Martinez‐Duarte, 2022 - Google Patents
A critical review on the fabrication techniques that can enable higher throughput in dielectrophoresis devicesMartinez‐Duarte, 2022
View PDF- Document ID
- 8738343769438057354
- Author
- Martinez‐Duarte R
- Publication year
- Publication venue
- Electrophoresis
External Links
Snippet
The sorting of targeted cells in a sample is a cornerstone of healthcare diagnostics and therapeutics. This work focuses on the use of dielectrophoresis for the selective sorting of targeted bioparticles in a sample and how the lack of throughput has been one important …
- 238000000034 method 0 title abstract description 108
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Martinez‐Duarte | Microfabrication technologies in dielectrophoresis applications—A review | |
Martinez‐Duarte | A critical review on the fabrication techniques that can enable higher throughput in dielectrophoresis devices | |
Gough et al. | Self-actuation of liquid metal via redox reaction | |
Ehrfeld | Electrochemistry and microsystems | |
US9719962B2 (en) | Device and method for applying a continuous electric field | |
Lei | Materials and fabrication techniques for nano-and microfluidic devices | |
Svedberg et al. | Sheathless electrospray from polymer microchips | |
Tanzi et al. | Fabrication of combined-scale nano-and microfluidic polymer systems using a multilevel dry etching, electroplating and molding process | |
Lima et al. | Sacrificial adhesive bonding: a powerful method for fabrication of glass microchips | |
Zellner et al. | Silicon insulator‐based dielectrophoresis devices for minimized heating effects | |
Gaudry et al. | In‐plane alloy electrodes for capacitively coupled contactless conductivity detection in poly (methylmethacrylate) electrophoretic chips | |
Lindström et al. | A microwell array device with integrated microfluidic components for enhanced single‐cell analysis | |
Schrott et al. | Metal electrodes in plastic microfluidic systems | |
Lim et al. | Electroosmotic flow in microchannel with black silicon nanostructures | |
Teixeira et al. | Renewable solid electrodes in microfluidics: recovering the electrochemical activity without treating the surface | |
US7674545B2 (en) | Electrokinetic micro power cell using microfluidic-chip with multi-channel type | |
Lim et al. | Effect of nanostructures orientation on electroosmotic flow in a microfluidic channel | |
Segato et al. | A rapid and reliable bonding process for microchip electrophoresis fabricated in glass substrates | |
Liu et al. | Low-cost and versatile integration of microwire electrodes and optical waveguides into silicone elastomeric devices using modified xurographic methods | |
Li et al. | Reliable and high quality adhesive bonding for microfluidic devices | |
WO2012085728A1 (en) | Microfluidic device with fluid flow control means | |
CN103586093B (en) | Microfluidic chip and manufacturing method thereof | |
Goluch et al. | Microfluidic method for in-situ deposition and precision patterning of thin-film metals on curved surfaces | |
Choi et al. | Hydrophilic strips for preventing air bubble formation in a microfluidic chamber | |
EP3314217B1 (en) | System and method for measuring flow |