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Dental Enamel Irradiated with Infrared Diode Laser and Photo-Absorbing Cream: Part 2—EDX Study

机译:红外二极管激光和光吸收膏照射的牙釉质:第2部分—EDX研究

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摘要

Objective: The effects of laser-induced compositional changes on the enamel were investigated by energy-dispersive X-ray fluorescence spectrometry (μ-EDX). After cariogenic challenge, we administered treatment of low-level infrared diode laser and a photo-absorbing cream (used to intensify the superficial light absorption). >Background Data: Dental caries is considered the most prevalent oral disease. A simple and noninvasive caries preventive regimen is treating tooth enamel with a laser, either alone or in combination with fluoride, which reduces enamel solubility and dissolution rates. High power lasers are still not widely used in private practice. Low-power near-infrared lasers may be an alternative approach. Energy-dispersive μ-EDX is a versatile and nondestructive spectroscopic technique that allows for a qualitative and quantitative elemental analysis of inorganic enamel components, such as calcium and phosphorus. >Materials and Methods: Twenty-four extracted or exfoliated caries-free deciduous molars were divided into six groups: 1) control group (CTR-no treatment); 2) infrared laser treatment (L) (λ = 810 nm, 100 mW/cm2, 90 sec, 4.47 J/cm2, 9 J); 3) infrared laser irradiation and photo-absorbing agent (CL); 4) photo-absorbing agent alone (C); 5) infrared laser irradiation and fluoridated photo-absorbing agent (FCL); and 6) fluoridated photo-absorbing agent alone (FC). Samples were analyzed using μ-EDX after two sets of treatments and pH cycling cariogenic challenges. >Results: The CL group showed statistically significant increases in calcium and phosphorus (wt%) compared with the CTR group. The Ca/P ratio was similar in the FCL and CTR groups. There was a significant laser-induced reduction compared with the CTR group, and there was a possible modification of the organic balance content in enamel treated with laser and cream. >Conclusion: μ-EDX may be able to detect compositional changes in mineral phases of lased enamel under cariogenic challenge. Our results suggest that with a combined laser and photo-absorbing agent (CL) treatment, there was a possible disorganization of organic content in the tooth enamel with hydroxyapatite crystal reordering and reorganization.
机译:目的:通过能量色散X射线荧光光谱法(μ-EDX)研究激光诱导的成分变化对牙釉质的影响。在致癌性挑战后,我们进行了低级红外二极管激光和光吸收霜(用于增强表面光吸收)的治疗。 >背景数据:龋齿被认为是最普遍的口腔疾病。一种简单且无创的龋齿预防方案是单独或与氟化物结合使用激光治疗牙釉质,这会降低牙釉质的溶解度和溶解速度。高功率激光器仍未在私人实践中广泛使用。低功率近红外激光器可能是一种替代方法。能量分散型μ-EDX是一种通用且无损的光谱技术,可以对无机搪瓷成分(例如钙和磷)进行定性和定量的元素分析。 >材料与方法:将二十四颗无龋或脱落的龋齿乳牙分为六组:1)对照组(不进行CTR治疗); 2)红外激光处理(L)(λ= 810 nm,100 mW / cm 2 ,90 sec,4.47 J / cm 2 ,9 J); 3)红外激光照射和光吸收剂(CL); 4)单独的光吸收剂(C); 5)红外激光照射和氟化光吸收剂(FCL); 6)单独的氟化光吸收剂(FC)。经过两组处理和pH循环致癌挑战后,使用μ-EDX分析样品。 >结果:CL组与CTR组相比,钙和磷(wt%)的增加具有统计学意义。 FCL和CTR组的Ca / P比相似。与CTR组相比,激光引起的显着降低,并且用激光和乳霜处理过的牙釉质中有机平衡含量可能有改变。 >结论:μ-EDX可能能够检测出在致龋性激发下激光搪瓷矿物质相的组成变化。我们的结果表明,通过激光和光吸收剂(CL)的组合处理,牙釉质中的有机成分可能会发生羟基磷灰石晶体的重新排列和重组。

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