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LED light attenuation through human dentin: A first step toward pulp photobiomodulation after cavity preparation

机译:通过人牙本质的LED光衰减:腔制备后迈向纸浆光生物调节的第一步

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Purpose: To evaluate the transdentinal light attenuation of LED at three wavelengths through different dentin thicknesses, simulating cavity preparations of different depths. Methods: Forty-two dentin discs of three thicknesses (0.2, 0.5 and 1 mm; n = 14) were prepared from the coronal dentin of extracted sound human molars. The discs were illuminated with a LED light at three wavelengths (450 ±10 nm, 630 ±10 nm and 850 ±10 nm) to determine light attenuation. Light transmittance was also measured by spectrophotometry. Results: In terms of minimum (0.2 mm) and maximum (1.0 mm) dentin thicknesses, the percentage of light attenuation varied from 49.3% to 69.9% for blue light, 42.9% to 58.5% for red light and 39.3% to 46.8% for infrared. For transmittance values, an increase was observed for all thicknesses according to greater wavelengths, and the largest variation occurred for the 0.2 mm thickness. All three wavelengths were able to pass through the dentin barrier at different thicknesses. Furthermore, the LED power loss and transmittance showed wide variations, depending on dentin thickness and wavelength. (Am J Dent 2013;26:319-323).
机译:目的:通过不同的牙本质厚度,评估三种波长下LED的经牙间光衰减,模拟不同深度的腔体制备。方法:从提取的人类磨牙的冠状牙本质中制备出三块厚度分别为0.2、0.5和1mm(n = 14)的42个牙本质牙盘。用三个波长(450±10 nm,630±10 nm和850±10 nm)的LED光照射光盘,以确定光衰减。还通过分光光度法测量透光率。结果:就最小牙本质厚度(0.2毫米)和最大牙本质厚度(1.0毫米)而言,蓝光的光衰减百分比从49.3%到69.9%,红光的光衰减百分比从42.9%到58.5%,而三色的光衰减百分比从39.3%到46.8%。红外线。对于透射率值,观察到所有厚度随波长的增加而增加,最大的变化发生在0.2 mm的厚度上。所有三个波长均能够以不同的厚度穿过牙本质屏障。此外,取决于牙本质的厚度和波长,LED的功率损耗和透射率表现出很大的差异。 (Am J Dent 2013; 26:319-323)。

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