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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Preventing biological activity of Ulocladium sp spores in artifacts using 157-nm laser
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Preventing biological activity of Ulocladium sp spores in artifacts using 157-nm laser

机译:使用157 nm激光预防伪影中Ulocladium sp孢子的生物活性

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摘要

High resolution atomic force microscopy images of immobilized Ulocladium sp cultures on silicon wafers reveal the cessation of biological activity after laser illumination at 157 nm. Laser light dissociates the external multilayered proteinaceous membrane of the spores, reducing their thickness to a critical value prior to cell explosion due to the high internal pressure of the nucleus. The population of a monolayer culture was successfully destroyed following illumination with 150 laser pulses at the fluence of 1 mJ/cm~2 per pulse. A thin layer of 0.3 nm was removed on the average from the external membrane per pulse, and a thin layer of 45 nm had to be removed from the external membrane before cell explosion. Thus, the use of a 157-nm laser is an effective and controllable method for stopping biological activity of Ulocladium sp spores in artifacts. This finding supports previous results of using 157-nm lasers against foxing in historic paper preservation.
机译:固定在硅片上的Ulocladium sp培养物的高分辨率原子力显微镜图像显示了在157 nm激光照射后生物活性的停止。激光使孢子的外部多层蛋白质膜解离,由于细胞核的高内部压力,在细胞爆炸之前,其厚度减小至临界值。在以每脉冲1 mJ / cm〜2的能量密度照射150个激光脉冲后,成功破坏了单层培养的种群。每个脉冲平均从外膜上去除0.3 nm的薄层,在细胞爆炸之前必须从外膜上去除45 nm的薄层。因此,使用157 nm激光是一种有效且可控制的方法,可用于停止工件中Ulocladium sp孢子的生物活性。这一发现支持了在历史性的纸张保存中使用157 nm激光防止定影的先前结果。

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