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首页> 外文期刊>Biomedical Microdevices >Nano-aquarium for dynamic observation of living cells fabricated by femtosecond laser direct writing of photostructurable glass
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Nano-aquarium for dynamic observation of living cells fabricated by femtosecond laser direct writing of photostructurable glass

机译:飞秒激光直接写入可光化玻璃制成的用于动态观察活细胞的纳米水族馆

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We demonstrate the fabrication of three-dimensional (3-D) hollow micro structures embedded in photostructurable glass by a nonlinear multiphoton absorption process using a femtosecond (fs) laser. Fs laser direct writing followed by annealing and successive wet etching in dilute hydrofluoric (HF) acid solution resulted in the rapid manufacturing of microchips with 3-D hollow micro-structures for the dynamic observation of living microorganisms and cells in fresh water. The embedded microchannel structure enables us to analyze the continuous motion of Euglena gracilis. A microchamber with a movable microneedle demonstrates its ability for the elucidation of the information transmission process in Pleurosira laevis. Such microchips, referred to as nano-aquariums realize the efficient and highly functional observation of microorganisms and cells.
机译:我们演示了使用飞秒(fs)激光通过非线性多光子吸收过程制造嵌入在可光化玻璃中的三维(3-D)中空微结构。 Fs激光直接写入,然后在稀氢氟酸(HF)溶液中进行退火和连续湿法蚀刻,从而快速制造出具有3-D中空微结构的微芯片,用于动态观察淡水中的活微生物和细胞。嵌入式微通道结构使我们能够分析Euglena gracilis的连续运动。具有可移动微针的微腔室展示了其阐明Pleurosira laevis中信息传输过程的能力。这种称为纳米水族箱的微芯片实现了对微生物和细胞的高效且高度功能化的观察。

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