【24h】

An investigation into the interaction of a XeCl excimer laser with hard tissue

机译:XeCl准分子激光与硬组织相互作用的研究

获取原文
获取原文并翻译 | 示例

摘要

An investigation into the interaction of a fibre deliverable, long pulse, xenon chloride (308 nm) excimer laser with hard biotissue has been carried out. The laser produces pulses of 200+ ns as opposed to around 10-20 ns for most of the previously reported data. The threshold of ablation and the maximum ablation depth (AD) in human molar dentine were found to be 0.30+-0.05 J/cm~2 and 1.57+-0.04 mum/pulse respectively. The threshold for enamel was found to be above the achievable fluence with the available optics. The ablation process was investigated as a function of fluence (approx 0.1-6 J/cm~2), pulse repetition rate (PRR) (5- 25 Hz) and number of pulses (500- 4000). Each variable was altered independently of the other two. At a constant number of pulses, ablation depth per pulse was found to increase linearly as a function of fluence, up to a saturation fluence of approx4 J/cm~2. Variation of the PRR alone was found to affect both the ablation threshold and the AD. For constant fluence and PRR, AD decreases non-linearly with an increasing number of pulses. This could be because at high pulse numbers the craters are deep, the walls of the crater absorb more energy and as it is increasingly difficult for the debris to escape, shielding of the tissue occurs. Shielding may also be due to absorption in a luminescent plume. At high fluence and PRR, sharp holes were formed in the dentine although charring was sometimes found around the edges. High PRR also induced considerable mechanical damage.
机译:已经研究了光纤可传输的长脉冲氯化氙(308 nm)准分子激光与硬生物组织之间的相互作用。激光产生200+ ns的脉冲,而以前报告的大多数数据约为10-20 ns。人类磨牙牙本质的消融阈值和最大消融深度(AD)分别为0.30 + -0.05 J / cm〜2和1.57 + -0.04 mum /脉冲。发现搪瓷的阈值高于可用光学器件可达到的注量。研究了烧蚀过程与通量(约0.1-6J / cm-2),脉冲重复率(PRR)(5-25Hz)和脉冲数(500-4000)的函数。每个变量都独立于其他两个变量进行了更改。在恒定脉冲数下,发现每个脉冲的烧蚀深度随通量的增加而线性增加,直至饱和通量约为4 J / cm〜2。发现仅PRR的变化会影响消融阈值和AD。对于恒定通量和PRR,AD随着脉冲数量的增加而非线性降低。这可能是因为在高脉冲数下,弹坑很深,弹坑的壁吸收了更多的能量,并且由于碎片越来越难以逸出,因此对组织进行了屏蔽。屏蔽也可能归因于发光羽流中的吸收。在高通量和PRR的情况下,尽管有时在边缘发现烧焦,但在牙本质中会形成尖锐的孔。高PRR也会引起相当大的机械损伤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号