## Abstract We report a PDMS microfluidic platform for parallel singleβcell analysis (PaSCAl) as a powerful tool to decipher the heterogeneity found in cell populations. Cells are trapped individually in dedicated pockets, and thereafter, a number of invasive or nonβinvasive analysis schemes are pe
β¦ LIBER β¦
Microfluidic Platforms for Single-Cell Analysis
β Scribed by Zare, Richard N.; Kim, Samuel
- Book ID
- 111921435
- Publisher
- Annual Reviews
- Year
- 2010
- Tongue
- English
- Weight
- 890 KB
- Volume
- 12
- Category
- Article
- ISSN
- 1523-9829
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
Parallel single-cell analysis microfluid
β
Floris T. G. van den Brink; Elmar Gool; Jean-Philippe Frimat; Johan Bomer; Alber
π
Article
π
2011
π
John Wiley and Sons
π
English
β 237 KB
Microfluidic techniques for dynamic sing
β
Wang, Yan ;Chen, Zhen-zhen ;Li, Qing-ling
π
Article
π
2010
π
Springer-Verlag
β 711 KB
A microfluidics platform for cell fusion
β
Daniel T Chiu
π
Article
π
2001
π
Elsevier Science
π
English
β 74 KB
A microfluidic platform for sequential l
β
Guodong Sui; Cheng-Chung Lee; Ken-Ichiro Kamei; Hua-Jung Li; Jin-Yi Wang; Jun Wa
π
Article
π
2006
π
Springer
π
English
β 288 KB
Microfluidic Platforms for Studies of An
β
Seok Chung; Ryo Sudo; Vernella Vickerman; Ioannis K. Zervantonakis; Roger D. Kam
π
Article
π
2010
π
Springer
π
English
β 678 KB
Microelectrophoresis platform for fast s
β
Dechen Jiang; Christopher E. Sims; Nancy L. Allbritton
π
Article
π
2010
π
John Wiley and Sons
π
English
β 237 KB
## Abstract A capillaryβbased microelectrophoresis platform for fast serial analysis of single cells is described. In this system, the capillary remains fixed and a twoβchannel flow system is used to rapidly switch the buffer surrounding the capillary inlet from a physiological buffer to an electro