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Effect of pulse-width-modulated LED light on the temperature change of composite in tooth cavities

机译:脉冲宽度调制LED光对齿腔复合材料温度变化的影响

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摘要

Objective. The purpose of this study was to investigate the effects of the radiant emittance and cure time of pulse width modulation (PWM)-controlled LED light on the temperature change of composite and dentin.Methods. Class I cavities (M-D 6 mm, B-L 4 mm, Depth 2.5 mm) were prepared on 30 extracted human molars and vertically sectioned to expose the mesial side of the cavity and tooth. Cavities were filled with Bulk Fill Posterior Restorative (BFP, 3M ESPE) and cured with an LED light. The duty ratio (% of time the light is on) and cure time of the LED light were controlled using an Arduino UNO microcontroller (PWM) as follows (6 groups, n = 5): 10%/100 s, 30%/33.3 s, 50%/20 s, 100%/10s, Increase mode (0 - 100%)/20 s, and Decrease mode (100 - 0%)/20 s. All measurements were performed at 100 Hz PWM with the constant total radiant exposure. Thermograms of the specimens were recorded using an infrared thermal camera (Vario-Camhr head 700, InfraTec GmbH) for a pre-cure time of 20 s, cure time, and a post-cure time of 100 s at room temperature of 30 +/- 0.5 degrees C. Temperature change data on the composite and dentin surfaces were collected at incremental distances of 0.625 mm and 1 mm from the top of the cavity to the pulp. Data were statistically analyzed using two-way ANOVA and Tukey's post-hoc test at alpha = 0.05.Results. A rapid temperature increase occurred within the cavity during light curing. The maximum temperature rises (Delta T-max) were observed at 0.625 mm apical from the top and middle of the cavity. The ATnnax ranged from 7.62 to 16.74 degrees C at 0.625 mm apical from the top, 4.83 to 11.39 degrees C at the floor of the cavity, and 3.16 to 8.09 degrees C in the dentin 1 mm beneath the cavity base. The Delta T-max of composite and dentin increased and the time to reach Delta T = 5 degrees C decreased with increasing duty ratio at constant radiant exposure. In the Increase mode, Delta T-max was lower than that of 50%/20 s mode. The Delta T-max in the Decrease mode was similar to that of 100%/10 s mode.Significance. The PWM-LED curing light system controlled by a microcontroller provided a useful tool of varying the radiant emittance and cure time with constant radiant exposure to evaluate temperature change of composite and dentin. These result will be helpful to determine proper curing modes with varying radiant emittance of the LED curing light for decreasing temperature change of composite and dentin. At constant radiant exposure and cure times, the Increase mode showed lower and slower temperature rises than the 50%/20 s and Decrease mode. Within the limitations of this in vitro study, when radiant exposure is constant, a curing light with lower radiant emittance can induce relatively low thermal transfer, thereby decreasing the risk of pulpal damage. (C) 2019 The Academy of Dental Materials. Published by Elsevier Inc. All rights reserved.
机译:客观的。本研究的目的是探讨脉冲宽度调制(PWM)的辐射发射率和固化时间对复合材料和牙本质的温度变化的影响。在30个提取的人臼齿上制备I级腔(M-D 6mm,B-L 4mm,深度2.5 mm),并垂直切割以暴露腔体和牙齿的间隙。空腔充满了散装填充后恢复(BFP,3M ESPE)并用LED光固化。使用如下(6组,N = 5):10%/ 100 s,30%/ 33.3,使用arduino Uno微控制器(PWM)控制占空比(光线上的百分比)和LED光的固化时间(6组,N = 5):10%/ 100 s,30%/ 33.3 S,50%/ 20 s,100%/ 10s,增加模式(0 - > 100%)/ 20 s,减少模式(100 - > 0%)/ 20 s。所有测量均在100 Hz PWM下进行,恒定的总辐射暴露。使用红外线热摄像机(VARIO-CAMHR HEAD 700,INFRATEC GMBH)记录样品的热量点,用于预固化时间为20 s,固化时间,并在室温下为30 + /的后固化时间为100秒 - 0.5℃。复合材料和牙本质表面上的温度变化数据以0.625mm的增量距离收集,从腔的顶部到纸浆。在alpha = 0.05的双向Anova和Tukey的Hoc测试中,数据进行了统计分析。结果。光固化过程中腔内发生快速温度升高。在从腔的顶部和中间观察到最大温度升高(Delta T-Max)。 ATNNAX在腔体的地板上以0.625mm的顶部,4.83至11.39摄氏度,4.83至11.39摄氏度,在腔底部下方的牙本质1 mm,3.16至8.09摄氏度。复合材料和牙本质的δT-MAX增加,达到ΔT= 5摄氏度的时间随着恒定辐射暴露的占空比的增加而降低。在增加模式下,Delta T-Max低于50%/ 20 S模式。减少模式中的ΔT-max类似于100%/ 10 s模式。重要性。由微控制器控制的PWM-LED固化光系统提供了一种有用的工具,可以改变辐射的辐射率和固化时间,以恒定的辐射暴露,以评估复合材料和牙本质的温度变化。这些结果将有助于确定具有不同辐射的LED固化光的适当固化模式,以降低复合材料和牙本质的温度变化。在恒定的辐射曝光和固化时间,增加模式显示出比50%/ 20秒和减少模式更低且较慢的温度升高。在这种体外研究的局限内,当辐射曝光是恒定的时,具有较低辐射发射率的固化光可以诱导相对低的热转印,从而降低脉冲损伤的风险。 (c)2019年牙科材料学院。由elsevier Inc.出版的所有权利保留。

著录项

  • 来源
    《Dental materials》 |2019年第4期|554-563|共10页
  • 作者单位

    Seoul Natl Univ Sch Dent Dept Conservat Dent 101 Daehak Ro Seoul 03080 South Korea|Seoul Natl Univ Sch Dent Dent Res Inst 101 Daehak Ro Seoul 03080 South Korea;

    Seoul Natl Univ Sch Dent Dept Conservat Dent 101 Daehak Ro Seoul 03080 South Korea|Seoul Natl Univ Sch Dent Dent Res Inst 101 Daehak Ro Seoul 03080 South Korea;

    Seoul Natl Univ Sch Dent Dept Conservat Dent 101 Daehak Ro Seoul 03080 South Korea|Seoul Natl Univ Sch Dent Dent Res Inst 101 Daehak Ro Seoul 03080 South Korea;

    Oregon Hlth & Sci Univ Sch Dent Div Biomat & Biomech Dept Restorat Dent Portland OR 97201 USA;

    Seoul Natl Univ Sch Dent Dept Conservat Dent 101 Daehak Ro Seoul 03080 South Korea|Seoul Natl Univ Sch Dent Dent Res Inst 101 Daehak Ro Seoul 03080 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Composite; Infrared thermal camera; LED curing light; Pulse width modulation (PWM); Temperature change;

    机译:复合材料;红外线热相机;LED固化灯;脉冲宽度调制(PWM);温度变化;
  • 入库时间 2022-08-18 21:10:39

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