Tinne Nadine, Kaune Brigitte, Krüger Alexander, Ripken Tammo
Laser Zentrum Hannover e.V., Biomedical Optics Department, Hannover, Germany.
PLoS One. 2014 Dec 11;9(12):e114437. doi: 10.1371/journal.pone.0114437. eCollection 2014.
The emerging use of femtosecond lasers with high repetition rates in the MHz regime together with limited scan speed implies possible mutual optical and dynamical interaction effects of the individual cutting spots. In order to get more insight into the dynamics a time-resolved photographic analysis of the interaction of cavitation bubbles is presented. Particularly, we investigated the influence of fs-laser pulses and their resulting bubble dynamics with various spatial as well as temporal separations. Different time courses of characteristic interaction effects between the cavitation bubbles were observed depending on pulse energy and spatio-temporal pulse separation. These ranged from merely no interaction to the phenomena of strong water jet formation. Afterwards, the mechanisms are discussed regarding their impact on the medical application of effective tissue cutting lateral to the laser beam direction with best possible axial precision: the mechanical forces of photodisruption as well as the occurring water jet should have low axial extend and a preferably lateral priority. Furthermore, the overall efficiency of energy conversion into controlled mechanical impact should be maximized compared to the transmitted pulse energy and unwanted long range mechanical side effects, e.g. shock waves, axial jet components. In conclusion, these experimental results are of great importance for the prospective optimization of the ophthalmic surgical process with high-repetition rate fs-lasers.
兆赫兹范围内高重复率飞秒激光的新兴应用以及有限的扫描速度意味着各个切割点可能存在相互的光学和动力学相互作用效应。为了更深入了解动力学,本文对空化气泡相互作用进行了时间分辨的摄影分析。特别是,我们研究了飞秒激光脉冲及其产生的气泡动力学在不同空间和时间间隔下的影响。根据脉冲能量和时空脉冲间隔,观察到空化气泡之间特征相互作用效应的不同时间进程。这些范围从仅仅没有相互作用到强烈水射流形成的现象。之后,讨论了这些机制对沿激光束方向横向进行有效组织切割且具有尽可能最佳轴向精度的医学应用的影响:光致破裂的机械力以及产生的水射流应具有低轴向延伸且优先横向作用。此外,与传输的脉冲能量和不必要的远距离机械副作用(如冲击波、轴向射流成分)相比,能量转换为可控机械冲击的整体效率应最大化。总之,这些实验结果对于利用高重复率飞秒激光对眼科手术过程进行前瞻性优化具有重要意义。