Biomedical Engineering Reference
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or gene conversion potentials in microbial genotoxicity tests, Mutation
Research, 649:187-200, 2008.
116. R. Mittenzwey, R. Susmuth, W. Mei, Effects of extremely low
frequency
electromagnetic fi elds on bacteria the question of a co
stressing factor,
Bioelectrochemistry and Bioenergetics, 40:21-27, 1996.
117. M.F. San Martin, F. Harte, H. Lelieveld, G.V. Barbosa
Cánovas, B.G. Swanson,
T pulsed magnetic fi eld combined with other tech-
nologies on Escherichia coli, Innovative Food Science & Emerging Technologies,
2:273-277, 2001.
118. Z. She, X. Hu, X. Zhao, Z. Ren, G. Ding, FTIR investigation of the effects of
ultra
Inactivation effect of an 18
strong static magnetic field on the secondary structures of protein in
bacteria, Infrared Physics & Technology, 52:138-142, 2009.
119. M. Kohno, M. Yamazaki, I. Kimura, M. Wada, Effect of static magnetic fi elds
on bacteria: Streptococcus mutans, Staphylococcus aureus, and Escherichia
coli, Pathophysiology, 7:143-148, 2000.
120. P.J. White, A.T. Barker, I.S. Foulds, Insensitivity of several bacteria and fungi
to the magnetic fi eld generated by a bone stimulator, European Journal of
Clinical Microbiology, 1:255-256, 1982.
121. L. Fojt, L. Strašák, V. Vetterl, J. Smarda, Comparison of the low
frequency
magnetic fi eld effects on bacteria Escherichia coli, Leclercia adecarboxylata
and Staphylococcus aureus, Bioelectrochemistry, 63:337-341, 2004.
122. L. Fojt, P. Klapetek, L. Strašák, V. Vetterl, 50 Hz magnetic fi eld effect on the
morphology of bacteria, Micron, 40:918-922, 2009.
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