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Biophotonic MEMS for single molecule detection and manipulation

机译:单分子检测和操作的生物光学MEMS

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摘要

The development of biophotonic MEMS for single molecule detection (SMD), manipulation and optical trapping is presented. Integrated cyclic Si{sub}xN{sub}y microfluidic devices with microelectrodes are fabricated with surface micromachining techniques. Microfluidic channels in the optical windows consist of just Si{sub}xN{sub}y membrane without substrates. Capability of SMD, manipulation and optical trapping are demonstrated with the Si{sub}xN{sub}y membrane channels. Such a device can be used in high throughput screening bioassay chips, which require multiplexed processing, SMD, and manipulation capability. Compared with earlier works on microfluidic devices formed by bonding two-glass substrates or polymers, our multiplexed design has attractive features such as bondless nano- and microfluidic channels, low transmission loss, and high stability to temperature and chemicals. The advanced biophotonic MEMS will have characterization and multiple manipulation tools for high-resolution spectroscopic analysis, robotic controls, and microscale lab automations on a chip.
机译:提出了单分子检测(SMD),操纵和光学诱捕的生物光学MEMS的发展。具有微电极的集成循环Si {Sub} XN {Sub} Y微流体装置用表面微机械技术制造。光学窗口中的微流体通道包括在没有基板的情况下的Si {sub} xn {sub} y膜。 SI {SUB} XN {SUB} Y膜通道对SMD,操纵和光学捕获的能力进行了演示。这种装置可用于高通量筛选生物测定芯片,其需要多路复用处理,SMD和操纵能力。与先前的工作相比,通过粘合双玻璃基板或聚合物形成的微流体装置,我们的多路复用设计具有诸如无关的纳米和微流体通道,低传输损耗和高温和化学品高稳定性的特征。先进的Biophotonic MEMS将具有用于芯片上的高分辨率光谱分析,机器人控制和微观实验室自动化的特征和多种操作工具。

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