DocumentCode :
3660282
Title :
3D cell manipulation with honeycomb-patterned scaffold for regeneration of bone-like tissues
Author :
Zhijie Huan;Henry K. Chu;Jie Yang;Dong Sun
Author_Institution :
Department of Precision Machinery and Instrumentation, University of Science and Technology of China, Hefei, Anhui Province, China
fYear :
2015
Firstpage :
1680
Lastpage :
1685
Abstract :
Dielectrophoresis (DEP) has widely been used for manipulation and patterning of biological cells. In this paper, a novel multi-layer scaffold structure was designed for patterning cells in 3D via dielectrophoresis. Honeycomb patterns were integrated in each layer of the structure in order to pattern cells into bone-like tissues. When a voltage was supplied to the scaffold structure, non-uniform electric fields were established to manipulate cells automatically, forming honeycomb-shaped patterns at different layers. To confirm the proposed cell manipulation mechanism, the electric fields were simulated and the structure was examined through experiments. Different voltage inputs were tested and a voltage input of 20V can form a uniform and complete hexagon patterns. The results show that this novel 3D scaffold is able to manipulate biological cells in 3D via dielectrophoresis rapidly.
Keywords :
"Computer architecture","Dielectrophoresis","Microprocessors","Electric fields","Three-dimensional displays","Bones","Force"
Publisher :
ieee
Conference_Titel :
Information and Automation, 2015 IEEE International Conference on
Type :
conf
DOI :
10.1109/ICInfA.2015.7279556
Filename :
7279556
Link To Document :
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