得更加纤维化和增厚。这种增厚改变了根的形状,使其更类似于半月板楔形。这些观察结果支持了与弯液面外部的根部连续性的概念,从而与外围弯液面的箍状结构相连。 OPT在纵向切片中从根部到半月板体识别出连续的胶原组织。在径向方向上,根的形态继续进入半月板体,与连续切片的牛半月板一致。血管普遍存在于根的周围。然后将这些血管乔木覆盖半月板的股前表面。这是对半月板插入韧带(根)和纤维软骨组织之间结构过渡的首次研究。这些新的结构细节对于理解膝盖的半月板承重机制很重要。

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