Brain machine interface for physically retarded people using colour visual tasks

Proceeding of The 6th International Colloquium on Signal Processing & Its Applications (CSPA 2010) at Melaka, Malaysia on 21 May 2010 through 23 May 2010. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1

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Main Authors: Pandiyan, Paulraj Murugesa, Prof. Dr., Abdul Hamid, Adom, Prof. Dr., Hema, Chengalvarayan Radhakrishnamurthy, Purushothaman, D.
Other Authors: paul@unimap.edu.my.
Format: Working Paper
Language:English
Published: IEEE Conference Publications 2014
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Online Access:http://dspace.unimap.edu.my:80/dspace/handle/123456789/34853
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spelling my.unimap-348532017-11-29T06:47:04Z Brain machine interface for physically retarded people using colour visual tasks Pandiyan, Paulraj Murugesa, Prof. Dr. Abdul Hamid, Adom, Prof. Dr. Hema, Chengalvarayan Radhakrishnamurthy Purushothaman, D. paul@unimap.edu.my. abdhamid@unimap.edu.my divakaar@gmail.com Brain machine interface Colour visual tasks Neural network Proceeding of The 6th International Colloquium on Signal Processing & Its Applications (CSPA 2010) at Melaka, Malaysia on 21 May 2010 through 23 May 2010. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1 A Brain Machine Interface is a communication system which connects the human brain activity to an external device bypassing the peripheral nervous system and muscular system. It provides a communication channel for the people who are suffering with neuromuscular disorders such as amyotrophic lateral sclerosis, brain stem stroke, quadriplegics and spinal cord injury. In this paper, a simple BMI system based on EEG signal emanated while visualizing of different colours has been proposed. The proposed BMI uses the color visual tasks and aims to provide a communication through brain activated control signal for a system from which the required task operation can be performed to accomplish the needs of the physically retarded community. The ability of an individual to control his EEG through the colour visualization enables him to control devices. The EEG signal is recorded from 10 voluntary healthy subjects using the noninvasive scalp electrodes placed over the frontal, parietal, motor cortex, temporal and occipital areas. The obtained EEG signals were segmented and then processed using an elliptic filter. Using spectral analysis, the alpha, beta and gamma band frequency spectrum features are obtained for each EEG signals. The extracted features are then associated to different control signals and a neural network model using back propagation algorithm has been developed. The proposed method can be used to translate the colour visualization signals into control signals and used to control the movement of a mobile robot. The performance of the proposed algorithm has an average classification accuracy of 95.2%. 2014-05-29T04:35:46Z 2014-05-29T04:35:46Z 2010-05 Working Paper p. 82-85 978-1-4244-7121-8 http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=5545339&tag=1 http://dspace.unimap.edu.my:80/dspace/handle/123456789/34853 http://dx.doi.org/10.1109/CSPA.2010.5545339 en Proceeding of The 6th International Colloquium on Signal Processing & Its Applications (CSPA), 2010; IEEE Conference Publications
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Brain machine interface
Colour visual tasks
Neural network
spellingShingle Brain machine interface
Colour visual tasks
Neural network
Pandiyan, Paulraj Murugesa, Prof. Dr.
Abdul Hamid, Adom, Prof. Dr.
Hema, Chengalvarayan Radhakrishnamurthy
Purushothaman, D.
Brain machine interface for physically retarded people using colour visual tasks
description Proceeding of The 6th International Colloquium on Signal Processing & Its Applications (CSPA 2010) at Melaka, Malaysia on 21 May 2010 through 23 May 2010. Link to publisher's homepage at http://ezproxy.unimap.edu.my:2080/Xplore/dynhome.jsp?tag=1
author2 paul@unimap.edu.my.
author_facet paul@unimap.edu.my.
Pandiyan, Paulraj Murugesa, Prof. Dr.
Abdul Hamid, Adom, Prof. Dr.
Hema, Chengalvarayan Radhakrishnamurthy
Purushothaman, D.
format Working Paper
author Pandiyan, Paulraj Murugesa, Prof. Dr.
Abdul Hamid, Adom, Prof. Dr.
Hema, Chengalvarayan Radhakrishnamurthy
Purushothaman, D.
author_sort Pandiyan, Paulraj Murugesa, Prof. Dr.
title Brain machine interface for physically retarded people using colour visual tasks
title_short Brain machine interface for physically retarded people using colour visual tasks
title_full Brain machine interface for physically retarded people using colour visual tasks
title_fullStr Brain machine interface for physically retarded people using colour visual tasks
title_full_unstemmed Brain machine interface for physically retarded people using colour visual tasks
title_sort brain machine interface for physically retarded people using colour visual tasks
publisher IEEE Conference Publications
publishDate 2014
url http://dspace.unimap.edu.my:80/dspace/handle/123456789/34853
_version_ 1643802755881500672
score 13.222552