DocumentCode :
617494
Title :
4D brain activity scanner using Electrical Capacitance Volume Tomography (ECVT)
Author :
Taruno, Warsito P. ; Baidillah, Marlin R. ; Sulaiman, Rommy I. ; Ihsan, Muhammad F. ; Fatmi, Sri Elsa ; Muhtadi, Almas H. ; Haryanto, Freddy ; Aljohani, Mohammed
Author_Institution :
Center of Med. Phys. & Cancer Res., CTECH Labs., Tangerang, Indonesia
fYear :
2013
fDate :
7-11 April 2013
Firstpage :
1006
Lastpage :
1009
Abstract :
A real time, volumetric (4D) imaging for human brain activity based on Electrical Capacitance Volume Tomography (ECVT) has been proposed, for the first time, in this work. The ECVT has been used to measure electrical signals generated from human brain activity and reconstruct volumetric image of the brain signal in real time. The ECVT system comprises of a helmet shaped capacitive sensor, 32-channel data acquisition system and a computer system to control the measurement, process the image reconstruction and display the brain activities on the scalp and inside the brain. Tests with simulation as well as experimental data showed different images of charged as compared to non-charged phantoms. The charged phantoms used an electrical source of 100mV with 250Hz positive pulses to simulate the action potentials of the brain. The ECVT has also been applied to monitor activity of the brain during different stimulations. Electrical signals measured from capacitance electrodes clearly showed significant differences when the brain was in rest and in high tasks such as listening to music, moving hands and solving a mathematical problem. Preliminary results have shown that ECVT was able to detect brain activities related to human motoric and language functions.
Keywords :
bioelectric potentials; biomechanics; biomedical electrodes; brain; data acquisition; electric impedance imaging; image reconstruction; medical image processing; patient monitoring; phantoms; real-time systems; tomography; 32-channel data acquisition system; 4D brain activity scanner; ECVT system; brain action potential; brain activity display; brain activity monitoring; brain scalp; brain signal; capacitance electrode; computer system; electrical capacitance volume tomography; electrical signal measurement; electrical source; frequency 250 Hz; helmet shaped capacitive sensor; human brain activity; human language function; human motoric function; mathematical problem; moving hands; music listening; noncharged phantom; real time imaging; voltage 100 mV; volumetric image reconstruction; volumetric imaging; Brain; Capacitance; Capacitance measurement; Electrodes; Image reconstruction; Imaging; Permittivity; 4D; Brain activity; ECVT; real time; volumetric imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Imaging (ISBI), 2013 IEEE 10th International Symposium on
Conference_Location :
San Francisco, CA
ISSN :
1945-7928
Print_ISBN :
978-1-4673-6456-0
Type :
conf
DOI :
10.1109/ISBI.2013.6556647
Filename :
6556647
Link To Document :
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