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首页> 外文期刊>Photomedicine and laser surgery >Temperature response in the pulpal chamber of primary human teeth exposed to Nd:YAG laser using a picosecond pulsed regime.
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Temperature response in the pulpal chamber of primary human teeth exposed to Nd:YAG laser using a picosecond pulsed regime.

机译:使用皮秒脉冲方式暴露于Nd:YAG激光的人类初级牙齿的牙髓腔中的温度响应。

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OBJECTIVE: This study was conducted to analyze temperature variation in the pulpal chamber using the (Nd:YAG) picosecond-pulsed laser to promote ablation in enamel and dentin of primary teeth. BACKGROUND DATA: Several previous studies reported the temperature rise in pulpal chamber during laser irradiation. Since there are no reports about pulp chamber temperature changes during irradiation with picosecond-pulsed laser, the purpose of our investigation is to quantify the intrapulpal temperature changes following picosecond-pulsed Nd:YAG laser irradiation of enamel and dentin of primary teeth. METHODS: In this study, we used 10 intact primary exfoliated teeth: five molars and five incisors. We used a commercial neodymium:- yttrium-aluminum-garnet continuous-wave (CW)-pumped Q-switched and mode-locked Nd:YAG laser, with varying power levels (200, 300, and 350 mW) operating with 100-psec pulsed duration. RESULTS: Typical plots show differences between heating and cooling of enamel and dentin of anterior and posterior teeth. Whereas for enamel the time evolution curves are dependent on power used for the investigated range (200-350 mW), for dentin the differences are not so evident. Observing temperature enhancement for each power, we were able to analyze operational conditions where temperature changes do not exceed 5.5 degrees C. Power-time-temperature (PTT) diagrams for clinical operations were determined based on varying power level and exposition time. Through the heating-cooling cycle, we could extract conventional heating and cooling times for enamel and dentin. CONCLUSION: We have shown that the Nd:YAG picosecond-pulsed laser is a safe tool for ablation of primary teeth in a broad range of operational parameters.
机译:目的:利用皮秒脉冲激光(Nd:YAG)促进乳牙牙釉质和牙本质的消融,分析牙髓腔内的温度变化。背景数据:先前的一些研究报道了在激光照射过程中牙髓腔的温度升高。由于尚无关于皮秒脉冲激光照射过程中牙髓腔温度变化的报道,因此我们的研究目的是量化皮秒脉冲Nd:YAG激光照射乳牙牙本质和牙本质后的掌内温度变化。方法:在这项研究中,我们使用了10颗完整的乳头脱落牙齿:5颗臼齿和5颗门牙。我们使用了商用钕:-钇铝石榴石连续波(CW)泵浦的Q开关和锁模Nd:YAG激光器,其功率等级不同(200、300和350 mW),工作时间为100psec脉冲持续时间。结果:典型图显示牙釉质和前后牙牙本质的加热和冷却之间的差异。搪瓷的时间演化曲线取决于所研究范围(200-350 mW)所用的功率,而牙本质的差异并不明显。观察每个电源的温度升高情况,我们能够分析温度变化不超过5.5摄氏度的运行条件。临床运行的电源时间-温度(PTT)图是根据变化的电源水平和曝光时间确定的。通过加热-冷却循环,我们可以提取搪瓷和牙本质的常规加热和冷却时间。结论:我们已经表明,Nd:YAG皮秒脉冲激光是在广泛的操作参数范围内消融乳牙的安全工具。

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