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首页> 外文期刊>Physics in medicine and biology. >The effect of free-electron laser pulse structure on mid-infrared soft-tissue ablation: biological effects.
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The effect of free-electron laser pulse structure on mid-infrared soft-tissue ablation: biological effects.

机译:自由电子激光脉冲结构对中红外软组织消融的影响:生物学效应。

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Previous studies have shown that changing the pulse structure of the free electron laser (FEL) from 1 to 200 ps and thus reducing the peak irradiance of the micropulse by 200 times had little or no effect on both the ablation threshold radiant exposure and the ablated crater depth for a defined radiant exposure. This study focuses on the ablation mechanism at 6.1 and 6.45 microm with an emphasis on the role of the FEL pulse structure. Three different experiments were performed to gain insight into this mechanism. The first was an analysis of the ablation plume dynamics observed for a 1 ps micropulse compared with a 200 ps micropulse as seen through bright-field analysis. Negligible differences are seen in the size, but not the dynamics of ablation, as a result of this imaging. The second experiment was a histological analysis of corneal and dermal tissue to determine whether there is less thermal damage associated with one micropulse duration versus another. No significant difference was seen in the extent of thermal damage on either canine cornea or mouse dermis for the micropulse durations studied at either wavelength. The final set of experiments involved the use of mass spectrometry to determine whether amide bond breakage could occur in the proteins present in tissue as a result of direct absorptions of mid-infrared light into the amide I and amide II absorption bands. This analysis showed that there was no amide bond breakage due to irradiation at 6.45 microm on protein.
机译:先前的研究表明,将自由电子激光(FEL)的脉冲结构从1 ps更改为200 ps,从而将微脉冲的峰值辐照度降低200倍,对烧蚀阈值辐射暴露和烧蚀的弹坑几乎没有影响。定义的辐射暴露的深度。这项研究的重点是6.1和6.45微米的消融机制,重点是FEL脉冲结构的作用。进行了三个不同的实验,以了解这种机制。首先是对1 ps微脉冲与200 ps微脉冲观察到的消融羽流动力学的分析,通过明场分析可以看到。由于这种成像,在尺寸上看不到差异,但是在消融动力学上看不到差异。第二个实验是对角膜和真皮组织进行组织学分析,以确定与一个微脉冲持续时间相比,与另一个微脉冲持续时间相关的热损伤是否更少。对于在任一波长下研究的微脉冲持续时间,犬角膜或小鼠真皮的热损伤程度均未见明显差异。最后一组实验涉及使用质谱法确定由于中红外光直接吸收到酰胺I和酰胺II吸收带中而导致组织中存在的蛋白质中是否发生酰胺键断裂。该分析表明,由于在蛋白质上以6.45μm照射而没有酰胺键断裂。

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