Feuerstein Osnat, Mayer Isaac, Deutsch Dan
Department of Prosthodontics, The Hebrew University-Hadassah School of Dental Medicine, Jerusalem, Israel.
Lasers Surg Med. 2005 Sep;37(3):245-51. doi: 10.1002/lsm.20224.
Irradiation of tooth enamel by lasers can alter its structure and chemical composition. The purpose of this work was to determine the compositional changes and to elucidate the mechanisms of laser-enamel interaction using ArF excimer laser.
STUDY DESIGN/MATERIALS AND METHODS: Human enamel irradiated with ArF excimer laser (wavelength, 193 nm) at different fluences, was examined using X-ray diffraction, infrared (IR) spectroscopy and microprobe analysis.
Ablation without significant compositional changes in irradiated enamel was evident when low fluences (approximately 200-380 mJ/cm2) were used. However, fluences between 640 and 2,300 mJ/cm2 resulted in an increased Ca/P ratio, decreased amount of carbonate and protein, and the formation of tricalcium phosphate and tetracalcium phosphate, suggesting the involvement of a photothermal mechanism.
The results show that ArF excimer laser can alter the chemical composition and morphology of the highly mineralized (96%) dental enamel, depending on the fluence used.
激光照射牙釉质可改变其结构和化学成分。本研究旨在利用ArF准分子激光确定其成分变化并阐明激光与牙釉质相互作用的机制。
研究设计/材料与方法:使用X射线衍射、红外光谱和微探针分析,对不同能量密度的ArF准分子激光(波长193nm)照射后的人牙釉质进行检测。
低能量密度(约200 - 380mJ/cm²)照射时,牙釉质出现消融但成分无明显变化。然而,能量密度在640至2300mJ/cm²之间时,钙磷比增加、碳酸盐和蛋白质含量减少,并形成磷酸三钙和磷酸四钙,提示涉及光热机制。
结果表明,根据所使用的能量密度,ArF准分子激光可改变高度矿化(96%)的牙釉质的化学成分和形态。