华西口腔医学杂志

• 临床研究 • 上一篇    下一篇

Nd: YAG激光根管内照射时牙根表面温度的变化

黎远皋 王霄 谢克贤 刘丹   

  1. 北京大学第三医院口腔科,北京100191
  • 出版日期:2014-10-01 发布日期:2014-10-01
  • 通讯作者: 黎远皋,副主任医师,学士,E-mail:H12508@sina.com
  • 作者简介:黎远皋,副主任医师,学士,E-mail:H12508@sina.com

Temperature variation at the external root surface during Nd: YAG laser irradiation in the root canal in vitro

Li Yuangao, Wang Xiao, Xie Kexian, Liu Dan.   

  1. Dept. of Stomatology, Peking University Third Hospital, Beijing 100191, China
  • Online:2014-10-01 Published:2014-10-01

摘要:

目的 应用Nd: YAG激光进行根管内照射,测量不同能量及频率照射下牙根表面不同部位的温度变化,评价激光根管内消毒过程中牙根邻近组织的安全性。方法 收集30颗单根管恒牙,在牙颈部截去牙冠,截取12 mm牙根,根管预备后制成牙根标本,数字化牙科X线机颊舌向平行照射牙根标本,图像分析软件测量牙根颈部(根颈段)和根部(根尖段)中份的邻面根管壁厚度。将牙根标本根据激光照射能量的不同(1.5、3.0、4.5 W)随机分为3组,每组又根据激光照射频率的不同(15、30 Hz)分为2个亚组。将温度测量仪中的两个热电偶分别固定在牙根标本的根颈段及根尖段中份,用Nd: YAG激光通过光导纤维经根管口导入根管内照射20 s,观察在不同能量及频率照射下牙根表面不同部位的温度变化情况。结果 应用不同功率照射,牙根表面温度上升变化有统计学差异(P<0.01),功率越大,温度上升越多;在相同功率不同频率照射下,牙根表面温度上升变化无统计学差异(P>0.05)。在相同功率及频率条件下照射,根尖段温度上升较根颈段大,二者有统计学差异(P<0.01)。结论 Nd: YAG激光根管内照射消毒时牙根表面温度上升幅度与照射功率、照射时间及牙根厚度相关,在照射时间20 s功率1.5 W的情况下,牙根及牙周组织是安全的。

关键词: Nd: YAG激光, 温度变化, 牙本质厚度

Abstract:

Objective To assess the temperature variation of the root surface using Nd: YAG laser irradiation in the root canal with different power and to evaluate the safety of laser application on the periodontal region. Methods Thirty extracted human teeth with single-roots were collected. The teeth were cross-sectioned in the cervical portion, standardizing the roots at a 12-mm length. The roots were used as specimen. The roots were radiographed in the buccal-lingual direction to measure the thickness of the proximal walls, by means of a digital radiographic system. The specimens were divided into three groups according to the laser potency (1.5, 3.0, and 4.5 W). Each group was subdivided into two subgroups according to laser frequency (15 and 30 Hz). With the Nd: YAG laser irradiation for 20 s, the temperature variation of the root surface was monitored by thermocouples located at different parts of the root external wall and recorded by digital thermometers. Results The groups irradiated with 4.5 W presented the greatest temperature variation (above 10 ℃), followed by 3.0 and 1.5 W. The temperatures were statistically different (P<0.01). The groups irradiated in the same potency, regardless of whether 15 Hz or 30 Hz was used, presented with no statistical difference (P>0.05). The apical half of the root presented statistically higher temperature rises than the cervical half of the root (P<0.01). Conclusion The temperature variation of the root surface was associated with laser power, irradiation time, and the thickness of dentin. Application of Nd: YAG laser in the root at 1.5 W for 20 s can safely be used in endodontic treatment.

Key words: Nd: YAG laser, temperature variation, thickness of dentin