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Articular Disc of a Human Temporomandibular Joint: Evaluation through Light Microscopy Immunofluorescence and Scanning Electron Microscopy

机译:人体颞下颌关节的关节盘:通过光学显微镜免疫荧光和扫描电子显微镜评估

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摘要

The extracellular matrix of the articular disc in a temporomandibular joint (TMJ) is composed mainly of collagen I and elastin. The collagen is important for resisting tensile forces, while the elastin is responsible to maintain the shape after deformation. We studied the orientation of collagen and elastin in a normal human temporomandibular joint disc by light microscopy, immunofluorescence and scanning electron microscopy. Our results demonstrated that collagen and elastin run parallel to each other in the intermediate zone with an anteroposterior orientation. From here, the orientation of two fibers groups changes into a disordered arrangement in the transition zone. Numerous elastic fibers cross with the collagen fibers, defining an interwoven knitted arrangement. The evaluation of the disc–condyle relationship shows that the medial margin of the articular disc is inserted directly at the superficial layer of the mandibular condylar cartilage. Therefore, the tensile properties of the TMJ disc are expressed in the directions corresponding to the orientation of the collagen fibers, and the complex orientation of elastin with the collagen determines the maintaining of the shape after the stresses by the joint movements. Moreover, the direct anatomical relationship between the articular disc and the mandibular condyle makes a decisive contribution to the understanding of TMJ movements.
机译:颞下颌关节(TMJ)中关节盘的细胞外基质主要由胶原I和弹性蛋白组成。胶原蛋白对于抗拉伸力很重要,而弹性蛋白负责在变形后保持形状。我们通过光学显微镜,免疫荧光和扫描电子显微镜研究了在正常人体颞下颌关节盘中的胶原蛋白和弹性蛋白的取向。我们的结果表明,胶原蛋白和弹性蛋白在具有前后取向的中间区域中彼此平行延伸。从这里,两根纤维组的取向变为过渡区中的无序排列。许多弹性纤维与胶原纤维交叉,限定了交织的针织布置。对盘髁关系的评估表明,关节盘的内侧缘直接插入下颌髁软骨的浅层层。因此,TMJ盘的拉伸性质在与胶原纤维的取向对应的方向上表达,并且ELASTIN与胶原蛋白的复杂取向决定了通过关节运动后应力之后的形状的保持。此外,关节盘和下颌髁之间的直接解剖关系对对TMJ运动的理解作出决定性的贡献。

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