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On-Chip Fabrication and Assembly of Functional Microstructures for Single Cell Analysis

机译:用于单细胞分析的功能微结构的片上制造和组装

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In this paper, we propose the on-chip fabrication method of microstructure with dimensions of ~ 20 ??m to apply for the single cell analysis. The polymerized objects with arbitrary shape are fabricated by illumination of patterned UV-ray through the mask to the photo-crosslinkable resin on the microchip under a microscope. The mask is patterned the desired patterns. The fabricated polymerized objects can be used as "Microtools". The microtools were fabricated at the desired place on the micro-chip in less than 1 second. Additionally, the microtools were manipulated by optical tweezers for assembly of functional microstructures. The optically driven microstructures are expected to apply to cell analysis such as the position control and environment measurement of a cell.
机译:在本文中,我们提出了尺寸约为20?m的微结构的片上制造方法,以用于单细胞分析。在显微镜下,通过掩模将图案化的紫外线通过掩模照射到微芯片上的可光交联树脂上,可以制造出具有任意形状的聚合物体。掩模被图案化为期望的图案。所制造的聚合物体可以用作“微型工具”。微型工具在不到1秒的时间内在微型芯片上的所需位置上制成。另外,通过光学镊子操纵微型工具以组装功能性微型结构。光学驱动的微结构有望应用于细胞分析,例如细胞的位置控制和环境测量。

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