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Mechanisms of femtosecond laser cell surgery in the low-density plasma regime

机译:低密度血浆条件下飞秒激光细胞手术的机制

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Although femtosecond laser cell surgery is widely used for fundamental research in cell biology, the mechanisms in the so-called low-density plasma regime are largely unknown. To date, it is still unclear on which time scales free electron and free radical-induced chemical effects take place leading to intracellular ablation. In this paper, we present our experimental study on the influence of laser parameters and staining on the ablation threshold. We found that the ablation effect resulted from the accumulation of single-shot multiphoton-induced photochemical effects finished within a few nanoseconds. In addition, fluorescence staining of subcellular structures significantly decreased the ablation threshold. Based on our findings, we propose that dye molecules are the major source for providing seed electrons for the ionization cascade.
机译:尽管飞秒激光细胞外科手术被广泛用于细胞生物学的基础研究,但在所谓的低密度血浆治疗方案中的机制尚不清楚。迄今为止,尚不清楚在什么时间尺度上发生自由电子和自由基诱导的化学作用而导致细胞内消融。在本文中,我们介绍了激光参数和染色对消融阈值影响的实验研究。我们发现,消融作用是由单发多光子诱导的光化学作用在几纳秒内完成积累而产生的。另外,亚细胞结构的荧光染色显着降低了消融阈值。根据我们的发现,我们建议染料分子是为电离级联反应提供种子电子的主要来源。

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