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铒铬:钇钪镓石榴石激光照射对钛盘表面特性的影响:一项体外研究。

Effects of Er,Cr:YSGG laser irradiation on the surface characteristics of titanium discs: an in vitro study.

作者信息

Ercan Esra, Arin Tuna, Kara Levent, Çandirli Celal, Uysal Cihan

机构信息

Department of Periodontology, Karadeniz Technical University, Trabzon, Turkey,

出版信息

Lasers Med Sci. 2014 May;29(3):875-80. doi: 10.1007/s10103-013-1294-5. Epub 2013 Mar 9.

Abstract

Lasers are used to modify the surfaces of dental implants or to decontaminate exposed implant surfaces. However, research is lacking on whether the laser causes any change on the surfaces of titanium implants. We aimed to determine the effects of laser treatment on the surface characteristics of titanium discs. Nine discs were fabricated using grade-V titanium with resorbable blast texturing surface characteristics. The discs were irradiated with an erbium, chromium: yttrium, scandium, gallium, garnet (Er,Cr:YSGG) laser under different experimental conditions (R1-9). Scanning electron microscopy was used to evaluate implant surface topography qualitatively, and a mechanical contact profilometer was used to evaluate surface roughness. The R3 and R5 parameters caused no measurable change. Minor cracks and grooves were observed in discs treated with the R1, R2, R4, R7 and R9 parameters. Major changes, such as melting, flattening and deep crack formation, were observed in discs subjected to R6 (2 W, 30 Hz, 2 mm. distance, 30 s) and R8 (3 W, 25 Hz, 2 mm. distance, 45 s) parameters. The lowest surface roughness value was obtained with the R8 parameter. Irradiation distance, duration, frequency and power were the most significant factors affecting surface roughness. Parameters such as wavelength, output power, energy, dose and duration should be considered during irradiation. The results of this study indicate that the distance between the laser tip and the irradiated surface should also be considered.

摘要

激光用于改变牙种植体表面或对暴露的种植体表面进行去污处理。然而,关于激光是否会对钛种植体表面产生任何变化的研究尚缺。我们旨在确定激光处理对钛盘表面特性的影响。使用具有可吸收喷砂纹理表面特征的五级钛制造了九个圆盘。在不同实验条件(R1 - 9)下,用铒铬:钇钪镓石榴石(Er,Cr:YSGG)激光照射这些圆盘。使用扫描电子显微镜定性评估种植体表面形貌,并用机械接触轮廓仪评估表面粗糙度。R3和R5参数未引起可测量的变化。在用R1、R2、R4、R7和R9参数处理的圆盘中观察到微小裂纹和凹槽。在经受R6(2W,30Hz,2mm距离,30s)和R8(3W,25Hz,2mm距离,45s)参数的圆盘中观察到重大变化,如熔化、变平和深裂纹形成。R8参数获得了最低的表面粗糙度值。照射距离、持续时间、频率和功率是影响表面粗糙度的最显著因素。在照射过程中应考虑波长、输出功率、能量、剂量和持续时间等参数。本研究结果表明,还应考虑激光尖端与照射表面之间的距离。

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