Enamel of primary teeth--morphological and chemical aspects.

Swedish dental journal. Supplement Pub Date : 2012-01-01
Nina Sabel
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Abstract

Enamel is one of the most important structures of the tooth, both from a functional and esthetic point of view. Primary enamel carries registered information regarding metabolic and physiological events that occurred during the period around birth and the first year of life. Detailed knowledge of normal development and the structure of enamel is important for the assessment of mineralization defects. The aim of the thesis is to add more detailed information regarding the structure of primary enamel. The structural appearance of the neonatal line and the quantitative developmental enamel defect, enamel hypoplasia, was thoroughly investigated with a polarized light microscope, microradiography and scanning electron microscope. X-ray microanalysis of some elements was also performed across the enamel and the neonatal line. Postnatal mineralization of enamel at different ages and from different individuals was studied regarding the chemical content, by using secondary ion mass spectrometry. The enamel's response to demineralization was investigated in relation to the individual chemical content and the degree of mineralization of the enamel, by using polarized light microscope, microradiography, scanning electron microscope and X-ray microanalysis. The neonatal line is a hypomineralized structure seen as a step-like rupture in the enamel matrix. The neonatal line is due to disturbances in the enamel secretion stage. The enamel prisms in the postnatal enamel appeared to be smaller than the prenatal prisms. The hypoplasias showed a rough surface at the base and no aprismatic surface layer was seen in the defect. The enamel of the rounded border of hypoplasia appeared to be hypomineralized, with the bent prisms not being densely packed. Mineralization of enamel is a gradual process, still continuous at 6 months postnatally in the primary mandibular incisors. The thickness of the buccal enamel is reached at 3-4 months of age. Demineralization of enamel depends on the degree of mineralization and the chemical content of the enamel exposed. In a more porous enamel, deeper lesions will develop. The posteruptive maturation has a beneficial effect on the enamel's resistance to demineralization.

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乳牙的牙釉质——形态和化学方面。
从功能和审美的角度来看,牙釉质是牙齿最重要的结构之一。初级牙釉质携带着关于出生前后和生命第一年发生的代谢和生理事件的记录信息。详细了解牙釉质的正常发育和结构对评估矿化缺陷非常重要。本论文的目的是增加有关初级牙釉质结构的更详细的信息。采用偏光显微镜、显微放射照相和扫描电镜对新生儿系的结构外观和釉质发育不全进行了详细的研究。一些元素的x射线微量分析也进行了跨牙釉质和新生儿线。用二次离子质谱法研究了不同年龄、不同个体出生后牙釉质矿化的化学成分。采用偏光显微镜、显微放射照相、扫描电镜和x射线显微分析等方法,研究了牙釉质对脱矿的反应与牙釉质个体化学成分和矿化程度的关系。新生儿线是一种低矿化结构,表现为牙釉质基质的阶梯状破裂。新生儿线是由于珐琅质分泌阶段的紊乱。出生后牙釉质的牙釉质棱柱比出生前小。发育不全的基部表面粗糙,未见棱柱状面层。发育不全的圆缘牙釉质呈低矿化,弯曲的棱柱排列不密。牙釉质矿化是一个渐进的过程,在出生后6个月,初级下颌切牙的牙釉质矿化仍然持续。牙釉质的厚度在3-4个月时形成。牙釉质的脱矿取决于牙釉质的矿化程度和暴露的牙釉质的化学成分。牙釉质越多孔,就会形成更深的损伤。牙后成熟对牙釉质抗脱矿能力有一定的促进作用。
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Experimental tooth clenching. A model for studying mechanisms of muscle pain. On implementation of an endodontic program. Evaluation of surgically assisted rapid maxillary expansion and orthodontic treatment. Effects on dental, skeletal and nasal structures and rhinological findings. Masticatory function and temporomandibular disorders in patients with dentofacial deformities. On dental caries and dental erosion in Swedish young adults.
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