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首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >CO2 laser inhibitor of artificial caries-like lesion progression in dental enamel.
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CO2 laser inhibitor of artificial caries-like lesion progression in dental enamel.

机译:CO2激光抑制剂在牙釉质中的龋齿状病变进展。

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Several studies during the last 30 years have demonstrated the potential of laser pre-treatment of enamel or tooth roots to inhibit subsequent acid-induced dissolution or artificial caries-like challenge in the laboratory. The overall objective of ongoing studies in our laboratories is to determine, systematically, the optimum sets of parameters for carbon dioxide laser irradiation that will potentially effectively inhibit dental caries in enamel and tooth roots. The aim of the present study was to examine the roles of wavelength and fluence in the prevention of caries progression in vitro in enamel by means of a pH-cycling model. The hypothesis to be tested was that the highly absorbed 9.3- and 9.6-microm wavelengths would be efficiently converted to heat, creating a temperature sufficiently high to reduce the acid-reactivity of the mineral and inhibit caries-like lesion progression in dental enamel. One hundred and sixty caries-free tooth crowns were cleaned and varnished with acid-resistant varnish, leaving one exposed window of enamel. Twelve groups of 10 enamel samples were irradiated in their individual windows by one of the four wavelengths (9.3, 9.6, 10.3, or 10.6 microm) of a tunable CO2 laser. Energy per pulse was 25, 50, 100, 200, or 250 mJ (25 pulses). Repetition rate was 10 Hz, and beam diameter was 1.6 mm. Fluence conditions of 1 to 12.5 J/cm2 per pulse were produced. All teeth, including 40 non-irradiated controls, were subjected to pH-cycling to produce artificial caries-like lesions. Results were assessed by cross-sectional microhardness testing. Inhibition of caries progression of from 40% to 85% was achieved over the range of laser conditions tested. At 9.3 and 9.6 microm, 25 pulses at absorbed fluences of 1 to 3 J/cm2 produced inhibition on the order of 70% with minimal subsurface temperature elevation (< 1 degree C at 2 mm depth), comparable with inhibition produced in this model with daily fluoride dentifrice treatments. Safety and efficacy studies will be required in animals and humans before these promising laboratory results can be applied in clinical practice.
机译:过去30年中的几项研究表明,在实验室中对牙釉质或牙根进行激光预处理可抑制随后的酸诱导的溶解或人造龋齿样挑战。我们实验室正在进行的研究的总体目标是系统地确定二氧化碳激光辐照的最佳参数集,这些参数将潜在地有效抑制牙釉质和牙根中的龋齿。本研究的目的是通过pH循环模型研究波长和注量在牙釉质体外预防龋齿进展中的作用。要进行测试的假设是,被高度吸收的9.3和9.6微米波长将被有效地转换为热量,从而产生足够高的温度以降低矿物的酸反应性并抑制牙釉质中龋齿样病变的发展。清洁并清洁了160个无龋齿的牙冠,并用耐酸清漆上清漆,留下了一个裸露的珐琅窗口。用可调式CO2激光器的四个波长(9.3、9.6、10.3或10.6微米)之一在各自的窗口中照射12组10个搪瓷样品。每个脉冲的能量为25、50、100、200或250 mJ(25个脉冲)。重复频率为10 Hz,光束直径为1.6 mm。产生的通量条件为每个脉冲1至12.5 J / cm2。对所有牙齿,包括40个未经辐照的对照牙齿,进行pH循环以产生人造龋齿样病变。通过横截面显微硬度测试评估结果。在所测试的激光条件范围内,实现了从40%到85%的龋齿进展抑制。在9.3和9.6微米处,在1到3 J / cm2的吸收通量下有25个脉冲产生了大约70%的抑制,并且具有最小的地下温度升高(在2 mm深度处<1摄氏度),与该模型产生的抑制相当每天进行氟化物洁牙治疗。在将这些有希望的实验室结果应用于临床之前,将需要对动物和人类进行安全性和功效研究。

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