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A CMOS Single-Cell Deformability Analysis using 3D Hydrodynamic Stretching in a GHz Dielectric Flow Cytometry

机译:基于GHz介电流式细胞术中的3D流体动力学拉伸的CMOS单细胞可变形性分析

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This paper presents a high-throughput flow cytometry in CMOS for single-cell deformability analysis. By applying hydrodynamic stretching using microfluidics, cells are compressed and deformed depending on its elasticity. A CMOS 11-GHz dielectric sensor with on-chip coplanar electrodes is used to measure the degree of deformation through changes in the capacitance encoded in the measured waveforms. Experiments using polystyrene beads and THP-1 cells with and without ethanol incubation demonstrate the system capability with a throughput greater than 1 kcells/sec.
机译:本文介绍了CMOS中的高通量流式细胞术,用于单细胞可变形性分析。通过使用微流体施加流体动力学拉伸,根据其弹性来压缩细胞并变形。具有片上共面电极的CMOS 11-GHz介电传感器用于通过测量波形中编码的电容的变化来测量变形程度。使用具有和不含乙醇孵育的聚苯乙烯珠粒和THP-1细胞的实验证明了具有大于1kCells /秒的通量的系统能力。

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