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Fabrication of Pneumatic Microvalve for Tall Microchannel Using Inclined Lithography

机译:倾斜光刻技术用于高层微通道气动微阀的制造

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摘要

We used inclined lithography to fabricate a pneumatic microvalve for tall microchannels such as those used to convey large cells. The pneumatic microvalve consists of three layers. The upper layer is the actual liquid microchannel, which has a parallelogram-shaped cross section of width 500 μm, height 100 μm, and an acute angle of 53.6°. The lower layer is a pneumatic microchannel that functions as an actuator, and the middle layer is a thin polydimethylsiloxane membrane between the upper and lower layers. The operation of the pneumatic microchannel actuator causes the thin membrane to bend, resulting in the bending of the liquid microchannel and its closure. It was confirmed that the closure of the liquid microchannel completely stopped the flow of the HeLa cell suspension that was used to demonstrate the operation of the microvalve. The HeLa cells that passed through the microchannel were also observed to retain their proliferation and morphological properties.
机译:我们使用倾斜光刻技术制造了用于高微通道的气动微阀,例如用于输送大细胞的微通道。气动微型阀由三层组成。上层是实际的液体微通道,其具有宽500μm,高100μm和锐角53.6°的平行四边形形状的横截面。下层是用作致动器的气动微通道,中层是上层和下层之间的聚二甲基硅氧烷薄膜。气动微通道致动器的操作会导致薄膜弯曲,从而导致液体微通道弯曲并关闭。证实了液体微通道的关闭完全停止了用于证明微阀操作的HeLa细胞悬液的流动。还观察到通过微通道的HeLa细胞保持其增殖和形态特性。

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