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Microtubule alignment and manipulation using AC electrokinetics
Maruti Uppalapati
, Ying Ming Huang
,
Thomas N. Jackson
,
William O. Hancock
Materials Research Institute (MRI)
Biomedical Engineering
Huck Institutes of the Life Sciences
Electrical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
58
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Scopus citations
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Chemistry
Dielectrophoresis
100%
Buffer Solution
100%
Electric Field
100%
Electrophoresis
100%
Ionic Strength
50%
Electrical Property
50%
Microelectrode
50%
PIPES
50%
Glass Substrate
50%
electrode
50%
Electroosmosis
50%
Paclitaxel
50%
Keyphrases
Microtubules
100%
AC Electrokinetics
100%
Kinesin
22%
Solution Conductivity
22%
AC Electric Field
22%
Electroosmotic Flow
22%
AC Frequency
22%
Electrothermal Flow
22%
Microtubule Motors
22%
Multi-electrode
11%
Electrical Properties
11%
Dielectrophoresis
11%
Mitotic Spindle
11%
Taxol
11%
Low Ionic Strength
11%
Glass Substrate
11%
Intracellular Transport
11%
ASTER
11%
Microtubule System
11%
Dielectrophoretic Force
11%
Biomotor
11%
Bovine Brain
11%
Transport Applications
11%
Electrode Geometry
11%
Engineering
Electric Field
100%
Model System
50%
Ionic Strength
50%
Electroosmotic Flow
50%
Electrode Geometry
50%
Field Result
50%
Glass Substrate
50%
Immunology and Microbiology
Microtubule
100%
Solution and Solubility
41%
Conductance
25%
Electric Field
16%
Ionic Strength
8%
Intracellular Transport
8%
Mitosis Spindle
8%