玻璃离子精液作为窝盖和牙刷的输液和需要

Emma Krisyudhanti
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The specimen was put into a desiccator at 37°C for 22 hours and then put into another desiccator with a temperature of 23°C for 2 hours. The specimen was weighed with a precision scale of 0.1 mg. Measurements are carried out repeatedly until a constant mass is obtained (M1). Next, the specimen was put into 40 ml of aquabides and stored in a desiccator at 37°C for 1 day, 2 days and 7 days. At the end of each immersion time, the specimen was removed from aquabides, dried with suction paper and vibrated in the air for 15 seconds. Specimens are weighed to get M2. The specimens were reconditioned to the desiccator at 37°C for 22 hours and then put into another desiccator with a temperature of 23°C for 2 hours and this procedure was repeated one day later, then the mass was weighed repeatedly until a constant mass was obtained (M3). 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引用次数: 1

摘要

背景:牙窝和牙缝密封剂是一种经常用于预防性维护的材料,特别是在牙齿易患龋齿的咬合面。所有与水接触的修复材料都会经历2种机制,即吸收水,导致基质膨胀,增加质量和水溶性,即未反应单体的组分释放,导致质量降低。目的:测定玻璃离子水门合剂作为牙窝和牙裂覆盖材料的吸水性和溶解度。方法:18个玻璃离子水合密封材料试样,按照生产厂家的说明书进行处理,其中6个试样直径为15mm,厚度为1mm,每次浸泡时间制作。将标本放入37℃干燥器中22 h,再放入另一个23℃干燥器中2 h。样品用0.1 mg的精密秤称重。测量反复进行,直到获得恒定质量(M1)。然后,将标本放入40 ml水凝胶中,在37℃的干燥器中保存1天、2天和7天。在每次浸泡时间结束时,将样品从水凝胶中取出,用吸纸干燥并在空气中振动15秒。称量试样得到M2。将标本在37℃的干燥器中修复22小时,然后放入另一个温度为23℃的干燥器中2小时,一天后重复此过程,然后反复称重,直到获得恒定质量(M3)。研究结果:经Kruskal-Wallis统计检验,浸泡1天、2天、7天材料的平均吸水值和溶解度无显著差异。结论与建议:玻璃离子水门汀覆盖牙坑裂隙的吸收率在第2天呈下降趋势,第7天呈上升趋势,浸泡1天平均吸水性为42.68mg/mm³,浸泡2天吸水性为40、53mg/mm³,浸泡7天吸水性为42.99mg/mm³。覆盖牙坑、牙裂的玻璃离子水门汀在水中的溶解度值下降至第2天,然后上升至第7天,浸泡1天的平均溶解度为41.46mg/mm³,浸泡2天的平均溶解度为39.39mg/mm³,浸泡7天的平均溶解度为41.91 mg/mm³。可以说,浸泡1、2、7天,材料的吸水性和溶解度值没有显著差异。建议在应用玻璃离子水门合剂作为牙坑和牙裂的覆盖时,请注意在提供清漆或保护剂时,以减少材料吸水率和溶解度的发生。此外,盖过牙套的牙窝和牙缝,应在3个月后再加以控制,看牙套是否仍完好无损,或已损坏或松动。还建议进一步研究确定在人工唾液中浸泡7天以上的成分的吸水率和溶解度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Penyerapan Air Dan Kelarutan Bahan Semen Ionomer Kaca Sebagai Penutup Pit Dan Fisur Gigi
BACKGROUND: Pit and fissure sealants are materials that are often used for preventive maintenance, especially on occlusal surfaces of teeth that are susceptible to caries. All restoration materials that come into contact with water will experience 2 mechanisms, namely the absorption of water, which causes matrix swelling and increased mass and water solubility, namely the release of components from unreacted monomers and causing reduced mass. OBJECTIVE: Measure the value of water absorption and solubility of glass ionomer cement as a cover of the pit and fissure of the tooth. METHODS: 18 specimens of glass ionomer cement sealant material manipulated according to the manufacturer's instructions consisted of six specimens measuring 15 mm in diameter and 1 mm in thickness made for each immersion time. The specimen was put into a desiccator at 37°C for 22 hours and then put into another desiccator with a temperature of 23°C for 2 hours. The specimen was weighed with a precision scale of 0.1 mg. Measurements are carried out repeatedly until a constant mass is obtained (M1). Next, the specimen was put into 40 ml of aquabides and stored in a desiccator at 37°C for 1 day, 2 days and 7 days. At the end of each immersion time, the specimen was removed from aquabides, dried with suction paper and vibrated in the air for 15 seconds. Specimens are weighed to get M2. The specimens were reconditioned to the desiccator at 37°C for 22 hours and then put into another desiccator with a temperature of 23°C for 2 hours and this procedure was repeated one day later, then the mass was weighed repeatedly until a constant mass was obtained (M3). RESEARCH RESULTS: The Kruskal-Wallis statistical test shows that there is no significant difference in the average water absorption value and solubility of materials for immersion for 1 day, 2 days and 7 days. CONCLUSIONS AND RECOMMENDATIONS: The absorption rate of glass ionomer cement as a cover of dental pit & fissure decreased until the second day and increased until the seventh day, with an average absorption of water for 1 day immersion of 42.68mg/mm³, 2 days 40, 53mg/mm³ and 7 days 42.99mg/mm³. Solubility value in water of glass ionomer cement as a cover of dental pit & fissure decreased until the second day then increased until the seventh day, with an average solubility of material for immersion for 1 day at 41.46mg/mm³, 2 days 39.39mg/mm³ and 7 days 41,91mg/mm³. It was said that there was no significant difference in the value of water absorption and solubility of materials during the immersion period of 1, 2 and 7 days. It is recommended that in the application of glass ionomer cement as a cover of dental pits and fissures, please note in the provision of varnish or protector to reduce the occurrence of water absorption and solubility of the material. In addition, the pit and fissure of the tooth that has been covered should be controlled 3 months later to find out if the cover is still intact or has been damaged or loose. It is also recommended that there is further research to determine the value of water absorption and solubility of ingredients if soaked in artificial saliva for more than 7 days.
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