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Selective E. coli Trapping with 3D Insulator-based Dielectrophoresis using DC-Biased, AC Electric Fields*

机译:使用DC偏置的AC电磁场与基于3D绝缘体的介电电泳的选择性E. Coli诱导*

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We present the development of a batch trapping, insulator-based dielectrophoretic (iDEP) device with threedimensional design. The microfluidic devices use DC-biased, AC electric fields to selectively manipulate biological particles based on their electric properties. The mold for the polymer microdevices is fabricated using an RIE-lag technique which creates microchannels with varying depths using a single etch process. The resulting three-dimensional insulating constrictions permit operation at low applied voltages. By varying both the applied frequency and the ratio of AC to DC electric fields, the iDEP device can trap and separate polystyrene beads and E. coli cells. Key Words: dielectrophoresis, particle separation, three dimensional fabrication
机译:我们介绍了具有三维设计的批量捕获,绝缘体基介电泳(IDEP)装置。微流体装置使用DC偏置的交流电场,以基于其电性能选择性地操纵生物颗粒。使用RIE-LAG技术制造用于聚合物微生物的模具,该技术通过使用单个蚀刻工艺产生具有不同深度的微通道。由此产生的三维绝缘收缩允许在低施加电压下操作。通过改变施加的频率和AC与直流电场的比率,IDEP装置可以捕获和单独的聚苯乙烯珠和大肠杆菌细胞。 关键词:介电电泳,粒子分离,三维制造

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