Music of the brain stress level

The following report describes the development of a sonification system that takes a human brain EEG and transforms it into a piece of music. 2 EEG signals would undergo the sonification process and the musical pieces between an EEG under stress and an EEG under relaxation were taken and co...

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Main Author: Har, Kenneth Shou Yuan.
Other Authors: Er Meng Joo
Format: Final Year Project
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/53230
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-532302023-07-07T16:45:24Z Music of the brain stress level Har, Kenneth Shou Yuan. Er Meng Joo School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Medical electronics The following report describes the development of a sonification system that takes a human brain EEG and transforms it into a piece of music. 2 EEG signals would undergo the sonification process and the musical pieces between an EEG under stress and an EEG under relaxation were taken and compared. This sonification system could be in the useful in analyzing the complex nature of the signal, especially in the area of neurofeedback therapy. The system was created using Matlab to extract the useful signal information and to apply the sonification rules. This produced the musical note data. A music creation software is used to convert the musical note data into the musical piece. The sonification rules adopted were from a separate study entitled “Scale-Free Music of the Brain”. The 2 musical pieces created had distinct differences in the areas of pitch and volume changes with the musical piece from the EEG under stress having sharper changes. In the area of rhythm, the EEG under relaxation produced a musical piece that had a livelier rhythm than the musical piece of the EEG under stress. The resulting musical pieces could mislead the listener as the fast rhythms of the EEG under relaxation might indicate that the musical piece was from the EEG under stress instead. Therefore, a change in the sonification rules could be useful in making the 2 pieces more characteristically distinct. Bachelor of Engineering 2013-05-31T01:29:28Z 2013-05-31T01:29:28Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/53230 en Nanyang Technological University 51 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Medical electronics
spellingShingle DRNTU::Engineering::Electrical and electronic engineering::Control and instrumentation::Medical electronics
Har, Kenneth Shou Yuan.
Music of the brain stress level
description The following report describes the development of a sonification system that takes a human brain EEG and transforms it into a piece of music. 2 EEG signals would undergo the sonification process and the musical pieces between an EEG under stress and an EEG under relaxation were taken and compared. This sonification system could be in the useful in analyzing the complex nature of the signal, especially in the area of neurofeedback therapy. The system was created using Matlab to extract the useful signal information and to apply the sonification rules. This produced the musical note data. A music creation software is used to convert the musical note data into the musical piece. The sonification rules adopted were from a separate study entitled “Scale-Free Music of the Brain”. The 2 musical pieces created had distinct differences in the areas of pitch and volume changes with the musical piece from the EEG under stress having sharper changes. In the area of rhythm, the EEG under relaxation produced a musical piece that had a livelier rhythm than the musical piece of the EEG under stress. The resulting musical pieces could mislead the listener as the fast rhythms of the EEG under relaxation might indicate that the musical piece was from the EEG under stress instead. Therefore, a change in the sonification rules could be useful in making the 2 pieces more characteristically distinct.
author2 Er Meng Joo
author_facet Er Meng Joo
Har, Kenneth Shou Yuan.
format Final Year Project
author Har, Kenneth Shou Yuan.
author_sort Har, Kenneth Shou Yuan.
title Music of the brain stress level
title_short Music of the brain stress level
title_full Music of the brain stress level
title_fullStr Music of the brain stress level
title_full_unstemmed Music of the brain stress level
title_sort music of the brain stress level
publishDate 2013
url http://hdl.handle.net/10356/53230
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