模拟牙髓液循环过程中445nm二极管激光辅助自结合陶瓷支架脱粘引起的牙髓内温度升高。

Q2 Medicine
Photomedicine and laser surgery Pub Date : 2018-04-01 Epub Date: 2018-01-03 DOI:10.1089/pho.2017.4356
Steffen Stein, Johannes Wenzler, Andreas Hellak, Michael Schauseil, Heike Korbmacher-Steiner, Andreas Braun
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引用次数: 5

摘要

目的:研究445nm激光辅助陶瓷托槽脱粘后牙髓温度升高的情况。材料与方法:将18个陶瓷托槽按标准方式粘接在18颗无龋人第三磨牙上。通过泵送37℃蒸馏水通过牙髓腔,模拟牙髓液循环。支架用445nm二极管激光照射。使用热像仪测量基线(T0)、激光应用开始和结束(T1和T2)时P1点(牙髓中心)和P2点(牙硬组织)的温度,以及整个过程中的最高值(Tmax)。结果:T0、T1、T2和Tmax在P1和P2测得的温度有显著差异。在P1和P2点、T1和T2之间、T1和Tmax之间以及T2和Tmax之间,温度显著升高。P2最大值显著高于P1。浆料测得的最大温升为2.23℃,低于5.5℃的临界阈值。结论:基于所使用的激光设置,445nm二极管激光辅助陶瓷托槽脱粘对牙髓活力无影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intrapulpal Temperature Increases Caused by 445-nm Diode Laser-Assisted Debonding of Self-Ligating Ceramic Brackets During Simulated Pulpal Fluid Circulation.

Objective: This study investigated temperature increases in dental pulp resulting from laser-assisted debonding of ceramic brackets using a 445-nm diode laser.

Materials and methods: Eighteen ceramic brackets were bonded in standardized manner to 18 caries-free human third molars. Pulpal fluid circulation was simulated by pumping distilled water at 37°C through the pulp chamber. The brackets were irradiated with a 445-nm diode laser. Temperatures were measured using a thermal camera at points P1 (center of the pulp) and P2 (in the hard dental tissue) at the baseline (T0), at the start and end of laser application (T1 and T2), and the maximum during the sequence (Tmax).

Results: Significant differences in the temperatures measured at P1 and P2 were observed among T0, T1, T2, and Tmax. Significant increases in temperature were noted at points P1 and P2, between T1 and T2, T1 and Tmax, and T2 and Tmax. The maximum P2 values were significantly higher than at P1. The maximum temperature increase measured in the pulp was 2.23°C, lower than the critical threshold of 5.5°C.

Conclusions: On the basis of the laser settings used, there is no risk to the vitality of dental pulp during laser-assisted debonding of ceramic brackets with a 445-nm diode laser.

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来源期刊
CiteScore
4.50
自引率
0.00%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Photobiomodulation, Photomedicine, and Laser Surgery (formerly Photomedicine and Laser Surgery) is the essential journal for cutting-edge advances and research in phototherapy, low-level laser therapy (LLLT), and laser medicine and surgery. The Journal delivers basic and clinical findings and procedures to improve the knowledge and application of these techniques in medicine.
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