首页> 外文会议>Conference on high-power lasers and applications VIII >Temporal evolution of liquid-assisted hard biotissue ablation with infrared pulsed lasers under a liquid environment
【24h】

Temporal evolution of liquid-assisted hard biotissue ablation with infrared pulsed lasers under a liquid environment

机译:液体环境下红外脉冲激光器液体辅助硬化生物烧蚀的时间演变

获取原文
获取外文期刊封面目录资料

摘要

Liquid-assisted hard biotissue ablation with the pulsed lasers takes advantages in precision and compatibility than mechanical tools in traditional surgery. The objective of this study was to monitor the dynamic process of the cavitation bubble evolution induced by Ho:YAG laser under water and identify the opening time of channel formation between the fiber tip to the target tissue surface. A free-running Ho:YAG laser was used in the experiment. The wavelength was 2.1 μm with a pulse duration of 350 us and pulse energy varied from 500 mJ to 2000 mJ. The high-speed camera (PCO. dimax, Germany, PCO) applied to monitor the whole ablation process was setting at a frame rate of 52000 frames/s. The results showed that the cavitation bubble induced by laser energy experienced an oscillation process including occurrence, expansion, contraction and subsequent collapse. A channel connected the fiber tip and target tissue surface was formed during the dynamic process which allowed the following pulse energy transmitted through the channel with a relative low absorption and directly interacted with the target tissue. The beginning time of channel formation, as well as the duration of channel opening, as functions of incident laser energy were also presented. A micro-explosion was observed near the tissue surface during the bubble collapse, which may contribute to produce a clean cut, reduce the thermal injury and improve the morphology of ablation crater.
机译:与脉冲激光器的液体辅助硬化生物烧蚀能够以精密和兼容性的优点,而不是传统手术中的机械工具。本研究的目的是监测HO:YAG激光在水下诱导的空化泡沫进化的动态过程,并将纤维尖端之间的通道形成的打开时间识别到靶组织表面。在实验中使用了自由运行的HO:YAG激光器。波长为2.1μm,脉冲持续时间为350美元,脉冲能量从500 mj到2000 mj变化。高速相机(PCO。DIMAX,德国,PCO)应用于监控整个消融过程的帧速率为52000帧/秒。结果表明,激光能量引起的空化泡沫经历了振荡过程,包括发生,膨胀,收缩和随后的坍塌。在动态过程期间形成连接光纤尖端和目标组织表面的通道,其允许通过通道传递的以下脉冲能量,其具有相对低的吸收并直接与目标组织相互作用。还提出了渠道形成的开始时间,以及信道开放的持续时间,作为事故激光能量的功能。在泡沫塌陷期间在组织表面附近观察到微爆炸,这可能有助于产生清洁切割,降低热损伤并改善消融火山口的形态。

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