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陶瓷托槽的铥光纤激光去粘接。

Ceramic bracket debonding with Tm:fiber laser.

出版信息

J Biomed Opt. 2016 Jun 1;21(6):65007. doi: 10.1117/1.JBO.21.6.065007.

Abstract

Lasers have the potential for reducing the required debonding force and can prevent the mechanical damage given to the enamel surface as a result of conventional debonding procedure. However, excessive thermal effects limit the use of lasers for debonding purposes. The aim of this study was to investigate the optimal parameters of 1940-nm Tm:fiber laser for debonding ceramic brackets. Pulling force and intrapulpal temperature measurements were done during laser irradiation simultaneously. A laser beam was delivered in two different modes: scanning the fiber tip on the bracket surface with a Z shape movement or direct application of the fiber tip at one point in the center of the bracket. Results showed that debonding force could be decreased significantly compared to the control samples, in which brackets were debonded by only mechanical force. Intrapulpal temperature was kept equal or under the 5.5°C threshold value of probable thermal damage to pulp. Scanning was found to have no extra contribution to the process. It was concluded that using 1940-nm Tm:fiber laser would facilitate the debonding of ceramic brackets and can be proposed as a promising debonding tool with all the advantageous aspects of fiber lasers.

摘要

激光有降低所需的离合力的潜力,并可以防止由于常规离断程序而对釉质表面造成的机械损伤。然而,过度的热效应限制了激光在离断目的中的使用。本研究旨在探讨 1940nm Tm:光纤激光用于离断陶瓷托槽的最佳参数。在激光照射过程中同时进行拉力和牙髓内温度测量。激光束以两种不同的模式传输:在托槽表面上以 Z 形运动扫描光纤尖端,或在托槽中心的一个点直接应用光纤尖端。结果表明,与仅通过机械力离断的对照组相比,离合力可以显著降低。牙髓内温度保持在可能对牙髓造成热损伤的 5.5°C 阈值以下。扫描被发现对该过程没有额外的贡献。结论是,使用 1940nm Tm:光纤激光将有助于离断陶瓷托槽,并可以作为一种有前途的离断工具,具有光纤激光的所有有利方面。

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