Using Higuchi’s fractal dimension in fine analysis of the effects of 2.7 mT and 10 mT static magnetic fields on the complex bursting activity of the snail BR neuron
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Published:2014
Issue:2
Volume:66
Page:563-572
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ISSN:0354-4664
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Container-title:Archives of Biological Sciences
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language:en
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Short-container-title:ARCH BIOL SCI BELGRA
Author:
Kesic S.1,
Nikolic Ljiljana1ORCID,
Janac Branka1,
Spasic Sladjana2
Affiliation:
1. Institute for Biological Research “Siniša Stanković”, Department of Neurophysiology, Belgrade
2. Department for Life Sciences, Institute for Multidisciplinary Research, Belgrade + Singidunum University, Belgrade
Abstract
The components of complex bioelectrical activity ? action potential (AP),
interspike interval (ISI) and the quiet interburst interval (IBI), along with
the effects of 2.7 mT and 10 mT static magnetic fields, were identified and
examined in the spontaneously active Br neuron of the subesophageal ganglion
complex of the garden snail Helix pomatia by fractal analysis using Higuchi?s
fractal dimension (FD). The normalized mean of the empirical FD distributions
of bursting activity of the Br neuron were formed under different
experimental conditions: before (Control), during (MF), and after exposure to
the static magnetic field (AMF). Using the fractal analysis method for the
first time, a separation of the AP, ISI and IBI components was successfully
achieved. Our results show that fractal analysis with deconvolution of the
normalized mean of the empirical FD distributions into Gaussian functions is
a useful tool for revealing the effects of magnetic fields on the complexity
of neuronal bioelectric activity and its AP, ISI and IBI components.
Funder
Ministry of Education, Science and Technological Development of the Republic of Serbia
Publisher
National Library of Serbia
Subject
General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology
Cited by
1 articles.
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