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使用飞秒激光进行硬组织消融的超快动力学

Ultrafast dynamics of hard tissue ablation using femtosecond-lasers.

作者信息

Domke Matthias, Wick Sebastian, Laible Maike, Rapp Stephan, Huber Heinz P, Sroka Ronald

机构信息

Josef Ressel Center for Material Processing with Ultrashort Pulsed Lasers, Research Center for Microtechnology, Vorarlberg University of Applied Sciences, Dornbirn, Austria.

Lasercenter of Munich University of Applied Sciences, Munich, Germany.

出版信息

J Biophotonics. 2018 Oct;11(10):e201700373. doi: 10.1002/jbio.201700373. Epub 2018 Jun 28.

Abstract

Several studies on hard tissue laser ablation demonstrated that ultrafast lasers enable precise material removal without thermal side effects. Although the principle ablation mechanisms have been thoroughly investigated, there are still open questions regarding the influence of material properties on transient dynamics. In this investigation, we applied pump-probe microscopy to record ablation dynamics of biomaterials with different tensile strengths (dentin, chicken bone, gallstone and kidney stones) at delay times between 1 picosecond and 10 microseconds. Transient reflectivity changes, pressure and shock wave velocities and elastic constants were determined. The result revealed that absorption and excitation show the typical well-known transient behavior of dielectric materials. We observed for all samples a photomechanical laser ablation process, where ultrafast expansion of the excited volume generates pressure waves leading to fragmentation around the excited region. In addition, we identified tensile-strength-related differences in the size of ablated craters and ejected particles. The elastic constants derived were in agreement with literature values. In conclusion, pressure-wave-assisted material removal seems to be a general mechanism for hard tissue ablation with ultrafast lasers. This photomechanical process increases ablation efficiency and removes heated material, thus ultrafast laser ablation is of interest for clinical application where heating of the tissue must be avoided.

摘要

多项关于硬组织激光消融的研究表明,超快激光能够实现精确的材料去除,且无热副作用。尽管已经对主要的消融机制进行了深入研究,但关于材料特性对瞬态动力学的影响仍存在一些未解决的问题。在本研究中,我们应用泵浦-探测显微镜记录了具有不同拉伸强度的生物材料(牙本质、鸡骨、胆结石和肾结石)在1皮秒至10微秒延迟时间内的消融动力学。测定了瞬态反射率变化、压力和冲击波速度以及弹性常数。结果表明,吸收和激发呈现出介电材料典型的众所周知的瞬态行为。我们观察到所有样品均存在光机械激光消融过程,其中受激体积的超快膨胀产生压力波,导致受激区域周围的材料破碎。此外,我们还发现了消融坑和喷射颗粒大小与拉伸强度相关的差异。推导得到的弹性常数与文献值一致。总之,压力波辅助材料去除似乎是超快激光进行硬组织消融的一种普遍机制。这种光机械过程提高了消融效率并去除了受热材料,因此超快激光消融在必须避免组织受热的临床应用中具有吸引力。

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