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Cell encapsulation modes in a flow-focusing microchannel: effects of shell fluid viscosity

机译:流动聚焦微通道中的细胞封装模式:壳液粘度的影响

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Flow-focusing microencapsulation is an important process to protect the cells in biomedical applications. This article characterizes different cell encapsulation modes and presents the droplet volume distribution, frequency of encapsulation and cell population in terms of inner and outer fluid capillary ratios and viscosity of the shell fluid. The desired mode of at least one cell in a droplet is determined for different capillary number ranges and each viscosity ratios. The droplet volume and frequency of droplet generation are normalized for a combined non-dimensional parameter to classify different patterns of compound droplet formation which helps us to improve single-cell encapsulation process. With increase in orifice radius, the droplet volume increases, and the success rate of cell encapsulation increases. Above a critical radius, the encapsulation mode transitions from one cell to multiple cells captured inside the droplet.
机译:聚焦流微囊化是在生物医学应用中保护细胞的重要过程。本文描述了不同的细胞包囊模式,并根据内,外流体毛细管比率和壳液粘度介绍了液滴体积分布,包囊频率和细胞数量。针对不同的毛细管数范围和每种粘度比,确定液滴中至少一个细胞的所需模式。针对组合的无量纲参数对液滴体积和液滴产生频率进行归一化,以对化合物液滴形成的不同模式进行分类,这有助于我们改善单细胞封装过程。随着孔半径的增加,液滴体积增加,并且细胞包封的成功率增加。在临界半径以上,封装模式从一个单元过渡到液滴内部捕获的多个单元。

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