Sernetz F, Kraut J
University of Pennsylvania, School of Dental Medicine, Philadelphia.
J Clin Dent. 1991;2(4):87-91.
The purpose of this laboratory study was to define the working parameters and physiological safety and efficacy of the Dentaurum Ceramic Debonding Unit. Extracted mandibular incisors were utilized because of their low thermal mass and low heat sensitivity. The teeth were embedded in plastic and placed on a turning force measuring apparatus. An electrothermal element was placed in the pulp chamber (filled with a conducting paste). The thermoelement temperature was registered on y-t recorder as was the turning momentum required to remove the ceramic brackets with the Dentaurum Ceramic Debonding Unit. Ceramic brackets from GAC (Allure III), Unitek (Transcend) and Dentaurum (Fascination) using one and two component adhesives (Monolok, Concise), were tested. Scanning electron microscopic views taken after debonding showed predictable (and favorable) adhesive failure at the bracket base/resin interface. No enamel damage was demonstrated. All brackets were removable under three seconds with a clinically reproducible turning force of 85-100 Nmm allowing for intrapulpal temperature increases under the 5 degrees C biocompatible threshold. The Dentaurum Ceramic Debonding Unit provided a safe, reliable, efficient modality of removing ceramic brackets while maintaining a physiologically acceptable rise in pulpal temperature without damage to tooth enamel or pulpal tissue.
本实验室研究的目的是确定登泰克陶瓷脱粘装置的工作参数、生理安全性及有效性。由于下颌切牙的热质量低且热敏感性低,故选用拔除的下颌切牙。将牙齿嵌入塑料中,并放置在一个转动力测量装置上。在牙髓腔中放置一个电热元件(腔内填充有导电糊剂)。热电元件的温度以及使用登泰克陶瓷脱粘装置移除陶瓷托槽所需的转动力矩均记录在y-t记录仪上。对使用单组分和双组分粘合剂(Monolok、Concise)的GAC(Allure III)、Unitek(Transcend)和登泰克(Fascination)陶瓷托槽进行了测试。脱粘后拍摄的扫描电子显微镜图像显示,在托槽底座/树脂界面出现了可预测的(且良好的)粘结破坏。未发现釉质损伤情况。所有托槽均可在三秒内移除,临床可重复的转动力矩为85 - 100 Nmm,牙髓腔内温度升高在5摄氏度的生物相容性阈值以下。登泰克陶瓷脱粘装置提供了一种安全、可靠、高效的移除陶瓷托槽的方式,同时保持牙髓温度在生理可接受范围内升高,且不会对牙釉质或牙髓组织造成损伤。