A dielectrophoresis-based microfluidic system having double-sided optimized 3d electrodes for label-free cancer cell separation with preserving cell viability

HIGHLIGHTS

  • who: V. Varmazyari from the Amirkabir University have published the article: A dielectrophoresis-based microfluidic system having double-sided optimized 3D electrodes for label-free cancer cell separation with preserving cell viability, in the Journal: Scientific Reports Scientific Reports
  • what: To validate the FEM solver, the study of Zhang et_al was considered in which the electric field distribution, the spectrogram of the CM factor, and the cell trajectories under different applied voltages were ru00ad egenerated26.

SUMMARY

    The sample inlet is for injecting cells, while buffer inlets force the cells entering from . . .

     

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