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三维六向锥管形预制件细观结构研究 被引量:1
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作者 李静东 蒋云 李嘉禄 《固体火箭技术》 EI CAS CSCD 北大核心 2015年第6期882-887,共6页
研究了逐步全减细纤维束工艺,并利用该工艺实现了三维六向锥管形预制件的制备。通过分析纤维束的运动走向和位置分布,获得了锥管形预制件的6种单胞;根据不同单胞结构,将预制件分为5个区域,针对5个分区的不同单胞,逐一构建几何模型,从而... 研究了逐步全减细纤维束工艺,并利用该工艺实现了三维六向锥管形预制件的制备。通过分析纤维束的运动走向和位置分布,获得了锥管形预制件的6种单胞;根据不同单胞结构,将预制件分为5个区域,针对5个分区的不同单胞,逐一构建几何模型,从而得到各部分纤维束在单胞中的排列与分布规律,可视化地表征了逐步全减细纤维束预制件的内部细观结构。研究成果为预制件几何尺寸和纤维体积百分含量的计算奠定了基础,同时为三维六向锥管形预制件的研发提供了理论指导。 展开更多
关键词 逐步全减细纤维束工艺 三维六向锥管形预制件 内部细观结构 可视化表征
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A microfluidic photolithography for controlled encapsulation of single cells inside hydrogel microstructures 被引量:4
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作者 JiangJiang Liu Dan Gao +1 位作者 SiFeng Mao Jin-Ming Lin 《Science China Chemistry》 SCIE EI CAS 2012年第4期494-501,共8页
A microfluidic approach to generate hydrogel microstructures inside microchannels for controlled encapsulation of single cells was developed. The method was based,on a modified microscope projection photolithography w... A microfluidic approach to generate hydrogel microstructures inside microchannels for controlled encapsulation of single cells was developed. The method was based,on a modified microscope projection photolithography which allowed for the photopolymerization of poly(ethylene glycol) diacrylate (PEGDA) inside microchannels. Uniformsized hydrogel microstmctures (-50 pan in diameter) were generated one by one with determined positions to encapsulate single cells without losing the viability. Cells of interest could be identified by any kinds of visible labels to be selectively encapsulated inside the formed hydrogel microstructures. Large-scale encapsulation of single cells was achieved with a relatively high efficiency of 80% and the viability of encapsulated cells could be guaranteed by removing the dead cells identified with Trypan blue. This method is simple, fast and convenient to pattern the microchannels with single cells for a wide range of cell-based applications. For demonstration, two intracellular enzyme assays of carboxylesterase were performed to investigate the distribution of enzyme concentrations and the kinetic information within the encapsulated single HepG2 cells. 展开更多
关键词 microfluidic single cells hydrogel microstructures HepG2 cells enzyme assay
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