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Time-resolved studies of plasma-mediated surface ablation of soft biological tissue with near-infrared picosecond laser pulses

机译:用近红外皮秒激光脉冲对软生物组织进行等离子体介导的表面消融的时间分辨研究

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Abstract: Time-resolved video photographs have been taken in order to investigate plasma induced surface ablation of soft tissue by IR picosecond laser pulses with energies of about 1 mJ. The emission and propagation of shock waves in the irradiated tissue as well as in the surrounding air environment was studied. The pressure amplitudes of the shock transients were determined from the measured shock velocities. A decay of the pressure amplitude below 100 MPa was observed within a distance of about 200 $mu@m from the center of laser induced optical breakdown. The dynamics of the ablation crater and the ejection of the ablation fragments was studied on a larger time scale. The maximum expansion of the ablation crater was measured to be about 200 $Mu@m at temporal delays of 4-5 $mu@s after the impact of the laser pulse. Furthermore, generation and propagation of a surface deformation wave was observed. Thus, we present a detailed and consistent description of all phenomena occurring during plasma-mediated surface ablation of soft tissue. !0
机译:摘要:为了研究等离子红外皮秒激光脉冲(能量约为1 mJ)对等离子体诱导的软组织表面消融,已拍摄了时间分辨的视频照片。研究了冲击波在被辐照组织以及周围空气环境中的发射和传播。冲击瞬变的压力幅度由测得的冲击速度确定。在距激光诱导的光学击穿中心约200μm的距离内观察到低于100MPa的压力幅度的衰减。在较大的时间尺度上研究了烧蚀坑的动力学和烧蚀碎片的弹出。在激光脉冲的冲击之后,在4-5μμs的时间延迟下,烧蚀弹坑的最大膨胀被测量为约200μMu·m。此外,观察到表面变形波的产生和传播。因此,我们提出了在等离子体介导的软组织表面消融过程中发生的所有现象的详细且一致的描述。 !0

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