Risnes S
Am J Anat. 1979 Mar;154(3):419-36. doi: 10.1002/aja.1001540307.
The prism pattern in the inner enamel of adult rat incisors was studied with the SEM in unfixed tissues that had been sectioned, ground, polished, and etched. Six different types of aberrations in the prism pattern were encountered: 1. Prism lamellae may be shorter than the mesio-lateral width of enamel. 2. Prism lamellae may deviate from a transverse orientation. 3. Prism lamellae may "fuse" or "bifurcate." 4. Prisms of two adjacent lamellae may pursue a common course. 5. Prisms may change direction. 6. Variations exist in the outline of transversely cut prism profiles. Aberrations were observed at any distance from the dentino-enamel junction. These observations were used as a basis for an analysis of the movement of ameloblasts during rat incisor amelogenesis. It was concluded that it is physically possible for the ameloblasts to create the observed aberrations as they move along the path of the prisms. However, the aberrations seem to make it more difficult to understand the factors controlling ameloblast movement. Occasionally crystallite bridges connecting adjacent prisms were observed. A configuration resembling a bifurcating prism is pesented.
利用扫描电子显微镜(SEM)对成年大鼠切牙内釉质中的棱柱模式进行了研究,研究对象为经过切片、研磨、抛光和蚀刻处理的未固定组织。在棱柱模式中发现了六种不同类型的异常:1. 棱柱薄片可能比釉质的近远中宽度短。2. 棱柱薄片可能偏离横向方向。3. 棱柱薄片可能“融合”或“分叉”。4. 两个相邻薄片的棱柱可能走同一路径。5. 棱柱可能改变方向。6. 横向切割的棱柱轮廓的外形存在变化。在距牙本质-釉质界的任何距离处均观察到异常。这些观察结果被用作分析大鼠切牙釉质形成过程中成釉细胞运动的基础。得出的结论是,成釉细胞在沿棱柱路径移动时产生观察到的异常在物理上是可能的。然而,这些异常似乎使理解控制成釉细胞运动的因素变得更加困难。偶尔会观察到连接相邻棱柱的微晶桥。展示了一种类似分叉棱柱的结构。