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Development of a Crossing Constriction Channel Based Microfluidic Cytometry Enabling the High-Throughput Quantification of Single-Cell Electrical Phenotypes

机译:基于交叉收缩通道的微流式细胞术的发展,使单细胞电表型的高通量定量成为可能

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) of single cells. In operations, cells in suspension were forced to squeeze through the major constriction channel and effectively seal rather than invading into the side constriction channel, leading to variations in impedance data. Based on an equivalent circuit model, these raw impedance data were translated into C
机译:)的单个单元格。在操作中,处于悬浮状态的细胞被迫穿过主要收缩通道并有效地密封而不是侵入侧部收缩通道,从而导致阻抗数据的变化。基于等效电路模型,这些原始阻抗数据被转换为C

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