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Thermal and noise level characteristics of hard dental tissue ablation with 350-fs pulse laser

机译:350 fs脉冲激光对硬性牙齿组织消融的热和噪声级特性

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Abstract: In spite of intensive research, lasers have not replaced conventional tools in many hard tissue applications. Low removal rates, loud operation noise, and mechanical and thermal damage are among the main obstacles to successful application of lasers. Ultrashort pulse lasers offer several advantages in their high per-pulse-efficiency, negligible thermal and mechanical damage and low noise operation. Practical applications of these devices, however, depends critically on sufficiently high volume removal which should match or even exceed the high speed drill. In our study, acoustical output of the USPL is compared to the low and high speed dental drill, Er:YAG, and Ho:YSGG lasers. Noise levels of the USPL are shown to be negligible in comparison with all other tested system. In addition, thermal characteristics of hard dental tissue ablation by ultrashort pulse laser of low and high pulse repetition rates are presented. Encouraging results showing temperatures increases smaller than 10$DGR@C even at the highest pulse repetition rates (1 KHz) are presented. A simple model for heat diffusion is discussed.!35
机译:摘要:尽管进行了深入的研究,但是激光在许多硬组织应用中并未替代传统工具。低去除率,较大的操作噪音以及机械和热损伤是成功应用激光的主要障碍。超短脉冲激光器具有高单脉冲效率,可忽略的热损伤和机械损伤以及低噪声操作等优点。然而,这些设备的实际应用关键取决于足够高的体积去除率,该去除率应与高速钻孔机相匹配,甚至超过高速钻孔器。在我们的研究中,USPL的声学输出与低速和高速牙科钻,Er:YAG和Ho:YSGG激光器进行了比较。与所有其他经过测试的系统相比,USPL的噪声水平可以忽略不计。此外,还介绍了低重复脉冲率和高重复脉冲率的超短脉冲激光对硬质牙齿组织的消融特性。令人鼓舞的结果表明,即使在最高的脉冲重复频率(1 KHz)下,温度升高也小于10 $ DGR @ C。讨论了一个简单的热扩散模型!35

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