Title
Aligned microcontact printing of micrometer-scale poly-L-Lysine structures for controlled growth of cultured neurons on planar microelectrode arrays.
Abstract
We describe a method for producing high-resolution chemical patterns on surfaces to control the attachment and growth of cultured neurons. Microcontact printing has been extended to allow the printing of /spl mu/m-scale protein lines aligned to an underlying pattern of planar microelectrodes. Poly-L-lysine (PL) lines have been printed on the electrode array for electrical studies on cultured neura...
Year
DOI
Venue
2000
10.1109/10.817614
IEEE Transactions on Biomedical Engineering
Keywords
Field
DocType
Soft lithography,Neurons,Electrodes,Extracellular,Chemicals,Surface topography,Proteins,Microelectrodes,Physics,Biomedical engineering
Biomedical engineering,Contact print,Computer science,Microcontact printing,Photolithography,Artificial intelligence,Neuron,Microelectrode,Computer vision,Electrode array,Biophysics,Micrometer,Electrode
Journal
Volume
Issue
ISSN
47
1
0018-9294
Citations 
PageRank 
References 
8
3.88
0
Authors
12
Name
Order
Citations
PageRank
Conrad D. James1186.15
Robert Davis2309.49
M. Meyer322838.78
A. Turner483.88
S. Turner583.88
G. Withers683.88
Lance C. Kam783.88
Gary Banker8498.10
Harold G. Craighead983.88
Michael S. Isaacson10217.25
J. N. Turner11329.66
William Shain12529.50