1940nm铥光纤激光器用于陶瓷支架的激光脱粘

A. S. Sarp, M. Gülsoy
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引用次数: 0

摘要

正畸学是齿科的一个分支,与错牙的矫正有关。托架是附着在每颗牙齿上的小附着物和托架的一部分,在治疗后,它们通常用常规方法脱落,但这可能会对牙釉质造成机械损伤。激光去粘是陶瓷支架去粘的一个新的研究方向。在脱粘的同时使用激光可以减少粘接树脂的粘合力,从而更容易应用,并降低牙釉质损伤的风险。然而,一些激光产生的热量会损坏牙髓。可以接受5.5℃作为髓内温差的阈值。本研究将连续模式1940-nm铥光纤激光器应用于用Bis-GMA型粘接树脂粘接在牛牙齿上的多晶陶瓷支架上。测量了断裂时间和断裂点处的载荷。在此期间,用k型热电偶记录了髓内温度的变化。激光参数的确定使得牙髓内温度低于阈值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser debonding of ceramic brackets using a 1940-nm Thulium Fiber Laser
Orthodontics is a branch of dentistry which related in correction of maloccculsions Bracket are small attachments and the part of the braces that attach to each tooth, After treatment they usually debond by conventional methods but this can cause mechanical damage on the enamel. Using lasers in debonding is a new kind of research area in debonding of ceramic brackets. Using lasers while debonding reduces the force of the bonds in adhesive resin that application easier and reduces the risk of enamel damage. However, the heat produced by some lasers can damage the tooth pulp. 5.5°C is accepted as the threshold value for difference in intrapulpal temperature. In this study 1940-nm Thulium Fiber Laser in CW (Continious mode) applied on polycrystalline ceramic brackets which are bonded on bovine teeth by Bis-GMA type adhesive resin. Breaking time and the load at the breaking point were measured. During that time, the changes in intrapulpal temperatures were recorded by a K-type Thermocouple. Laser parameters are determined such that intrapulpal temperature changes below the threshold value.
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