评价铒钇铝石榴石激光辐射引起牙本质和牙釉质表面热过热的可能性。

Scanning microscopy Pub Date : 1996-01-01
T Dostálová, H Jelínková, O Krejsã, H Hamal
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引用次数: 0

摘要

研究了铒(Er):YAG激光烧蚀的热危险性。由于温度、压力和机械振动的不利变化,传统的制备技术存在许多缺点。采用激光烧蚀技术消除了机械振动和压力的影响。本研究的目的是分析脉冲Er:YAG激光干湿烧蚀法对拔牙牙釉质和牙本质热变化的副作用。然后检查和测量切片的显微照片。在扫描电镜下分析了激光辐照对裂纹产生的影响。在透射光和偏振光下观察牙齿的硬结构。裂纹的出现可能与干性牙釉质烧蚀过程中的过热直接相关,因为热是由牙釉质和牙本质吸收激光束产生的。在辐照过程中加入水雾不仅可以快速消融牙釉质和牙本质,还可以为牙髓提供热保护。通过在激光过程中加入细水雾,可以减小由被测激光系统200兆焦耳能级引起的纸浆热变化。
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Evaluation of the surface changes in enamel and dentin due to possibility of thermal overheating induced by Erbium:YAG laser radiation.

This study investigates the thermal danger of Erbium (Er):YAG laser ablation. Classical preparation techniques have many disadvantages caused by unfavorable changes of temperature, pressure, and by mechanical vibrations. The effect of mechanical vibrations and pressure is eliminated by use of laser ablation technique. The purpose of this study was to analyze the side effects resulting from thermal changes of enamel and dentin in extracted human teeth subjected to pulsed Er:YAG laser radiation using both wet and dry ablation methods. The micrographs of the sections were checked and measured afterwards. The effect of the investigated laser irradiation on the origin of cracks was analyzed in the scanning electron microscope. The hard structures of the teeth were observed under transmitted and polarized light. The occurrence of cracks can be directly correlated to overheating during dry enamel ablation, because heat is generated by absorption of the laser beam by enamel and dentin. The addition of water mist during irradiation not only enables rapid ablation of enamel and dentin, but offers thermal protection to the pulp. The heat changes to the pulp caused by an energy level of 200 mJ from the tested laser system may be reduced by adding a fine water spray during the lasing procedure.

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Front Matter: Volume 7378 INTERACTIONS OF LOW-ENERGY ELECTRONS WITH ATOMIC AND MOLECULAR SOLIDS. DISCUSSION Early post-radiation changes of red blood cell shape in rats. Evaluation of the surface changes in enamel and dentin due to possibility of thermal overheating induced by Erbium:YAG laser radiation. A yohimbine-dependent, UK14,304 induced ion transient in HT29 cells studied by X-ray microanalysis.
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