511 - 512 |
Editorial Dielectrophoresis 2021 Lapizco-Encinas BH |
513 - 538 |
Protein dielectrophoresis: Key dielectric parameters and evolving theory Holzel R, Pethig R |
539 - 564 |
Dielectrophoresis: Developments and applications from 2010 to 2020 Sarno B, Heineck D, Heller MJ, Ibsen SD |
565 - 587 |
Toward low-voltage dielectrophoresis-based microfluidic systems: A review Ramirez-Murillo CJ, de los Santos-Ramirez JM, Perez-Gonzalez VH |
588 - 604 |
Analysis of microorganisms with nonlinear electrokinetic microsystems Hakim KS, Lapizco-Encinas BH |
605 - 625 |
A survey of electrokinetically-driven microfluidics for cancer cells manipulation Romero-Soto FO, Polanco-Oliva MI, Gallo-Villanueva RC, Martinez-Chapa SO, Perez-Gonzalez VH |
626 - 634 |
Joule heating-enabled electrothermal enrichment of nanoparticles in insulator-based dielectrophoretic microdevices Malekanfard A, Liu ZJ, Song L, Kale A, Zhang C, Yu LD, Song YX, Xuan XC |
635 - 643 |
Theory for hierarchical assembly with dielectrophoresis and the role of particle anisotropy Cao WH, Brown KA |
644 - 655 |
Quantitative analysis of the three-dimensional trap stiffness of a dielectrophoretic corral trap Rahman MRU, Kwak TJ, Woehl JC, Chang WJ |
656 - 666 |
Dielectrophoretic ultra-high-frequency characterization and in silico sorting on uptake of rare earth elements by Cupriavidus necator Giduthuri AT, Adekanmbi EO, Srivastava SK, Moberly JG |
667 - 675 |
Dielectric spectroscopy of red blood cells in sickle cell disease Liu J, Qiang YH, Du E |