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A parylene-C based 16 channels flexible bio-electrode for ECoG recording
Lei Chun Chou
, Shang Wei Tsai
, Wun Lun Chang
,
Jin-Chern Chiou
,
Tzai-Wen Chiu
Department of Electrical and Computer Engineering
Department of Biological Science and Technology
Research output
:
Contribution to journal
›
Conference article
›
peer-review
6
Scopus citations
Overview
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Keyphrases
16-channel
100%
Bioelectrode
100%
Electrocorticography (ECoG)
100%
Parylene C
100%
End System
33%
Sprague-Dawley Rats
33%
Spatial Resolution
16%
Micro-electro-mechanical Systems Technology
16%
Reference Signal
16%
Oxygen Plasma
16%
Spatial-temporal
16%
Electrical Signal
16%
Connector
16%
Size-and-shape
16%
Auditory Stimulation
16%
Parylene
16%
Auditory Evoked Potentials
16%
Metal Wire
16%
Temporal Resolution
16%
Rat Brain
16%
Potential Signal
16%
Electrocorticography Signal
16%
Platinum Group Metals
16%
Head Bones
16%
Implant Surgery
16%
Engineering
Bioelectrode
100%
End System
50%
Simplifies
25%
Implant
25%
Micro-Electro-Mechanical System
25%
System Technology
25%
Reference Signal
25%
Spatial Resolution
25%
Electrical Signal
25%
Metal Wire
25%
Temporal Resolution
25%