Development and Testing of a Continuous Flow-Electrical-Split-Flow Lateral Transport Thin Separation System (Fl-El-SPLITT)

Author:

Shiri Farhad1ORCID,Gale Bruce K.1ORCID,Sant Himanshu1,King Brody2,Bardi Gina T.3,Hood Joshua L.3,Petersen Kevin E.1ORCID

Affiliation:

1. Department of Mechanical Engineering, University of Utah, 1495 E 100 S, Salt Lake City, Utah 84112, United States

2. Department of Biomedical Engineering, University of Utah, 36 S. Wasatch Drive, Rm. 3100, Salt Lake City, Utah 84112, United States

3. Department of Pharmacology and Toxicology & James Graham Brown Cancer Center & Hepatobiology and Toxicology COBRE, Kosair Charities Clinical & Translational Research Building, University of Louisville, Room 308, 505 South Hancock Street, Louisville, Kentucky 40202, United States

Funder

Elsa U. Pardee Foundation

National Cancer Institute

National Institute of General Medical Sciences

Department of Pharmacology and Toxicology, University of Louisville

Publisher

American Chemical Society (ACS)

Subject

Analytical Chemistry

Reference28 articles.

1. Continuous particle fractionation based on gravitational sedimentation in split-flow thin cells

2. Tasci, T. O.; Lambert, C. J.; Sant, H. J.; Manangon, E.; Fernandez, D. P.; Johnson, W. P.; Gale, B. K. In A microfluidic system for high throughput continuous separation of nanoparticles, 18th International Conference on Miniaturized Systems for Chemistry and Life Sciences, San Antonio, Texas, USA, October 26–30; San Antonio, Texas, USA, 2014.

3. A microfabricated electrical SPLITT system

4. Magnetic split-flow thin fractionation of magnetically susceptible particles

5. Analytical and preparative applications of magnetic split-flow thin fractionation on several ion-labeled red blood cells

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