DocumentCode :
84477
Title :
An Electroplating-Free and Minimal Noise Polyimide Microelectrode for Recording Auditory Evoked Potentials From the Epicranius
Author :
Jeong Hun Kim ; Inho Song ; Seung Min Lee ; Ho Seok Choi ; Hangjin Byeon ; Inyoung Kim ; Sang-Hoon Lee
Author_Institution :
Dept. of Biomed. Eng., Korea Univ., Seoul, South Korea
Volume :
60
Issue :
12
fYear :
2013
fDate :
Dec. 2013
Firstpage :
3425
Lastpage :
3431
Abstract :
In this paper, we introduce an electrode for measuring auditory evoked potentials by employing the advantages of polyimide (PI), which is a well-known substrate material for producing flexible electrodes using MEMS technology. The PI multimicroelectrode array has four fingers that include 16 electrodes in order to achieve sufficient adhesion to the curved surface of the animal skull. For high-quality signal acquisition, we optimized the device to decrease crosstalk and improve contact impedance by adding ground channels and fabricating a raised electrode structure. In addition, implantation of the device was facilitated by the addition of an alignment site to ensure optimal positioning and enable signal measurement from the specific part of the cerebral cortex in charge of auditory sensing. After the implantation of the PI electrode on the skull surface, electrical signals were measured following stimulation at different stimulus frequencies (5 or 10 kHz). Unlike other techniques, administration of this PI electrode is less invasive, reducing patient recovery time dramatically in comparison with other electrocorticographic operations. Furthermore, as the exterior of the brain would not be exposed at any point, the chance of infection is minimized.
Keywords :
auditory evoked potentials; biomedical electrodes; crosstalk; patient diagnosis; MEMS technology; animal skull; auditory evoked potentials recording; cerebral cortex; contact impedance; crosstalk; electrocorticographic operations; electroplating free microelectrode; epicranius; flexible electrodes; high quality signal acquisition; minimal noise polyimide microelectrode; multimicroelectrode array; raised electrode structure; Auditory evoked potential; epicranial EEG; multichannel electrode array; polyimide (PI) electrode;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2013.2263226
Filename :
6522498
Link To Document :
بازگشت