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使用钕:钇铝石榴石激光去除根管内折断镍钛锉的安全性

The Safety of Removing Fractured Nickel-Titanium Files in Root Canals Using a Nd: YAP Laser.

作者信息

Namour Amaury, El Mobadder Marwan, Matamba Patrick, Misoaga Lucia, Magnin Delphine, Arany Praveen, Nammour Samir

机构信息

Department of Dental Science, Faculty of Medicine, University of Liege, 4000 Liege, Belgium.

Laser Laboratory, Oral Surgery Department, Wroclaw Medical University, 50-425 Wroclaw, Poland.

出版信息

Biomedicines. 2024 May 7;12(5):1031. doi: 10.3390/biomedicines12051031.

Abstract

The fracture of nickel-titanium (Ni-Ti) instruments during root canal instrumentation leads to compromised outcomes in endodontic treatments. Despite the significant impact of instrument facture during a root canal treatment, there is still no universally accepted method to address this complication. Several previous studies have shown the ability of a Neodymium: Yttrium-Aluminum-Perovskite (Nd: YAP) laser to cut endodontic files. This study aims to determine safe irradiation conditions for a clinical procedure involving the use of a Neodymium: Yttrium-Aluminum-Perovskite (Nd: YAP) laser for removing fractured nickel-titanium files in root canals. A total of 54 extracted permanent human teeth ( = 54) were used. This study involved nine distinct groups, each employing different irradiation conditions. Groups 1 s, 3 s, 5 s, 10 s, and 15 s simply consist of irradiation for 1, 3, 5, 10, and 15 s, respectively. After identifying the longest and safest duration time, four additional groups were proposed (labeled A, B, C, and D). Group A was composed of three series of irradiations of 5 s each separated by a rest time of 30 s (L5s + 30 s RT). Group B consisted of three series of irradiations of 5 s each separated by a rest time of 60 s (L5s + 60 s RT). Group C consisted of two series of irradiations of 5 s each separated by a rest time of 30 s (L5s + 30 s RT), and group D consisted of two series of irradiations of 5 s each separated by a rest time of 5 s (L5s + 5 s RT). In all groups, during the rest time, continuous irrigation with 2.5 mL of sodium hypochlorite (3% NaOCl) was carried out. The variation in temperature during irradiation was registered with a thermocouple during irradiation with different protocols. The mean and standard deviation of the temperature increase was noted. The calculation of the temperature was made as the Δ of the highest recorded temperature at the root surface minus (-) that recorded at baseline (37°). Additionally, scanning electron microscopy (SEM) was used after irradiation in all groups in order to assess the morphological changes in the root dentinal walls. The Nd: YAP laser irradiation parameters were a power of 3W, an energy of 300 mJ per pulse, a fiber diameter of 200 µm, a pulsed mode of irradiation with a frequency of 10 Hz, a pulse duration of 150 µs, and an energy density of 955.41 J/cm. Our results show that the safest protocol for bypassing and/or removing broken instruments involves three series of irradiation of 5 s each with a rest time of 30 s between each series. Furthermore, our results suggest that continuous irradiation for 10 s or more may be harmful for periodontal tissue.

摘要

根管治疗过程中镍钛(Ni-Ti)器械折断会导致牙髓治疗效果受损。尽管器械折断在根管治疗中影响重大,但仍没有被普遍接受的方法来处理这一并发症。此前的多项研究已表明钕:钇铝石榴石(Nd:YAP)激光能够切割根管锉。本研究旨在确定一种临床操作的安全照射条件,该操作涉及使用钕:钇铝石榴石(Nd:YAP)激光去除根管内折断的镍钛锉。总共使用了54颗拔除的恒牙(n = 54)。本研究包括九个不同的组,每组采用不同的照射条件。第1秒、3秒、5秒、10秒和15秒组分别仅包括1、3、5、10和15秒的照射。在确定最长且最安全的持续时间后,又提出了另外四个组(标记为A、B、C和D)。A组由三个系列的每次5秒照射组成,每次照射之间间隔30秒的休息时间(L5s + 30秒休息时间)。B组由三个系列的每次5秒照射组成,每次照射之间间隔60秒的休息时间(L5s + 60秒休息时间)。C组由两个系列的每次5秒照射组成,每次照射之间间隔30秒的休息时间(L5s + 30秒休息时间),D组由两个系列的每次5秒照射组成,每次照射之间间隔5秒的休息时间(L5s + 5秒休息时间)。在所有组中,在休息时间内,用2.5毫升次氯酸钠(3% NaOCl)进行持续冲洗。在采用不同方案照射期间,用热电偶记录照射过程中的温度变化。记录温度升高的平均值和标准差。温度计算为牙根表面记录的最高温度减去(-)基线记录温度(37°)的差值。此外,所有组照射后均使用扫描电子显微镜(SEM)来评估牙根牙本质壁的形态变化。Nd:YAP激光照射参数为功率3W、每脉冲能量300 mJ、光纤直径200 µm、脉冲照射模式、频率10 Hz、脉冲持续时间150 µs以及能量密度955.41 J/cm。我们的结果表明,绕过和/或去除折断器械的最安全方案是三个系列的每次5秒照射,每个系列之间间隔30秒的休息时间。此外,我们的结果表明持续照射10秒或更长时间可能对牙周组织有害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30dc/11117853/1d4301b168a6/biomedicines-12-01031-g001.jpg

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