首页> 美国卫生研究院文献>Journal of Lasers in Medical Sciences >Thermal Changes in Root Surface of Primary Teeth During Root Canal Treatment With Diode Lasers: An In Vitro Study
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Thermal Changes in Root Surface of Primary Teeth During Root Canal Treatment With Diode Lasers: An In Vitro Study

机译:二极管激光器在根管治疗过程中乳齿根表面的热变化:一项体外研究

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摘要

>Introduction: Increased temperature due to the application of laser during root canal disinfection may damage periodontium, alveolar bone, and permanent dental germ. The aim of this study was to evaluate the temperature increase of the external surface of primary roots due to the application of 810 nm and 980 nm diode lasers. >Methods: A total of 58 extracted human primary teeth were prepared and randomly divided into two groups: (a) 810 nm diode laser and (b) 980 nm diode laser. Then, each group was divided into 4 subgroups based on the location of the temperature measurement, including subgroup 1: external root surface of primary anterior roots (A); subgroup 2: external root surface of posterior teeth at inter-root space (IS); subgroup 3: external root surface of posterior teeth at outer-root space (OS) and subgroup 4: external surface of furcation area of posterior teeth (F). >Results: The mean temperature rise in group a (7.02±2.95ºC) was less than that of group b (10.62±4.59ºC) (P<0.001). Also, a significant difference was found between the laser groups in terms of the mean temperature rise of the external root surface at IS, OS and F, with higher temperature increase occurring in all points in laser b. The comparison of irradiation points ineach laser showed a higher mean temperature rise for IS than OS, but this difference was onlysignificant in group b (P<0.001).>Conclusion: Within the studied parameters, 810 nm and 980 nm diode lasers should be usedcautiously in primary root canals because of their temperature rise during their application.
机译:>简介:由于在根管消毒过程中使用激光而导致温度升高,可能会损坏牙周膜,牙槽骨和永久性细菌。这项研究的目的是评估由于810 nm和980 nm二极管激光器的应用而导致的初生根外表面的温度升高。 >方法:准备了总共58颗拔出的人类乳牙,并将其随机分为两组:(a)810 nm二极管激光器和(b)980 nm二极管激光器。然后,根据温度测量的位置将每组分为4个子组,包括第1组:第一前根的外根表面(A);第1组:前主根的外根表面。第2组:牙根间隙(IS)处后牙的外牙根表面;第3组:外牙根空间(OS)的后牙外牙根表面;第4组:后牙分叉区的外牙表面(F)。 >结果: a组的平均温度升高(7.02±2.95ºC)小于b组的平均温度升高(10.62±4.59ºC)(P <0.001)。另外,在激光组之间,在根部外表面在IS,OS和F处的平均温度升高方面也发现了显着差异,其中激光b的所有点都出现了更高的温度升高。照射点的比较每个激光器的IS平均温升都比OS高,但这种差异仅仅是B组中有显着性(P <0.001)。>结论:在研究的参数范围内,应使用810 nm和980 nm二极管激光器由于在使用过程中温度会升高,因此在主根管中要谨慎。

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