Neev J, Stabholtz A, Liaw L H, Torabinejad M, Fujishige J T, Ho P D, Berns M W
Beckman Laser Institute and Medical Clinic, University of California, Irvine 92715.
Lasers Surg Med. 1993;13(3):353-62. doi: 10.1002/lsm.1900130312.
The interaction of a short pulse XeCl excimer laser radiation with human dentin was investigated. The dependence of surface temperatures and temperature gradients into the treated teeth on laser parameters such as fluence (0.5J/cm2-7J/cm2), pulse repetition rate (1Hz-35Hz), and spot size (0.004cm2-0.12cm2) was studied. Additionally, the effect of fluence and pulse repetition rate on dentin microstructure was studied using scanning electron microscopy (SEM). It is demonstrated that this "cold ablation" excimer laser can result in significant thermal modification in the dentin surfaces. Changes include the formation of melted dentin grains, which uniformly cover the surface and the exposed dentin tubules. Maximum temperatures of the ablated surfaces, however, remained relatively low at most laser parameters used. Also, the immediate neighborhood of the root canal was essentially undisturbed at most laser parameters. These observations suggest that with the appropriate choice of parameters XeCl lasers can be effective in producing surface structures that may prove useful in enhancing bond strength or other applications in dentistry, without exposing tooth pulp to significant temperature elevation.
研究了短脉冲XeCl准分子激光辐射与人类牙本质的相互作用。研究了诸如能量密度(0.5J/cm² - 7J/cm²)、脉冲重复频率(1Hz - 35Hz)和光斑尺寸(0.004cm² - 0.12cm²)等激光参数对处理后牙齿表面温度和温度梯度的影响。此外,使用扫描电子显微镜(SEM)研究了能量密度和脉冲重复频率对牙本质微观结构的影响。结果表明,这种“冷消融”准分子激光可导致牙本质表面发生显著的热改性。变化包括形成熔融的牙本质颗粒,其均匀覆盖表面和暴露的牙本质小管。然而,在大多数使用的激光参数下,消融表面的最高温度仍然相对较低。而且,在大多数激光参数下,根管的紧邻区域基本未受干扰。这些观察结果表明,通过适当选择参数,XeCl激光可以有效地产生可能在增强粘结强度或牙科其他应用中有用的表面结构,而不会使牙髓暴露于显著的温度升高。