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铒钇铝石榴石激光照射后牙本质深层的力学性能及分子结构分析

Mechanical properties and molecular structure analysis of subsurface dentin after Er:YAG laser irradiation.

作者信息

He Zhengdi, Chen Lingling, Hu Xuejuan, Shimada Yasushi, Otsuki Masayuki, Tagami Junji, Ruan Shuangchen

机构信息

Shenzhen Key Laboratory of Laser Engineering, College of Optoelectronic Engineering, Shenzhen University, Nanhai Road 3688, Shenzhen, Guangdong 518060, China.

Cariology and Operative Dentistry, Department of Oral Health Sciences, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.

出版信息

J Mech Behav Biomed Mater. 2017 Oct;74:274-282. doi: 10.1016/j.jmbbm.2017.05.036. Epub 2017 Jun 3.

Abstract

UNLABELLED

The purpose of this study was to evaluate the chemical and mechanical modifications in subsurface dentin layer after Er: YAG (Erbium-Yttrium Aluminium Garnet) laser irradiation, as the guidance of new dental restorative materials specific for laser irradiated dentin.

MATERIALS AND METHODS

Dentin disks obtained from extracted human molars were prepared and exposed to a single pulse Er:YAG laser irradiation at 80mJ/pulse. After laser irradiation the mechanical and chemical characteristics of intertubular dentin in subsurface layer were studied using nanoindentation tester and micro-Raman spectromy (μ-RS). The dentin 5-50µm depth beneath the lased surface was determined as testing area. Two-way analysis of variance (ANOVA) were used to compare the mechanical values between lased and untreated subsurface dentin (P = 0.05).

RESULTS

A laser affected subsurface dentin layer after Er:YAG laser treatment is present. The laser irradiation is considered to decrease the mechanical properties in the superficial subsurface layer (<15µm deep). There was no significant difference in nanohardness and Young's modulus between lased subsurface dentin and untreated dentin (p > 0.05) under the depth of 15µm. However, the dentin at 5µm and 10µm depth beneath the lased surface exhibited significantly lower (~ 47.8% and ~ 33.6% respectively) hardness (p < 0.05). Er:YAG laser irradiation affected both mineral and organic components in subsurface dentin layer, a higher degree of crystallinity and reduced organic compounds occurred in the lased subsurface dentin.

CONCLUSION

Under the tested laser parameters, Er:YAG laser irradiation causes lower mechanical values and reduction of organic components in subsurface dentin, which has deleterious effects on resin adhesion to this area.

摘要

未标注

本研究的目的是评估铒钇铝石榴石(Er:YAG)激光照射后牙本质表层下化学和机械性能的变化,为新型激光照射牙本质专用牙科修复材料提供指导。

材料与方法

制备从拔除的人类磨牙获取的牙本质圆盘,并以80mJ/脉冲的能量接受单脉冲Er:YAG激光照射。激光照射后,使用纳米压痕测试仪和显微拉曼光谱仪(μ-RS)研究表层下管间牙本质的机械和化学特性。将激光照射表面下方5-50μm深度的牙本质确定为测试区域。采用双向方差分析(ANOVA)比较激光照射和未处理的表层下牙本质之间的机械性能值(P = 0.05)。

结果

Er:YAG激光治疗后存在受激光影响的牙本质表层下区域。激光照射被认为会降低表层下浅层(<15μm深)的机械性能。在15μm深度以下,激光照射的表层下牙本质与未处理的牙本质之间的纳米硬度和杨氏模量没有显著差异(p > 0.05)。然而,激光照射表面下方5μm和10μm深度处的牙本质硬度显著降低(分别约为47.8%和33.6%)(p < 0.05)。Er:YAG激光照射影响了牙本质表层下区域的矿物质和有机成分,激光照射的表层下牙本质中结晶度更高,有机化合物减少。

结论

在测试的激光参数下,Er:YAG激光照射会导致牙本质表层下机械性能值降低和有机成分减少,这对该区域的树脂粘结有有害影响。

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