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Numerical modelling of tooth enamel subsurface lesion formation induced by dental plaque

机译:牙菌斑诱发牙釉质亚表面病变形成的数值模拟

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摘要

Using a one-dimensional mathematical model that couples tooth demineralisation and remineralisation with metabolic processes occurring in the dental plaque, two mechanisms for subsurface lesion formation were evaluated. It was found that a subsurface lesion can develop only as the result of alternating periods of demineralisation (acid attack during sugar consumption) and remineralisation (resting period) in tooth enamel with uniform mineral composition. It was also shown that a minimum plaque thickness that can induce an enamel lesion exists. The subsurface lesion formation can also be explained by assuming the existence of a fluoride-containing layer at the tooth surface that decreases enamel solubility. A nearly constant thickness of the surface layer was obtained with both proposed mechanisms. Sensitivity analysis showed that surface layer formation is strongly dependent on the length of remineralisation and demineralisation cycles. The restoration period is very important and the numerical simulations support the observation that often consumption of sugars is a key factor in caries formation. The calculated profiles of mineral content in enamel are similar to those observed experimentally. Most probably, both studied mechanisms interact in vivo in the process of caries development, but the simplest explanation for subsurface lesion formation remains the alternation between demineralisation and remineralisation cycles without any pre-imposed gradients.
机译:使用将牙齿脱矿质和再矿化与牙菌斑中发生的代谢过程耦合的一维数学模型,评估了表面下病变形成的两种机制。已经发现,仅在矿物质成分均一的牙釉质中,仅在交替的脱矿质(糖消耗过程中发生酸侵蚀)和再矿化(静息期)期间,才可能发展为地下病变。还显示存在可诱发釉质损伤的最小斑块厚度。还可以通过假设牙齿表面存在降低搪瓷溶解度的含氟化物层来解释地下病变的形成。通过两种提出的机制都获得了几乎恒定的表面层厚度。敏感性分析表明,表层的形成在很大程度上取决于再矿化和去矿质循环的时间。恢复期非常重要,数值模拟支持观察到经常消耗糖是龋齿形成的关键因素。搪瓷中矿物质含量的计算轮廓与实验观察到的相似。最有可能的是,这两种研究的机制都在龋齿发展过程中在体内发生相互作用,但是对地下病变形成的最简单解释仍然是脱矿和再矿化循环之间的交替,没有任何预先设定的梯度。

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