Suppr超能文献

使用脉冲Nd:YAG激光封闭开放牙本质小管的适宜条件。

Suitable conditions for sealing of open dentinal tubules using a pulsed Nd:YAG laser.

作者信息

Zapletalová Zdenka, Perina Jan, Novotný Radko, Chmelícková Hana

机构信息

Clinic of Dentistry, Faculty of Medicine, Palacký University, Czech Republic.

出版信息

Photomed Laser Surg. 2007 Dec;25(6):495-9. doi: 10.1089/pho.2007.2085.

Abstract

UNLABELLED

BACKGROUND DATA AND OBJECTIVES: Nd:YAG laser radiation has been applied in treatment of dentine hypersensitivity; dentine melt created after irradiation on a tooth surface can occlude open dentinal tubules. Different conditions (energy of pulses, number of successive irradiations, and type of dye agent) have been reported in the literature. In our study, different conditions are compared and the most suitable ones are suggested.

METHODS

One hundred nine dentine samples prepared from extracted human third molars in the form of 2- or 3-mm thick discs and facets from an outer convex surface of a root were irradiated by pulses with duration 0.3 ms and beam diameter 0.3 or 0.6 mm. The laser repetition rate was 15 Hz. Energies per pulse have been changed from 20 mJ to 250 mJ (the corresponding energy densities rho are 22 and 275 J/cm(2) for the beam diameter of 0.3 mm). Dyes including tartrazine, carmine indigo, erythrosin, and methylene blue have been used to cover dentine surfaces and to increase absorption of laser radiation. Irradiated dentine surfaces have been investigated using scanning electron microscopy.

RESULTS

Sealing of open dentinal tubules can be accomplished even without dyes, provided that a sufficiently intense laser radiation level is used. To avoid damage to the dentine's surface the use of dyes is necessary. Erythrosin has been found to be the best agent, and closing of dentinal tubules occurred after four doses of irradiation with 30-mJ pulses with a beam diameter of 0.6 mm (energy density rho = 8.25 J/cm(2), total energy density rho(T) = 33 J/cm(2)). The upper limit has been reached using four doses of irradiation by 90-mJ pulses with a beam diameter of 0.3 mm (rho = 99 J/cm(2), rho(T) = 396 J/cm(2)).

CONCLUSIONS

Occluding dentinal tubules can safely and effectively be accomplished using pulsed Nd:YAG laser radiation provided that the dentine surface is covered with erythrosin solution.

摘要

未标记

背景数据与目的:钕钇铝石榴石(Nd:YAG)激光辐射已应用于牙本质过敏症的治疗;牙齿表面照射后产生的牙本质熔融物可封闭开放的牙本质小管。文献中报道了不同的条件(脉冲能量、连续照射次数和染料类型)。在我们的研究中,对不同条件进行了比较并提出了最合适的条件。

方法

从拔除的人类第三磨牙制备109个牙本质样本,制成2毫米或3毫米厚的圆盘以及牙根外凸面的小平面,用持续时间为0.3毫秒、光束直径为0.3或0.6毫米的脉冲进行照射。激光重复频率为15赫兹。每个脉冲的能量从20毫焦变化到250毫焦(对于0.3毫米的光束直径,相应的能量密度ρ为22和275焦/平方厘米)。使用包括酒石黄、胭脂红、赤藓红和亚甲蓝在内的染料覆盖牙本质表面,以增加激光辐射的吸收。使用扫描电子显微镜对照射后的牙本质表面进行研究。

结果

即使不使用染料,只要使用足够强的激光辐射水平,也可以实现开放牙本质小管的封闭。为避免损伤牙本质表面,使用染料是必要的。已发现赤藓红是最佳试剂,在用光束直径为0.6毫米的30毫焦脉冲进行四次照射后(能量密度ρ = 8.25焦/平方厘米,总能量密度ρ(T) = 33焦/平方厘米),牙本质小管封闭。使用光束直径为0.3毫米的90毫焦脉冲进行四次照射(ρ = 99焦/平方厘米,ρ(T) = 396焦/平方厘米)已达到上限。

结论

只要牙本质表面覆盖有赤藓红溶液,使用脉冲Nd:YAG激光辐射可以安全有效地封闭牙本质小管。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验