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铒钇铝石榴石(Er:YAG)激光制备及激光预处理后牙釉质和牙本质表面的扫描电子显微镜评估

Scanning electron microscopic evaluation of enamel and dentin surfaces after Er:YAG laser preparation and laser conditioning.

作者信息

Delmé Katleen Ilse Maria, De Moor Roeland Jozef Gentil

机构信息

Department of Operative Dentistry and Endodontology, Gent Dental Laser Center, Dental School, Ghent University, Belgium.

出版信息

Photomed Laser Surg. 2007 Oct;25(5):393-401. doi: 10.1089/pho.2006.2069.

Abstract

OBJECTIVE

The aim of this study was to observe and evaluate the micro-morphology of enamel and dentin surfaces after Er:YAG laser preparation and conditioning.

BACKGROUND DATA

Information regarding micro-morphologic changes of tooth substance as a result of a change of Er:YAG laser parameters for cavity preparation is limited.

METHODS

Human enamel and dentin surfaces were irradiated with an Er:YAG laser with the following parameters : (1) energy output: 200 mJ, 250 mJ, 300 mJ, 350 mJ, and 400 mJ; (2) repetition rate: 5 Hz and 10 Hz; (3) pulse duration: 100 mus/VSP (very short pulse); (4) 5 and 10 passes over the surface at a distance of 7 mm, speed: 4 mm/s using a non-contact delivery tip; (5) water cooling: 5 mL/min. The hand piece was fixed in a power driven x-y moving table. Subsequently, half of the samples were laser-conditioned at 100 mJ, 10 Hz, 250 mus/SP (short pulse) for enamel, and 80 mJ, 10 Hz, SP for dentin at a distance of 10 mm. Surface morphology and surface alterations were evaluated using scanning electron microscopy (SEM).

RESULTS AND CONCLUSION

SEM evaluation showed the characteristics of Er:YAG-lased enamel and dentin surfaces: irregular enamel surfaces with typical keyhole shaped prisms and rods, and protrusion of dentinal tubules with a cuff-like appearance. Laser conditioning rounded off the sharp edges on the enamel irregularities and dentin surface structures. First signs of vitrification were seen at 250 mJ for enamel samples and 300 mJ for dentin samples. Increase of the pulse repetition rate from 5 Hz to 10 Hz did not result in changes of surface morphology. Laser conditioning did not result in additional vitrification.

摘要

目的

本研究旨在观察和评估铒激光制备及预处理后釉质和牙本质表面的微观形态。

背景资料

关于因改变铒激光制备窝洞的参数而导致牙体组织微观形态变化的信息有限。

方法

使用铒激光以以下参数照射人釉质和牙本质表面:(1)能量输出:200 mJ、250 mJ、300 mJ、350 mJ和400 mJ;(2)重复频率:5 Hz和10 Hz;(3)脉冲持续时间:100 μs/超短脉冲(VSP);(4)使用非接触式传输头在距表面7 mm处扫描5次和10次,速度:4 mm/s;(5)水冷:5 mL/min。将手持件固定在电动X-Y移动台上。随后,一半样本在距表面10 mm处分别用100 mJ、10 Hz、250 μs/短脉冲(SP)对釉质进行激光预处理,用80 mJ、10 Hz、SP对牙本质进行激光预处理。使用扫描电子显微镜(SEM)评估表面形态和表面变化。

结果与结论

SEM评估显示了铒激光处理后的釉质和牙本质表面特征:釉质表面不规则,有典型的锁孔状棱柱和棒,牙本质小管突出呈袖口样外观。激光预处理使釉质不规则处和牙本质表面结构的尖锐边缘变圆。在釉质样本能量为250 mJ、牙本质样本能量为300 mJ时可见玻璃化的最初迹象。脉冲重复频率从5 Hz增加到10 Hz未导致表面形态改变。激光预处理未导致额外的玻璃化。

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