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铒激光用于乳牙和恒牙窝洞制备的评估:扫描电子显微镜和热成像研究

Assessment of Er:YAG laser for cavity preparation in primary and permanent teeth: a scanning electron microscopy and thermographic study.

作者信息

Al-Batayneh Ola B, Seow W Kim, Walsh Laurence J

机构信息

Department of Preventive Dentistry, Faculty of Dentistry, Jordan University of Science and Technology, Ar Ramtha, Irbid, Jordan.

Centre for Paediatric Dentistry, The University of Queensland School of Dentistry, Brisbane, Queensland, Australia.

出版信息

Pediatr Dent. 2014 May-Jun;36(3):90-4.

Abstract

PURPOSE

Most studies of cavity preparation using Er:YAG lasers have employed permanent teeth. This study's purpose was to compare the cutting efficiency of an Er:YAG laser versus diamond burs in primary and permanent teeth in order to measure thermal effects on the pulp and evaluate lased surfaces using scanning electron microscopy (SEM).

METHODS

A total of 80 primary and permanent teeth were used. Crater depths and mass loss were measured after delivering laser pulses at varying energies onto sound or carious enamel or dentin using the Key-3 laser. Control samples were cut using diamond burs in an air turbine handpiece. Thermal changes were measured using miniature thermocouples placed into the pulp chamber. Lased surfaces were evaluated using SEM.

RESULTS

Laser ablation crater-like defects were deeper in dentin than enamel at the same pulse energy. Greater ablation rates for dentin and enamel and significantly more efficient removal of carious tooth structure by laser was present in primary teeth. Temperature rises in the pulp did not exceed the 5.5 degrees Celsius threshold in any teeth during laser ablation.

CONCLUSIONS

The Er:YAG laser is an efficient device for cavity preparations in primary teeth, with no unacceptable increases in temperature detected in this model.

摘要

目的

大多数使用铒钇铝石榴石(Er:YAG)激光进行窝洞预备的研究都采用了恒牙。本研究的目的是比较Er:YAG激光与金刚砂车针在乳牙和恒牙中的切割效率,以测量对牙髓的热效应,并使用扫描电子显微镜(SEM)评估激光照射后的表面。

方法

总共使用了80颗乳牙和恒牙。使用Key-3激光以不同能量向完好或龋坏的釉质或牙本质发射激光脉冲后,测量凹坑深度和质量损失。对照样本使用气动涡轮手机中的金刚砂车针进行切割。使用置于髓腔中的微型热电偶测量热变化。使用SEM评估激光照射后的表面。

结果

在相同脉冲能量下,牙本质中的激光消融坑状缺陷比釉质中的更深。乳牙中牙本质和釉质的消融率更高,并且激光去除龋坏牙体组织的效率明显更高。在激光消融过程中,任何牙齿的牙髓温度升高均未超过5.5摄氏度的阈值。

结论

Er:YAG激光是乳牙窝洞预备的有效设备,在此模型中未检测到不可接受的温度升高。

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