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首页> 外文期刊>Journal of robotics and mechatronics >Size-Dependent Filtration and Trapping of Microparticles in a Microfluidic Chip Using Graduated Gaps and Centrifugal Force
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Size-Dependent Filtration and Trapping of Microparticles in a Microfluidic Chip Using Graduated Gaps and Centrifugal Force

机译:使用分级间隙和离心力的微流控芯片中微粒的尺寸依赖性过滤和捕集

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摘要

We proposed size-dependent microparticle filtration and trapping using graduated microchannel gaps and centrifugal force using a three-dimensional magnetically driven microtool (3D-MMT) in a microfluidic chip made of polydimethylsiloxane (PDMS). Our paper contributes the following to the field: (1) Particle filtration is robust against pressure fluctuation due to tube vibration between the chip and pump. (2) Clogging by microparticles is avoided by rotating the 3D-MMT in a microchamber. (3) Size-classified microparticles are trapped by flow control along microchannel gaps. Different-sized microparticles flow in spiral microchannels and are filtered based on size between gaps and the substrate by centrifugal force. Microparticles larger than gaps remain in the inner microchannel. Rotating the 3D-MMT using an external magnetic circuit generates swirling flow in the microchamber. Size-classified microparticles are trapped in microchannels by closing the drain port for the targeted particle. Trapped particles are measured by direct observation and treated by reagent. After experiments, trapped particles are extracted by opening drain ports. We demonstrated microparticle filtration and microparticle trapping in the microfluidic chip.
机译:我们提出了在聚二甲基硅氧烷(PDMS)制成的微流控芯片中,利用分级的微通道间隙和离心力,使用三维磁性驱动的微型工具(3D-MMT),进行尺寸依赖性的微粒过滤和捕集。我们的论文为该领域做出了以下贡献:(1)颗粒过滤对于切屑和泵之间的管振动引起的压力波动具有鲁棒性。 (2)通过在微腔室内旋转3D-MMT避免了微粒的堵塞。 (3)通过流控制沿微通道间隙捕获尺寸分类的微粒。不同大小的微粒在螺旋微通道中流动,并根据间隙和基材之间的大小通过离心力进行过滤。大于间隙的微粒保留在内部微通道中。使用外部磁路旋转3D-MMT会在微腔中产生涡流。通过关闭目标颗粒的排出口,将尺寸分类的微粒捕获在微通道中。被捕获的颗粒通过直接观察进行测量,并通过试剂进行处理。经过实验后,通过打开排水孔将捕获的颗粒提取出来。我们展示了微流体芯片中的微粒过滤和微粒捕获​​。

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