[Aluminous cement for dental application (author's transl)].

S Takeda
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Abstract

The various materials such as zinc oxide eugenol pastes, calcium hydroxide slurry and self hardening polymers have been used for the root canal filling and pulp capping. However, those materials have various problems in terms of biocompatibility and physical properties in clinical use. The development of root canal filling and pulp capping materials has been carried out with powder-liquid system which consisted of aluminous cement added to 20 wt% Ca (OH)2 and polyvinylalcohol solutions. The influence of polyvinylalcohol concentrations and L/P ratio on physical properties and biocompatibility were investigated. The results were as follows: 1. The initial setting time was showed between 3 and 20 minutes according to polyvinylalcohol concentration and L/P ratio and delayed linearly by increasing the L/P ratio. 2. The consistency was indicated between 18 and 51 mm with polyvinylalcohol concentration and L/P ratio. The lower the L/P ratio, the thicker was the consistency. 3. The solubilities in distilled water were 2.7-7.3% and 3.9-8.4%, respectively, after storage for 24 hours and 1 week, while those values in 199 medium were 2.9-6.2% and 4.4-9.9%, respectively, after storage for 24 hours and 1 week. 4. The pH values in distilled water were indicated high alkaline conditions of about 11.5 after storage for 24 hours and was not influenced by the repeated immersions. On the other hand, the pH values in 199 medium were showed high alkaline conditions of about 11.0 after storage for 24 hours, but decreased rapidly to the neutral conditions of about 8.0 with the repeated immersion. 5. The compressive strengths were increased by the use of higher polyvinylalcohol concentration and lower L/P ratio and indicated from 26 kg/cm2 and 278 kg/cm2. 6. By the use of the tissue culture method, mild response with the un-set cement was recognized from the morphological observation. In the case of the set cement, the cell morphological changes showed no significant difference in the cytotoxicity compared with that of control culture. The disappearance of the cytotoxicity was recognized in according to the progress of setting process.

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[牙科用铝质水泥(作者简介)]。
氧化锌丁香酚糊剂、氢氧化钙浆剂和自硬化聚合物等材料已被广泛用于根管充填和牙髓盖盖。然而,在临床应用中,这些材料在生物相容性和物理性能方面存在各种问题。采用掺加20 wt% Ca (OH)2的铝质水泥和聚乙烯醇溶液组成的粉末-液体体系,研制了根管充填和盖髓材料。研究了聚乙烯醇浓度和L/P比对聚乙烯醇物理性能和生物相容性的影响。实验结果如下:1.实验结果表明:聚乙烯醇浓度和L/P比不同,初凝时间在3 ~ 20 min之间,随着L/P比的增加,初凝时间呈线性延迟。2. 在聚乙烯醇浓度和L/P比下,浓度在18 ~ 51 mm之间。L/P越低,稠度越浓。3.在蒸馏水中,24小时和1周的溶解度分别为2.7-7.3%和3.9-8.4%,在199培养基中,24小时和1周的溶解度分别为2.9-6.2%和4.4-9.9%。4. 蒸馏水保存24小时后pH值为11.5左右的高碱性,不受反复浸泡的影响。另一方面,199培养基的pH值在贮存24小时后呈现11.0左右的高碱性状态,但随着反复浸泡,pH值迅速下降到8.0左右的中性状态。5. 聚乙烯醇浓度越高,L/P比越低,抗压强度越高,从26 kg/cm2到278 kg/cm2。6. 通过组织培养的方法,从形态学观察中可以识别出未凝固水泥的轻微反应。在水泥凝固的情况下,细胞形态变化与对照培养相比,细胞毒性没有显著差异。根据凝固过程的进展,发现细胞毒性消失。
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[Studies on sintering of dental porcelain. (Part 2) Binary system sintering of quartz and low fusing frit (author's transl)]. [Thermal behavior of phosphate-bonded investment. Part 2. Reactions in the systems of MgO-MgNH4PO4.6H2O and MgO-NH4H2PO4 (author's transl)]. [Aluminous cement for dental application (author's transl)]. [Thermal behavior of phosphate-bonded investment. Part 1. Thermal behavior of MgNH4PO4.6H2O (author's transl)]. [A fundamental study of the fabrication of a medical prosthesis by slip casting (author's transl)].
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