Chen H, Li H, Sun Yc, Wang Y, Lü Pj
Center of Digital Dentistry, Faculty of Prosthodontics, Peking University School and Hospital of Stomatology &National Engineering Laboratory for Digital and Material Technology of Stomatology &Research Center of Engineering and Technology for Digital Dentistry of Ministry of Health, 22 Zhongguancun Nandajie, Haidian District, Beijing, 100081, China.
Sci Rep. 2016 Feb 11;6:20950. doi: 10.1038/srep20950.
To study the effects of laser fluence (laser energy density), scanning line spacing and ablation depth on the efficiency of a femtosecond laser for three-dimensional ablation of enamel and dentin. A diode-pumped, thin-disk femtosecond laser (wavelength 1025 nm, pulse width 400 fs) was used for the ablation of enamel and dentin. The laser spot was guided in a series of overlapping parallel lines on enamel and dentin surfaces to form a three-dimensional cavity. The depth and volume of the ablated cavity was then measured under a 3D measurement microscope to determine the ablation efficiency. Different values of fluence, scanning line spacing and ablation depth were used to assess the effects of each variable on ablation efficiency. Ablation efficiencies for enamel and dentin were maximized at different laser fluences and number of scanning lines and decreased with increases in laser fluence or with increases in scanning line spacing beyond spot diameter or with increases in ablation depth. Laser fluence, scanning line spacing and ablation depth all significantly affected femtosecond laser ablation efficiency. Use of a reasonable control for each of these parameters will improve future clinical application.
研究激光能量密度、扫描线间距和消融深度对飞秒激光对牙釉质和牙本质进行三维消融效率的影响。使用二极管泵浦薄盘飞秒激光(波长1025 nm,脉冲宽度400 fs)对牙釉质和牙本质进行消融。激光光斑在牙釉质和牙本质表面以一系列重叠的平行线进行引导,以形成三维空洞。然后在三维测量显微镜下测量消融空洞的深度和体积,以确定消融效率。使用不同的能量密度、扫描线间距和消融深度值来评估每个变量对消融效率的影响。牙釉质和牙本质的消融效率在不同的激光能量密度和扫描线数量下达到最大值,并随着激光能量密度的增加、扫描线间距超过光斑直径的增加或消融深度的增加而降低。激光能量密度、扫描线间距和消融深度均显著影响飞秒激光的消融效率。对这些参数中的每一个进行合理控制将改善未来的临床应用。