Palamara J, Phakey P P, Rachinger W A, Orams H J
Adv Dent Res. 1989 Sep;3(2):249-57. doi: 10.1177/08959374890030022601.
A transmission electron microscope (TEM) study was made of spindles and tufts as identified in the light microscope, from samples prepared by selected-area argon-ion-beam thinning. Spindles in human dental enamel were found to be continuous with dentinal tubules across the dentin-enamel junction (DEJ) and usually appeared at the DEJ as electron-lucent, empty channels nearly circular in cross-section. The spindles were found to cross prism boundaries, branched rarely, and some were occasionally found to be occluded or partially occluded with small needle-like crystals (approximately 5 nm width and approximately 70 nm length), granular material (approximately 1.5 nm diameter) and/or amorphous material. Near the DEJ, the majority of spindles had a diameter less than 2 microns, while in the prismatic enamel away from the DEJ, spindles with a diameter greater than 2 microns were generally found. Spindle varicosity was characterized by an enlargement of their diameter. Tufts started at the DEJ and were not associated with dentinal tubules. Two types of ultrastructure were observed in the TEM: (i) disrupted regions of enamel incorporating large voids (up to approximately 0.1 microns in diameter), or, more commonly, (ii) channels within the enamel occluded or partially occluded, with small needle-like crystals and granular and/or amorphous material similar to that found in the enamel spindles. It was concluded that spindles and tufts represent areas of hypomineralization with increased void volume and partial remineralization.
利用选区氩离子束减薄制备的样本,对光学显微镜下鉴定出的纺锤体和丛进行了透射电子显微镜(TEM)研究。发现人类牙釉质中的纺锤体与牙本质小管在牙本质-牙釉质交界处(DEJ)相连,在DEJ处通常表现为电子透明的、横截面近乎圆形的空通道。纺锤体穿过棱柱边界,很少分支,偶尔会发现一些被小针状晶体(宽度约5nm,长度约70nm)、颗粒物质(直径约1.5nm)和/或无定形物质堵塞或部分堵塞。在DEJ附近,大多数纺锤体的直径小于2微米,而在远离DEJ的棱柱形牙釉质中,通常发现直径大于2微米的纺锤体。纺锤体膨大变细表现为直径增大。丛从DEJ开始,与牙本质小管无关。在TEM中观察到两种超微结构类型:(i)牙釉质中包含大空隙(直径达约0.1微米)的破坏区域,或者更常见的是(ii)牙釉质内被小针状晶体以及与牙釉质纺锤体中发现的颗粒和/或无定形物质堵塞或部分堵塞的通道。得出的结论是,纺锤体和丛代表了矿化不足且空隙体积增加以及部分再矿化的区域。