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一种 SEM 研究,探讨 9.3μm CO 激光对牙本质小管在治疗牙本质过敏症中的作用。

An SEM study on the effect of 9.3-µm CO laser on dentinal tubules for hypersensitivity treatment.

机构信息

Convergent Dental, 100 5th Ave, Suite 1010, Waltham, MA, 02451, USA.

出版信息

Lasers Med Sci. 2024 Jul 31;39(1):200. doi: 10.1007/s10103-024-04157-1.

Abstract

OBJECTIVES

In-vitro studies were performed on dentin of extracted human molars to investigate the effectiveness of 9.3 μm CO laser irradiation to occlude dentinal tubules. The observed occlusion of dentinal tubules with the irradiation was compared with application of three reagents: 2% Sodium Fluoride gel, an aqueous solution of hydroxyapatite nanoparticles and an equal mix of the two. We show that 9.3 μm CO laser irradiation occludes dentinal tubules, and the use of laser irradiation produces better occlusion of the opened tubules compared to the use of topical reagents.

METHODS

Nine extracted and cleaned human molars were cut to obtain dentin disks of thickness of 3-5 mm. Each disc was divided into four quarters, and each quarter served as two samples corresponding to irradiated and non-irradiated group counterparts. Five disks were used to study the effect of various laser irradiation energies on the dentinal tubules to find a good pulse fluence for occlusion of the dentinal tubules, and four disks were used for studying the effects of reagents and irradiation at the pulse fluences found in the first part of the study. The samples were irradiated with a beam diameter of 1 mm (1/e) at 15 Hz pulse repetition rate, scanned automatically using a set of scanning mirrors. Samples were imaged using Scanning Electron Microscope (SEM) which were processed to determine tubule diameter. Safety of the irradiation treatment was investigated on 6 samples by measuring pulpal temperature rise. The effect of three topical reagents corresponding to 2% Sodium Fluoride gel (F), Hydroxyapatite nanoparticles (HA) and an equal mix of F and HA (HAF) on dentinal tubule occlusion was evaluated and compared with the laser irradiation.

RESULTS

In all examined cases, laser irradiation at a fluence of 0.81 J/cm resulted in a temperature increase less than 3 °C which is safe, and no surface cracking was observed. There is a threshold pulse fluence of 0.27 J/cm above which, laser produced surface melting. At a pulse fluence of 0.81 J/cm a layer of recast of melted dentin was formed. Under this layer, peritubular dentin melting and occluding of the dentinal tubules was observed. Application of either F or HA or HAF did not produce visible occlusion effect on open tubules after washing and microbrushing with excess distilled water.

CONCLUSIONS

9.3 μm CO2 laser irradiation on extracted human molar dentin at pulse fluence of 0.81 J./cm resulted in tubule area reduction by 97% without rising pulpal temperatures to unsafe levels.

摘要

目的

对离体人磨牙牙本质进行体外研究,以研究 9.3μm CO 激光照射封闭牙本质小管的效果。将观察到的用照射处理封闭的牙本质小管与三种试剂的应用进行比较:2%氟化钠凝胶、纳米羟基磷灰石水溶液和两者的等份混合物。我们表明,9.3μm CO 激光照射封闭牙本质小管,与使用局部试剂相比,激光照射产生的开放小管的封闭效果更好。

方法

将 9 颗提取并清洁的人磨牙切割成厚度为 3-5mm 的牙本质圆盘。每个圆盘被分成四等份,每等份作为两个样本,对应于照射和未照射组的对应物。用五块圆盘研究不同激光照射能量对牙本质小管的影响,以找到一种好的脉冲能量来封闭牙本质小管,并使用四块圆盘研究在研究的第一部分中发现的脉冲能量下的试剂和照射的影响。使用光束直径为 1mm(1/e)的光束,以 15Hz 的脉冲重复率,使用一组扫描反射镜自动扫描。使用扫描电子显微镜(SEM)对样品进行成像,对 SEM 图像进行处理以确定小管直径。通过测量牙髓温度升高来研究 6 个样品的照射处理安全性。评估并比较了三种局部试剂(2%氟化钠凝胶(F)、纳米羟基磷灰石(HA)和 F 和 HA 的等份混合物(HAF))对牙本质小管封闭的效果。

结果

在所有检查的情况下,在 0.81J/cm 的照射下,激光照射产生的温升小于 3°C,是安全的,并且没有观察到表面裂纹。在 0.27J/cm 以上存在一个脉冲能量阈值,激光产生表面熔化。在 0.81J/cm 的脉冲能量下,形成一层熔融牙本质的再铸层。在该层下,观察到牙本质小管周围牙本质的熔融和封闭。在用过量蒸馏水冲洗和微刷后,应用 F、HA 或 HAF 均未对开放小管产生可见的封闭效果。

结论

在 0.81J/cm 的脉冲能量下,对提取的人磨牙牙本质进行 9.3μm CO2 激光照射,导致小管面积减少 97%,而牙髓温度不会升高到不安全的水平。

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