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首页> 外文期刊>Journal of robotics and mechatronics >Maskless Gray Scale Lithography and its 3D Microfluidic Applications
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Maskless Gray Scale Lithography and its 3D Microfluidic Applications

机译:无掩模灰度光刻及其3D微流控应用

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摘要

This paper presents the novel three-dimensional fabrication using maskless exposure equipment and three-dimensional (3D) microfluidic cell manipulation uses grayscale data to directly control the exposed photoresist height without using a mask. The 3D microchannel and microvalve were fabricated simply using low-cost exposure and height ranging from 0 to 200 μm. The 3D microvalve prevents liquid leakage when the membrane is closed - difficult to do using conventional 2D photolithography. We removed the oocyte zona pellucida passing through the 3D microchannel whose cross-section is gradually restricted along the path to provide mechanical stimulation omnidirectionally on the oocyte surface. The microfluidic chip may contribute to make high peeled-oocyte throughput effective without damaging the oocytes.
机译:本文介绍了使用无掩模曝光设备进行的新型三维制造,而三维(3D)微流体单元处理使用灰度数据直接控制了曝光的光刻胶高度,而无需使用掩模。 3D微通道和微阀仅使用低成本曝光即可制造,高度范围为0至200μm。 3D微型阀可在膜关闭时防止液体泄漏-使用常规2D光刻很难做到。我们删除了穿过3D微通道的卵母细胞透明带,其横截面沿路径逐渐受到限制,以在卵母细胞表面全方位提供机械刺激。微流体芯片可有助于使高剥离卵母细胞通过量有效而不损害卵母细胞。

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