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Validation and perspectives of a femtosecond laser fabricated monolithic optical stretcher

机译:飞秒激光制造的单片光学担架的验证和观点

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The combination of high power laser beams with microfluidic delivery of cells is at the heart of high-throughput, single-cell analysis and disease diagnosis with an optical stretcher. So far, the challenges arising from this combination have been addressed by externally aligning optical fibres with microfluidic glass capillaries, which has a limited potential for integration into lab-on-a-chip environments. Here we demonstrate the successful production and use of a monolithic glass chip for optical stretching of white blood cells, featuring microfluidic channels and optical waveguides directly written into bulk glass by femtosecond laser pulses. The performance of this novel chip is compared to the standard capillary configuration. The robustness, durability and potential for intricate flow patterns provided by this monolithic optical stretcher chip suggest its use for future diagnostic and biotechnological applications.
机译:高功率激光束与细胞微流传递的结合是通过光学担架进行高通量,单细胞分析和疾病诊断的核心。到目前为止,通过将光纤与微流玻璃毛细管进行外部对准已经解决了由这种组合引起的挑战,而微流玻璃毛细管在集成到芯片实验室环境中的潜力有限。在这里,我们演示了成功生产和使用单片玻璃芯片对白细胞进行光学拉伸的功能,该芯片具有飞秒激光脉冲直接将微流体通道和光波导直接写入大块玻璃的功能。将该新型芯片的性能与标准毛细管配置进行了比较。这种单片式光学担架芯片提供的坚固性,耐用性和潜在的复杂流型,表明其可用于未来的诊断和生物技术应用。

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