Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats

The emergence of research about the biological effects of electromagnetic field (EMF) have growing concern among researchers. The aim of this study was to investigate the effects on the brain of rats periodically exposed to 0.1 mT EMF. Total 24 adult male Sprague Dawley rats were subdivided random...

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Main Authors: Yanti Rosli,, Hui, Chin Yap, Asmah Hamid,, Farah Wahida Ibrahim,, Nor Fadilah Rajab,
Format: Article
Language:English
Published: Penerbit UKM 2016
Online Access:http://journalarticle.ukm.my/9730/1/12282-33480-1-SM.pdf
http://journalarticle.ukm.my/9730/
http://ejournal.ukm.my/jskm/issue/view/633
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spelling my-ukm.journal.97302016-12-14T06:50:40Z http://journalarticle.ukm.my/9730/ Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats Yanti Rosli, Hui, Chin Yap Asmah Hamid, Farah Wahida Ibrahim, Nor Fadilah Rajab, The emergence of research about the biological effects of electromagnetic field (EMF) have growing concern among researchers. The aim of this study was to investigate the effects on the brain of rats periodically exposed to 0.1 mT EMF. Total 24 adult male Sprague Dawley rats were subdivided randomly to 4 groups: 2 control groups (C1 6 hours: 6 h/ day for 5 days; C2 20 hours: 20 h/day for 5 days) and 2 treatment groups which exposed to 0.1 mT EMF (T1 6 hours: 6 h/day for 5 days; T2 20 hours: 20 h/day for 5 days). A significant decrease in the pyramidal cell number was higher as the exposure duration to EMF was extended (T1, p<0.05; T2, p<0.001). The total numbers of pyramidal cells for T1 was 15.18 % lower than of the total found in C1; and in concurring to the pattern, the number of pyramidal cells in T2 was 33.54 % lower than the total in C2. Similarly, there was a significant decrease of the Purkinje cell number as the duration exposure to EMF, extended (T1, p<0.05; T2, p<0.001). The total numbers of Purkinje cells for T1 was 11.20 % lower than C1, in T2 was 16.19 % lower than in C2. There were significant differences between the thickness of granular layer and molecular layer in the control groups and treatment groups. We also report a significant difference in the levels of norepinephrine in T2, 10.71 % higher than C2. Cumulatively, these results suggested that exposure to EMF can exert negative effect on rats brains. Penerbit UKM 2016 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/9730/1/12282-33480-1-SM.pdf Yanti Rosli, and Hui, Chin Yap and Asmah Hamid, and Farah Wahida Ibrahim, and Nor Fadilah Rajab, (2016) Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats. Jurnal Sains Kesihatan Malaysia, 14 (1). pp. 55-61. ISSN 1675-8161 http://ejournal.ukm.my/jskm/issue/view/633
institution Universiti Kebangsaan Malaysia
building Perpustakaan Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description The emergence of research about the biological effects of electromagnetic field (EMF) have growing concern among researchers. The aim of this study was to investigate the effects on the brain of rats periodically exposed to 0.1 mT EMF. Total 24 adult male Sprague Dawley rats were subdivided randomly to 4 groups: 2 control groups (C1 6 hours: 6 h/ day for 5 days; C2 20 hours: 20 h/day for 5 days) and 2 treatment groups which exposed to 0.1 mT EMF (T1 6 hours: 6 h/day for 5 days; T2 20 hours: 20 h/day for 5 days). A significant decrease in the pyramidal cell number was higher as the exposure duration to EMF was extended (T1, p<0.05; T2, p<0.001). The total numbers of pyramidal cells for T1 was 15.18 % lower than of the total found in C1; and in concurring to the pattern, the number of pyramidal cells in T2 was 33.54 % lower than the total in C2. Similarly, there was a significant decrease of the Purkinje cell number as the duration exposure to EMF, extended (T1, p<0.05; T2, p<0.001). The total numbers of Purkinje cells for T1 was 11.20 % lower than C1, in T2 was 16.19 % lower than in C2. There were significant differences between the thickness of granular layer and molecular layer in the control groups and treatment groups. We also report a significant difference in the levels of norepinephrine in T2, 10.71 % higher than C2. Cumulatively, these results suggested that exposure to EMF can exert negative effect on rats brains.
format Article
author Yanti Rosli,
Hui, Chin Yap
Asmah Hamid,
Farah Wahida Ibrahim,
Nor Fadilah Rajab,
spellingShingle Yanti Rosli,
Hui, Chin Yap
Asmah Hamid,
Farah Wahida Ibrahim,
Nor Fadilah Rajab,
Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
author_facet Yanti Rosli,
Hui, Chin Yap
Asmah Hamid,
Farah Wahida Ibrahim,
Nor Fadilah Rajab,
author_sort Yanti Rosli,
title Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
title_short Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
title_full Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
title_fullStr Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
title_full_unstemmed Effects of electromagnetic field (EMF) on histological changes and norepinephrine levels in the brains of adult male rats
title_sort effects of electromagnetic field (emf) on histological changes and norepinephrine levels in the brains of adult male rats
publisher Penerbit UKM
publishDate 2016
url http://journalarticle.ukm.my/9730/1/12282-33480-1-SM.pdf
http://journalarticle.ukm.my/9730/
http://ejournal.ukm.my/jskm/issue/view/633
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score 13.211869